NBC protective clothing with protective function against chemical and / or biological and / or radioactive pollutants and / or toxic substances
Patent Information
- Application Number
- DE202024104739
- Authority / Receiving Office
- DE · DE
- Patent Type
- Utility models
- Current Assignee / Owner
- Priority Date
- 2024-06-13
- Filing Date
- 2024-08-21
- Publication Date
- 2025-07-24
- Estimated Expiration
- 2034-08-31
Smart Images

Figure 00000000_0000_ABST
Abstract
Description
[0001] The present invention relates to the technical field of ABC protection or CBRN protection and in particular to the technical field of protective clothing with a protective function against chemical and / or biological and / or radioactive pollutants or toxic substances (such as hazardous substances, warfare agents or the like), as it can be used in particular in the military and civilian sectors.
[0002] In particular, the present invention specifically relates to NBC protective clothing or CBRN protective clothing (with ABC = atomic, biological, and chemical, and, synonymously, with CBRN = chemical, biological, radioactive, and nuclear; whereby the terms ABC and CBRN are used synonymously within the scope of the present invention). In this context, the present invention thus also relates to the technical field of corresponding NBC or CBRN protective clothing, as it can be used in particular for military purposes and also for civilian purposes (for example, in the field of hazard prevention, firefighting, disaster control, or the like).
[0003] Against this background, the present invention relates in particular to protective clothing with a protective function against chemical or biological or radioactive pollutants or toxins (ie chemical pollutants and / or toxins, biological pollutants and / or toxins and / or radioactive pollutants and / or toxins), such as warfare agents, wherein the protective clothing according to the invention has at least one extremity section for, in particular, partial and / or complete protection of at least one extremity of a wearer of the protective clothing, preferably in the worn and / or used state.
[0004] The present invention also describes a method for producing protective clothing with a protective function against chemical or biological or radioactive pollutants or toxins (ie chemical pollutants and / or toxins, biological pollutants and / or toxins and / or radioactive pollutants and / or toxins), such as warfare agents.
[0005] Likewise, the present invention also relates to the use of a widening section for improving the wearing comfort and / or for improving the donning behavior and / or the putting on and / or the adaptability (i.e. adaptability to a user or wearer or in the worn state) of protective clothing with a protective function against chemical and / or biological and / or radioactive pollutants and / or toxic substances (warfare agents) ("ABC or CBRN protective function"), in particular ABC protective clothing ("CBRN protective clothing"), preferably for civil or military purposes, in particular in the form of trousers, a jacket or an overall, preferably in the form of trousers.
[0006] Harmful or toxic substances generally pose a high level of danger and can have a detrimental effect on the health of anyone who comes into contact with them. Any exposure to or contact with them, for example through contact with skin or mucous membranes, inhalation, ingestion, or the like, must therefore be avoided or at least minimized. This is particularly important given that the health impairments and toxic potential of such substances can sometimes be considerable, and that contact with or ingestion of even small amounts of such substances can lead to long-term health problems or even death in those affected. In this context, it should also be noted that toxic or harmful substances can exist in numerous chemical and physical forms, for example as gases, liquids, or solids, and in the form of finely divided or finely particulate aerosols.from pollutant particles or the like present in the air, especially the ambient air.
[0007] Not least against this background, there is a great need or necessity to provide people who are at risk of coming into contact with toxic or harmful substances, such as soldiers, firefighters, police officers, members of special or special units or the like, with appropriate protective clothing with ABC or CBRN protection function, in order to prevent the absorption of corresponding toxic or harmful substances when deployed in a contaminated or polluted environment by wearing the protective clothing.
[0008] Particularly for groups of people such as soldiers, firefighters, police officers, members of special units or the like, who are at increased risk of coming into contact with toxic or harmful substances, it is particularly advisable and necessary to ensure appropriate protection against these toxic or harmful substances. In many cases, toxic or harmful substances can be absorbed or absorbed through the skin as well as through the respiratory tract, which represents a high risk potential. In this respect, it is often necessary to have appropriate protective clothing (ABC or CBRN protective clothing) on hand to prevent the toxic or harmful substances from coming into contact with the skin or body. In this context, this type of protective clothing, which can be in the form of protective suits, protective jackets or the like, often also includes appropriate headgear orA head covering, for example in the form of a hood or balaclava, is worn. Such protective clothing, such as protective suits, protective jackets, or the like, is often designed to be compatible with protective devices against the oral intake of harmful substances, for example, in the form of gas masks.
[0009] To improve wearing comfort while simultaneously providing a high level of protection against harmful or toxic substances, air-permeable, permeable protective clothing systems are known in the prior art. These systems can be equipped with an adsorption filter layer, particularly to ensure protection against harmful or toxic substances. Due to the increased exchange of air and water or water vapor, such protective systems offer improved wearing comfort while generally providing good protection against toxic or harmful substances. With such protective clothing, the adsorption material, if used, is sometimes arranged on the side of the material facing the wearer or user when worn, so that any toxic or harmful substances that have previously penetrated the material can be absorbed by the adsorption material.
[0010] In this context, the general purpose of ABC or CBRN protective clothing is to provide the wearer or user with optimal or further protection against harmful or toxic substances, in particular insofar as the wearer or user of such protective clothing is, on the one hand, protected in the best possible way and, on the other hand, can start and carry out his or her operational tasks or activities as quickly and time-efficiently as possible, as independently and as unhindered as possible.
[0011] Thus, in addition to providing appropriate protection against poisons or warfare agents, the comfort provided by the protective clothing also plays a major role, both in terms of a good fit and the ability to put on the protective clothing easily, efficiently and as autonomously as possible. A major challenge with regard to the provision of this type of protective clothing is to provide the most holistic and / or versatile or full-surface and reliable protection possible, whereby protection must be ensured against a large number of different poisons or harmful substances that exist in various (physico-chemical) forms. The mostly contradictory properties of providing a high level of protection on the one hand and a high level of comfort on the other handIn particular, a comparatively uncomplicated putting on of the clothing on the other hand should be equally fulfilled in one and the same material.
[0012] With regard to protective clothing, it is also necessary to ensure the longest-lasting and most versatile protection possible against toxins and harmful substances. The protective function must also be guaranteed in the event of high local concentrations of pollutants or toxic substances (for example, if a drop of a pollutant or toxic substance comes into direct contact with the protective clothing) and thus in the event of high local concentrations of pollutants or toxic substances. The protective function must also be guaranteed for long periods of time and under adverse operating conditions, and this also applies to particularly critical sections or areas of the protective clothing, such as end and transition areas, for example head or neck openings, field of vision openings, abdominal or pelvic openings, and in particular arm or hand openings as well as leg or foot openings. The same applies to transition or connecting areas between pieces that are joined together orsimultaneously worn protective clothing, such as between a jacket and trousers, or between a jacket sleeve and a glove, or between a trouser leg and a shoe (or a protective system). Such locations, sections, and transition areas are particularly problematic with regard to providing efficient and permanent protection against the ingress of harmful or toxic substances, on the one hand, and with regard to the most autonomous, independent, and time-efficient donning (and doffing) of protective clothing, on the other.
[0013] To improve donning comfort while simultaneously providing a high level of protection against harmful or toxic substances, state-of-the-art measures (or avoidance strategies) such as the provision of one-piece, oversized protective suits or the provision of devices for the variable adjustment of openings, such as sleeve or trouser leg ends, in transition areas are generally known. One-piece protective suits are generally characterized by low levels of comfort or reduced handling, particularly when donning the protective suit quickly, particularly with regard to passing the extremities through the sleeves or trouser legs or inserting the extremities into the sleeves or trouser legs of corresponding protective suits, as well as correctly positioning the protective suit, so that functionality and wearing comfort are often inadequate.As a result, putting on one-piece protective suits by the user is only possible with increased effort and is not very time-efficient. There is also a risk of damage to the protective clothing due to the corresponding underwear or protective equipment, such as footwear or gloves. This applies particularly to those sections of the protective clothing that follow the basic body shape of the user, i.e., the sleeves or trouser legs of a protective suit, which usually taper from the extremity's origin to the extremity's end, making it difficult to insert footwear or protective underwear.
[0014] Multi-part protective suits typically have the same problem (constricting extremity sections). If the extremity sections are not tapered, there is an increased risk of contaminant penetration due to the larger remaining gap. Furthermore, the sealing performance and / or handling of adjustment or closure devices may be inadequate, as a constriction of an extremity section may only occur at very specific points or in a localized manner. A high degree of precision or dexterity is also regularly required when donning the protective clothing, which may not be possible under certain circumstances, for example, due to the wearing of gloves or safety footwear.
[0015] The design of protective clothing therefore moves within a particularly contradictory field of tension: on the one hand, the requirement for protective clothing to be able to be put on quickly, easily and independently or autonomously, while then providing sufficient comfort, combined with the guarantee of a certain freedom of movement and flexibility for the user. On the other hand, the area of openings in protective clothing for the intake of or passage through body parts of a wearer or user represents a particularly critical structure with regard to the unwanted penetration or penetration of harmful or toxic substances. The same applies to the transition area or contact area between different elements of protective clothing, for example a jacket on the one hand and trousers on the other, or a jacket or a sleeve of a jacket on the one hand and a glove on the other, or trousers ora trouser leg on the one hand and a shoe on the other.
[0016] In particular, these transition areas are associated with a corresponding risk of excessive exposure or exposure of a person in the danger zone to the pollutants or toxic substances in question.
[0017] At the same time, these transition areas often present weak points or complications when putting on or taking off protective clothing, particularly with regard to a (time-)efficient and autonomously realizable option for putting on and taking off clothing in a simple and time-efficient manner.
[0018] In this area of tension, there is still a great need in the state of the art to provide technical solutions for effective and at the same time comfortable or at least uncomplicated application, particularly with guaranteed sealing of critical transition or connection areas of protective clothing.
[0019] In this context, there is a particularly great need to protect the corresponding transition area or opening area in protective clothing against the entry or breakthrough or penetration of harmful or toxic substances hitting the material and at the same time to enable the user to put on and take off the protective clothing safely, comfortably and quickly.
[0020] Against this background, the present invention is based on the object of proposing an efficient technical solution for providing protective clothing that can be put on in a time-efficient manner, independently and safely and at the same time can be worn reliably, safely and comfortably, whereby the previously described disadvantages of the prior art are to be at least largely avoided or at least mitigated.
[0021] In this context, a particular object of the present invention is to provide protective clothing which has an ABC protection function (CBRN protection function) and which can preferably be used for the civilian and / or military sector and which has improved sealing properties against harmful or toxic substances in the transition or connection area of a protective clothing, wherein the transition or connection area should on the one hand be sealed against harmful or toxic substances, and on the other hand the transition or connection area or, in the broader sense, the protective clothing as a whole should be designed in such a way that the user can put it on autonomously in a time-efficient, safe and uncomplicated manner and can adjust it safely and comfortably.
[0022] The measures used to solve the underlying problem according to the present invention should be optimized in terms of process and conception and can be implemented universally and should also enable the production of corresponding protective clothing on an industrial scale.
[0023] To achieve the above-described problem, the present invention thus proposes—according to a first aspect of the present invention—the inventive protective clothing with a protective function against chemical or biological or radioactive pollutants and / or poisons (warfare agents), in particular NBC protective clothing, preferably for civil or military purposes, according to patent claim 1; further advantageous developments and refinements of this aspect of the invention are the subject of the corresponding dependent and secondary claims relating to the inventive protective clothing.
[0024] Furthermore, a method for producing protective clothing is described within the scope of the present invention.
[0025] A further subject matter of the present invention—according to a second aspect of the present invention—is the inventive use according to the relevant independent use claim. Further advantageous developments and refinements of this aspect of the invention are the subject matter of the corresponding subclaim.
[0026] It goes without saying that in the following description of the present invention, such configurations, embodiments, advantages, examples or the like which are explained below - for the purpose of avoiding unnecessary repetition - only for a single aspect of the invention, naturally also apply accordingly with regard to the other aspects of the invention, without the need for an express mention thereof.
[0027] Furthermore, it goes without saying that the following specifications of values, numbers, and ranges are not to be understood as limiting; it is self-evident to the person skilled in the art that, depending on the individual case or application, deviations from the specified ranges or specifications may occur without departing from the scope of the present invention.
[0028] Furthermore, all values or parameters mentioned below, or similar, can generally be determined using standardized or explicitly specified determination procedures, or otherwise using determination or measurement methods familiar to a person skilled in the art. Unless otherwise stated, the underlying values or parameters are determined under standard conditions (i.e., in particular, at a temperature of 20 °C and / or at a pressure of 1,013.25 hPa or 1.01325 bar).
[0029] Furthermore, it should be noted that with all relative or percentage quantities listed below, especially those based on weight, these quantities must be selected or combined by the person skilled in the art within the scope of the present invention in such a way that the total – optionally including other components or ingredients, in particular as defined below – always amounts to 100% or 100% by weight. However, this is self-evident to the person skilled in the art.
[0030] Furthermore, the person skilled in the art may, depending on the application or the individual case, deviate from the values or ranges given below for the amounts or contents of the ingredients or components present, if necessary, without departing from the scope of the present invention.
[0031] Furthermore, it goes without saying that individual aspects and embodiments of the present invention are also deemed to be disclosed in any combination with other aspects and embodiments of the present invention and, in particular, any combination of features and embodiments as they result from the references to all patent claims is deemed to be comprehensively disclosed, with regard to all resulting combination possibilities.
[0032] In particular, with regard to the features characterizing the invention, any combination of these features is deemed to be disclosed, whereby embodiments of the various features with the same preference are preferred in their combination (e.g., amounts or ranges of amounts of the relevant ingredients with the same preference, or the like). Likewise, all other combinations (i.e., combinations based on different preferences or different levels of preference) are also disclosed.
[0033] With this in mind, the present invention is described and explained in more detail below, also with reference to drawings or figure representations showing preferred embodiments or exemplary embodiments.
[0034] The subject matter of the present invention - according to a first aspect of the present invention - is thus protective clothing with a protective function against chemical and / or biological and / or radioactive pollutants and / or poisons (warfare agents) ("ABC or CBRN protective function"), in particular ABC protective clothing ("CBRN protective clothing"), preferably for civil or military purposes, in particular in the form of trousers, a jacket or an overall, preferably in the form of trousers, wherein the protective clothing comprises a multi-layer protective material, wherein the protective material comprises: (a) a first, in particular flat and / or two-dimensional, layer in the form of a multi-layer, in particular at least two-layer, air-permeable adsorption filter material (“inner layer”), in particular for the adsorption of chemical and / or biological and / or radioactive pollutants and / or toxins, preferably wherein the adsorption filter material has an adsorption layer and a textile carrier layer (“adsorption layer carrier”), and (b) a second, in particular flat and / or two-dimensional, layer in the form of a textile, air-permeable outer material (“outer layer”), wherein the protective clothing has a widening section that can be released and / or closed with at least one closure means for selectively widening and / or enlarging the inner and / or outer diameter of the protective clothing in the region of the widening section, wherein the widening section is arranged at least partially, preferably completely, on and / or in the extremity section, and wherein the closure means is only and / or exclusively connected, in particular sewn, to the second layer and / or wherein the closure means is, preferably directly, unconnected to the first layer, in particular wherein the closure means is connected to the second layer by sewing in at least one seam region, in particular using at least one yarn and / or thread.
[0035] The protective clothing according to the invention thus has at least one extremity section for, in particular, partial and / or complete protection of at least one extremity, in particular at least one upper and / or lower extremity, of a wearer of the protective clothing, preferably in the wearing and / or use state, in particular wherein the extremity section surrounds and / or encloses at least one extremity of the wearer at least in regions.
[0036] In addition, the protective clothing according to the invention comprises a multi-layer protective material. According to the invention, the protective material comprises: (a) a first, in particular flat and / or two-dimensional, layer in the form of a multi-layer, in particular at least two-layer, air-permeable adsorption filter material (“inner layer”), in particular for the adsorption of chemical and / or biological and / or radioactive pollutants and / or toxins, preferably wherein the adsorption filter material has an adsorption layer and a textile carrier layer (“adsorption layer carrier”), and (b) a second, in particular flat and / or two-dimensional, layer in the form of a textile, air-permeable outer material (“outer layer”).
[0037] Furthermore, the protective clothing according to the invention has a widening section that can be released and / or closed with at least one closure means for selectively widening and / or enlarging the inner and / or outer diameter of the protective clothing in the region of the widening section, wherein the widening section is arranged at least partially, preferably completely, on and / or in the extremity section.
[0038] Furthermore, the closure means is only and / or exclusively connected to the second layer, in particular sewn, and / or the closure means is, preferably directly, unconnected to the first layer, in particular wherein the closure means is connected to the second layer by sewing in at least one seam area, in particular using at least one yarn and / or thread.
[0039] A central idea of the present invention is therefore to provide a solution that significantly facilitates donning and wearing the protective clothing, while maintaining at least the same, but in particular even improving, protective performance of the protective clothing. This solution allows for independent, rapid, and inexpensive donning of the protective clothing while simultaneously ensuring the safety of the user. The present inventive concept thus represents a particularly balanced and, in this respect, user-oriented and application-optimized solution for protective clothing, which enables the user to don the protective clothing in a simplified, quick, and safe manner, without any risk of compromising the protective and safety properties of the protective clothing.
[0040] In this context, it is specifically provided according to the invention that the multi-layer design of the protective material provided within the scope of the present invention, in combination with the targeted arrangement of the at least one closure means on the protective material, namely in particular at least on the second layer and not on the first layer, ideally ensures the safety and protective properties of the protective clothing, while at the same time creating the possibility of putting on the protective clothing more easily, in particular in the event that the user wears extensive underwear, and in particular also of adjusting and adapting it in a cost-effective and accurate manner so that the protective performance of the protective clothing can be optimally realized, i.e. the risk of contamination for the user can be reduced or eliminated as far as possible in a time- and effort-efficient manner.
[0041] According to the invention, the user of the protective clothing according to the invention is reliably able to completely put on the protective clothing autonomously within a comparatively short time, even if the user is wearing safety footwear, gloves or even rubber overshoes, and then to optimally position, adjust or adapt the protective clothing in a short time and with inexpensive (and possibly imprecise) manual actions or measures, in particular so that the protective effect of the protective clothing is reliably realized without impairment.
[0042] In this regard, the applicant has discovered, in a completely surprising manner, that in a protective clothing comprising a multi-layer protective material and having a widening section that can be opened and / or closed with at least one closure means for selectively widening and / or enlarging the inner and / or outer diameter of the protective clothing in the region of the widening section, wherein the widening section is arranged at least partially, preferably completely, on and / or in the extremity section, and wherein the closure means is only and / or exclusively connected to the second layer, in particular sewn, and / or wherein the closure means is (directly) unconnected to the first layer, in particular wherein the closure means is connected to the second layer by sewing in at least one seam region, in particular using at least one yarn and / or thread,the protective effect of the protective clothing remains unaffected by the widening section or the closure means, in particular since the first layer of the protective material of the protective clothing, designed as an inner layer, is not structurally and accordingly, in particular functionally, influenced by the widening section or the closure element.
[0043] Particularly preferably, the closure means is not sewn to the first layer. Alternatively or additionally, it is preferably provided that the seam connecting the closure means and the second layer and / or the related seam area is unconnected to the first layer. Accordingly, in particular, the first layer is not damaged, perforated, and / or penetrated by the closure means or by the connection of the closure means to the second layer. The protective effect of the protective material can therefore be ensured even with improved positioning of the protective clothing on the wearer's extremities and is not impaired, in particular, by the widened section.
[0044] In this context, it is understood that the feature that the closure means is only and / or exclusively connected to the second layer is to be understood in particular in such a way that the second layer does not comprise the first layer, whereby the second layer can in particular also be constructed in multiple layers. In the case of a multi-layered structure of the second layer, the closure means is particularly preferably only and / or exclusively connected to at least one layer, in particular all layers of the second layer. The second layer is also designed in the form of a textile, air-permeable outer material. This feature is to be designed in particular in such a way that at least one layer of the second layer is textile and air-permeable. Further layers of the second layer can - but in particular do not necessarily have to - be textile and air-permeable.In a multi-layered structure of the second layer, it is particularly preferred that all layers are textile and air-permeable.
[0045] Nevertheless, the protective material as a whole, i.e. both the inner layer and the outer layer of the protective material, can be designed to correspond to the widened section, so that putting on the protective clothing is easier and uncomplicated thanks to the widened section. In particular, moreover, the positioning and adjustment of the protective clothing is made significantly easier and is intuitive and user-friendly thanks to the inventive design of the widened section. This also ensures that the protective properties of the protective clothing according to the invention are optimally realized in that the inner and outer diameters of the protective clothing can be optimally regulated thanks to the flexibly manageable widened section, in particular in a manner tailored to the realization of an optimized protective effect.
[0046] This means that within the scope of the invention, when wearing complete protective equipment, it is still guaranteed that the user can nevertheless adjust the protective clothing according to the invention in a safe and manageable manner, in particular in the extremity section can reliably narrow it by the area of the widening section, so that a reliable sealing effect can be achieved which goes beyond a conventional sealing effect for conventionally designed protective clothing, in particular since within the scope of the present invention, overall inner and outer diameters can also be realized which are usually not feasible in practice, without making it considerably more difficult to put on protective clothing, in particular when wearing corresponding underwear or safety shoes or gloves.
[0047] Thus, within the scope of the present invention, designs of protective clothing are also possible that could not previously be implemented due to application-specific limitations, such as the provision of inner and outer diameters for extremity sections, which previously had to be tailored in such a way that users wearing, for example, safety shoes could put on the protective clothing or slide into it with sufficient ease. This regularly results in a comparatively large volume of space between the user's body circumference and the protective clothing, which increases the risk of forming perforations, particularly at transitions or openings in the protective clothing, due to undirected wrinkling caused by excess material in these areas.
[0048] With the present invention, such a risk is significantly minimized by the widening section being able to provide volume in a targeted manner and also compensate for it, depending on the application phase of the protective clothing.
[0049] It should be emphasized as particularly advantageous that the present invention enables a defined, predetermined addition or removal of material surface or clothing volume that is optimized for the user or the intended use, which is particularly beneficial in terms of application safety and simplicity. In particular, within the scope of the present invention, it is no longer left to the user - who may find themselves in an exceptional situation - to find a safe adjustment of the protective clothing that is optimized with regard to achieving a protective effect, but rather the protective clothing itself dictates the degree to which the amount of material or clothing volume is added or, above all, reduced in order to optimally ensure the application safety of the protective clothing. In this sense, the present invention also specifically facilitates the quick adjustment of the protective clothing.Above all, the probability of errors in adjusting the clothing is reduced so significantly that the user can be offered more reliable protection overall.
[0050] Within the scope of the present invention, a technical solution is therefore provided by which protective clothing concepts can be implemented that were previously not practical due to application-specific limitations. As a result, increased user safety and, at the same time, significantly easier handling for the user can be achieved within the scope of the invention. Furthermore, reliable sealing performance is achieved for extremity sections, which are regularly challenging components of protective clothing. By implementing a defined measure, specified by the protective clothing itself, for adjusting the clothing during or after the wear and tear.after putting it on, the present invention can provide a solution that is easy and safe to handle for the user and can be reliably implemented with regard to the protective effect to increase the comfort of putting on and wearing protective clothing while at the same time ensuring the protective effect as well as user safety, which in this respect stands out clearly advantageously compared to the prior art.
[0051] The term “seam” used in the context of the present invention is to be understood in particular to mean a connection of the underlying layers or materials by sewing, wherein at least one yarn or thread is generally used for the seam, which is repeatedly passed through the sewing material in the form of the second layer or the respective layers, wherein the yarn or thread is connected or entwined with the sewing material. Thus, in the context of the seam connecting the second layer and the fastening means, it is in particular a yarn- or thread-based seam. Accordingly, the seam in question is particularly preferably not a threadless connection or not an adhesive seam or welded seam.
[0052] The term "seam region," as used in the context of the present invention, is to be understood in this context in particular as representing a section or region with the overlapping arrangement or positioning of the closure means with the second layer, which is formed by the formed common seam with the corresponding seam-like engagement or connection of the second layer and the closure means. The seam region thus refers in particular to the region in which the underlying layers to be joined, namely in particular at least the second layer and the closure means, are connected or engaged by the common seam.
[0053] Further advantageous developments and refinements of this first aspect of the invention are the subject of the corresponding sub- and auxiliary claims relating to the protective clothing according to the invention and are also disclosed in more detail below in the description of the figures.
[0054] Also described within the scope of the present invention is a method for producing protective clothing with a protective function against chemical and / or biological and / or radioactive pollutants and / or poisons (warfare agents) ("ABC or CBRN protective function"), in particular ABC protective clothing ("CBRN protective clothing"), preferably for civil or military purposes, in particular in the form of trousers, a jacket or overalls, preferably in the form of trousers, in particular a method for producing protective clothing as described above according to the present invention, wherein, to form an extremity section, a first layer is formed from individual cuts of the first layer to be connected to one another, and a second layer is formed from individual cuts of the second layer to be connected to one another, wherein the cuts of the first layer are connected, preferably sewn, to one another to form the first layer, and wherein the cuts of the second layer are connected, preferably sewn, to one another to form the second layer, wherein, in particular after formation and / or during formation of the second layer, a closure means of a widening section is connected only and / or exclusively to the second layer, in particular in at least one seam area by sewing, in particular using at least one yarn and / or thread, and wherein, in particular after the connection of the closure means to the second layer, the first and the second layer are arranged and / or positioned overlapping one another and are connected to one another in at least one connection region.
[0055] With regard to further details, embodiments, configurations, advantages and special features of the method described above, in order to avoid unnecessary repetition, reference can be made to the above and subsequent statements on the first aspect of the invention, which apply accordingly with regard to the method.
[0056] Yet another subject matter of the present invention - according to a second aspect of the present invention - is also the use of a widening section to improve the wearing comfort and / or to improve the donning behavior and / or the application and / or the adaptability (i.e. adaptability to a user or wearer or in the worn state) of protective clothing with a protective function against chemical and / or biological and / or radioactive pollutants and / or toxic substances (warfare agents) ("ABC or CBRN protective function"), in particular ABC protective clothing ("CBRN protective clothing"), preferably for civil or military purposes, in particular in the form of trousers, a jacket or overalls, preferably in the form of trousers, in particular protective clothing as described above according to the present invention wherein the protective clothing has at least one extremity section for, in particular partial and / or complete, protection of at least one extremity, in particular at least one upper and / or lower extremity, of a wearer of the protective clothing, preferably in the wearing and / or use state, in particular wherein the extremity section surrounds and / or encloses at least one extremity of the wearer at least in regions, wherein the protective clothing comprises a multi-layer protective material, in particular wherein the protective material comprises: (a) a first, in particular flat and / or two-dimensional, layer in the form of a multi-layer, in particular at least two-layer, air-permeable adsorption filter material (“inner layer”), in particular for the adsorption of chemical and / or biological and / or radioactive pollutants and / or toxins, preferably wherein the adsorption filter material has an adsorption layer and a textile carrier layer (“adsorption layer carrier”), and (b) a second, in particular flat and / or two-dimensional, layer in the form of a textile, air-permeable outer material (“outer layer”), wherein the protective clothing has a widening section that can be released and / or closed with at least one closure means for selectively widening and / or enlarging the inner and / or outer diameter of the protective clothing in the region of the widening section, wherein the widening section is arranged at least partially, preferably completely, on and / or in the extremity section, and wherein the closure means is only and / or exclusively connected, in particular sewn, to the second layer and / or wherein the closure means is, preferably directly, unconnected to the first layer, in particular wherein the closure means is connected to the second layer by sewing in at least one seam region, in particular using at least one yarn and / or thread.
[0057] With regard to further details, embodiments, configurations, advantages and special features of the subject matter of the present invention according to the second aspect of the present invention, in order to avoid unnecessary repetition, reference can be made to the above and subsequent statements on the first aspect of the invention, which apply accordingly with regard to the second aspect of the invention.
[0058] In the following, the present invention is described with reference to preferred embodiments and illustrative drawings or figures. The relevant statements apply to all aspects of the invention and the corresponding preferred embodiments or configurations of the present invention are in no way limiting. Further advantages, properties, aspects, and features of the present invention are also highlighted within the scope of the figure description.
[0059] In the figure representations shows: Fig. 1 a schematic front view of a protective clothing according to the invention with corresponding trousers in the worn or used state with the corresponding schematic representation of a closure means according to the invention and a widening section according to the invention in the closed state of the widening section; Fig. 2 a schematic perspective side view of a further embodiment of a protective clothing according to the invention with a pair of trousers in the worn or used state with the relevant schematic representation of a closure means according to the invention and a widening section according to the invention in the closed state of the widening section; Fig. 3 a schematic perspective side view of the Fig. 2 shows the protective clothing according to the invention with the corresponding schematic representation of a closure means according to the invention and a widening section according to the invention in the released state of the widening section; Fig. 4 a schematic front view of a closure means according to the invention and of a widening section according to the invention in the released state of the widening section; Fig. 5 a schematic front view of a further embodiment of a protective clothing according to the invention with corresponding trousers in the worn or used state with the corresponding schematic representation of a wedge-shaped widening section in the closed state of the widening means; Fig. 6 a schematic plan view of an open end of an extremity section, in particular a trouser section, preferably a trouser leg, of a further embodiment of a protective clothing according to the invention with the schematic representation of a widening section according to the invention in the closed state; Fig. 7 a schematic front view of a further embodiment of a protective clothing according to the invention with a corresponding jacket in the worn or used state with the relevant schematic representation of a closure means according to the invention and a widening section according to the invention in the closed state of the widening section; Fig. 8 is a schematic cross-sectional view showing the arrangement and connection of the layers forming the basis of a further embodiment of the protective clothing according to the invention, according to which the second layer is arranged on the first layer, the first layer comprising an adsorption layer and a textile carrier layer; Fig. 9 is a further schematic cross-sectional view showing the arrangement and connection of the layers forming the basis of a further embodiment of the protective clothing according to the invention, according to which the second layer is arranged on the first layer, the first layer comprising an adsorption layer, a textile carrier layer and an adhesive layer, and the adsorption layer being connected to the textile carrier layer via the adhesive layer; Fig. 10 is a further schematic cross-sectional view showing the arrangement and connection of the layers forming the basis of a further embodiment of the protective clothing according to the invention, according to which the second layer is arranged on the first layer, the first layer comprising an adsorption layer, a textile carrier layer, an adhesive layer and a particle and / or aerosol filter layer, the adsorption layer being connected to the textile carrier layer via the adhesive layer and the particle and / or aerosol layer being arranged on the adsorption layer; Fig. 11 is a further schematic cross-sectional view showing the arrangement and connection of the layers forming the basis of a further embodiment of the protective clothing according to the invention, according to which the second layer is arranged on the first layer, the first layer comprising an adsorption layer, a textile carrier layer, an adhesive layer, a cover layer and a particle and / or aerosol filter layer, the adsorption layer being connected to the textile carrier layer via the adhesive layer, the cover layer being arranged on the adsorption layer and the particle and / or aerosol layer being arranged on the cover layer; Fig. 12 shows a further schematic cross-sectional view showing the arrangement and connection of the layers forming the basis of a further embodiment of the protective clothing according to the invention, according to which the second layer is arranged on the first layer, the first layer comprising an adsorption layer, a textile carrier layer and an adhesive layer, the adsorption layer being connected to the textile carrier layer via the adhesive layer, a closure means being connected to the second layer, in particular sewn in a seam region; Fig. 13 is a further schematic cross-sectional view showing the arrangement and connection of the layers forming the basis of a further embodiment of the protective clothing according to the invention, according to which the second layer is arranged at a distance from the first layer, the first layer comprising an adsorption layer, a textile carrier layer, an adhesive layer and a cover layer, the adsorption layer being connected to the textile carrier layer via the adhesive layer, the cover layer being arranged on the adsorption layer, a closure means being connected to the second layer, in particular sewn in a seam region; Fig. 14 is a schematic perspective view of the layers forming the basis of the protective clothing according to the invention, according to which the second layer is arranged at a distance from the first layer, wherein a closure means is connected to the second layer, in particular sewn in a seam area; Fig. 15 a schematic perspective view of a part of a further embodiment of a protective clothing according to the invention with a pair of trousers in the worn or used state with the relevant schematic representation of a further closure means according to the invention and of an opening section according to the invention in the open state forming an opening; Fig. 16 is a further schematic perspective view of a part of the Fig. 15 shows the protective clothing according to the invention with the relevant schematic representation of the material sections covering the further closure means in the open state of the opening section forming an opening; Fig. 17 a schematic cross-sectional view showing the arrangement and connection of the material sections covering and / or covering the further closure means; Fig. 18 is a further schematic perspective view of a part of the Fig. 15 shows the protective clothing according to the invention with the corresponding schematic representation of the material section covering the further closure means on the upper side in the closed state of the opening section.
[0060] The figure representations according to Fig. 1 to Fig. 18 particularly illustrate the first aspect of the present invention, according to which, according to the invention, protective clothing 1 with a protective function against chemical and / or biological and / or radioactive pollutants and / or poisons (warfare agents) ("ABC or CBRN protective function"), in particular ABC protective clothing ("CBRN protective clothing"), is provided, preferably for civil or military purposes. In particular, the protective clothing 1 is in the form of trousers 2, such as the Fig. 1 to 3 show. A pair of trousers 3 may comprise elongated extremity sections 4 which are designed to be arranged on the legs of a wearer, as schematically shown in the Fig. Show 1 to 3.
[0061] Fig. Figure 7 shows that the protective clothing 1 is also designed in the form of a jacket 3. Not shown in detail is the fact that the protective clothing 1 is designed in the form of a jumpsuit or sweater.
[0062] Particularly preferred is protective clothing 1, such as the Fig. 1 shows, in the form of trousers 2.
[0063] As previously explained, the Fig. 1 to 3, the protective clothing 1 has at least one extremity section 4 for the, in particular partial and / or complete, protection of at least one extremity, in particular at least one upper and / or lower extremity, of a wearer of the protective clothing 1, preferably in the worn and / or used state. This extremity section 4 is particularly preferably elongated. A longitudinal extension of the extremity section 4 arises in particular in the longitudinal direction of the respective extremity of the wearer that is to be protected by the extremity section 4.
[0064] In the application and / or use state of the protective clothing 1, it is particularly provided that the extremity section 4 surrounds and / or encloses at least one extremity of the wearer, at least in part. In this context, it is understood that areas of the wearer's extremity may, if appropriate, protrude from the extremity section 4 in the worn state, in particular the hands and / or feet, which may be protected by additional protective equipment, preferably gloves and / or footwear, if necessary. In particular, a large part of the wearer's extremity, in particular at least 70%, preferably at least 80%, more preferably at least 85%, is covered by the respective extremity section 4 in the worn state.
[0065] The Fig. The protective clothing 1 shown in Figure 1 comprises a multi-layer protective material 5, as is particularly the case for different embodiments in the Fig. 8 to 13.
[0066] Fig. Figure 8 shows that the protective material 5 has several layers, namely at least: (a) a first, in particular flat and / or two-dimensional, layer 6 in the form of a multi-layer, in particular at least two-layer, air-permeable adsorption filter material ("inner layer"), in particular for the adsorption of chemical and / or biological and / or radioactive pollutants and / or toxins, preferably wherein the adsorption filter material has an adsorption layer 6a and a textile carrier layer 6b ("adsorption layer carrier"), and (b) a second, in particular flat and / or two-dimensional, layer 7 in the form of a textile, air-permeable outer material (“outer layer”).
[0067] The protective clothing 1 proposed according to the invention has a widening section 9 which can be opened and / or closed with at least one closure means 8 for selectively widening and / or enlarging the inner and / or outer diameter 10, 11 of the protective clothing 1 in the region of the widening section 9. The widening section 9 is in the Fig. 2 in the closed and in the Fig. 3 in the released state, which can also be referred to as a preferably fully opened and / or, in particular, maximally widened state. For the purposes of the present invention, the released state of the widened section 9 refers in particular to the maximally widened state in which the closure means 8 has been actuated for maximum release. Intermediate states can also preferably be assumed, which can also be considered open—for example, when the closure means 8 has been actuated up to half of the widened section 9.
[0068] The widening section 9 shown in the figures is arranged at least partially, preferably completely, on and / or in the extremity section 4. Accordingly, the widening section 9 can be actuated as needed in a manner predetermined by the user and enable a defined release or removal of the protective material 5. In particular for donning or putting on the protective clothing 1, the widening section 9 offers particular advantages, which can be seen in particular in the fact that when the wearer's extremity is inserted into the extremity section 4, the inner cross-section of this extremity section 4 can be enlarged, in particular by actuating the closure means 8, an enlargement of the inner and / or outer diameter 10, 11 can be achieved. Sliding into the protective clothing can therefore be made easier, whereby wearing comfort and / or handling can be improved.
[0069] At the same time, damage to the protective material 5 when putting on the protective clothing 1 can be prevented, in particular, since a sufficiently large free space can be provided inside 13 of the protective clothing. In practice, protective clothing 1 according to the present invention is put on with protective equipment that is intended to be at least partially arranged in the protective clothing 1 when worn, such as gloves and / or footwear. The protective clothing according to the invention can reduce the risk of the protective equipment components striking the protective material 5, and in particular, tearing of the protective material 5 can be prevented.
[0070] In addition, the sealing and / or the protective effect against toxic and / or harmful substances is also improved. According to the invention, the widening section 9 makes it possible to optionally widen the inner cross-section in the area of the extremity sections 4, which is required in particular for putting on the protective clothing 1. Because the widening section 9 can be converted into a closed state by the closure means 8, this widening can be taken back again after the protective clothing 1 has been put on, or the inner cross-section in the area of the extremity section 4 can be reduced. Any passages for gases and / or harmful substances can be significantly reduced in this way, whereby the protective effect can be increased. This reduction achievable with the present invention particularly surpasses measures which only allow a very specific orenable small-area cross-sectional reduction.
[0071] In particular, a defined release or removal of the protective material 5 can occur through the widened section 9, thereby ensuring an optimal fit for a wearer. This is a fundamental difference from conventional measures for adjusting protective clothing, which often involve the formation of a multitude of undefined channel areas that can cause harmful and / or toxic substances to penetrate into the interior 13 of the protective clothing 1 and can arise when the protective material 5 is compressed in the area of the extremity section 4 without the presence of a widened section 9. Such effects, which endanger application safety, can be minimized or avoided within the scope of the invention.
[0072] The Fig. 12 to 14 clearly show that the closure means 8 is only and / or exclusively connected, in particular sewn, to the second layer 7. Alternatively or additionally, the present invention provides that the closure means 8 is, preferably directly, unconnected to the first layer 6.
[0073] In a particularly preferred embodiment, such as in Fig. As illustrated in Figure 14, the closure means 8 is connected to the second layer 7 by sewing in at least one seam area 12, in particular using at least one yarn and / or thread. This sewing enables long-term use of the closure means 8 and the widened section 9 and provides a secure and stable connection. Furthermore, the use of external substances, such as adhesives, which could potentially interact with the harmful and / or toxic substances, can be dispensed with.
[0074] Preferably, the closure means 8 does not impair the protective and / or adsorption effect of the first layer 6. This is achieved in particular by the fact that no direct fastening and / or connection to the first layer 6 is necessary for fastening the closure means 8. The seam region 12, which preferably connects the closure means 8 and the second layer 7, in particular does not run through the first layer 6, so that the first layer 6 is preferably not perforated by the seam region 12.
[0075] When the protective clothing 1 is worn and / or used, the first and second layers 6, 7 are at least substantially in contact with each other, as shown in Fig. 12 shows. Only in individual connecting areas, which are not shown in detail in the figures, especially in the seam, are the two layers 6, 7 connected to each other, in particular sewn. In the other areas, if necessary, a distance between the two layers 6, 7 can be achieved by pulling the layers 6, 7 apart, which, for example, in the Fig. 13 and Fig. 14. In particular, both layers 6, 7 can be spaced apart from one another, in particular at least substantially over the length of the closure means 8, in particular without the closure means 8 or the widening section 9 hindering this.
[0076] In a preferred embodiment of the present invention, it is provided that the first layer 6 is arranged and / or positioned on the side of the protective clothing 1 facing away from a source of harmful and / or toxic substances in the wearing and / or use state of the protective clothing 1.
[0077] In other words, the first layer 6 can be arranged and / or positioned facing the interior 13 of the protective clothing, in particular facing the wearer of the protective clothing 1, in the wearing and / or use state of the protective clothing 1.
[0078] The protective effect of the first layer 6 thus acts directly on the side facing the wearer of the protective clothing. Furthermore, in this preferred arrangement, the first layer 6 is protected by the second layer 7 from mechanical stresses and / or external stresses, such as weather influences.
[0079] Equally preferably, the second layer 7 is arranged and / or positioned in the wearing and / or use state of the protective clothing 1 on the side of the protective clothing 1 facing a source of harmful and / or toxic substances, in particular the outer side of the protective clothing 1. This is shown schematically in Fig. 1 shown.
[0080] In other words, when the protective clothing 1 is worn and / or used, the second layer 7 is preferably arranged and / or positioned facing away from the interior 13 of the protective clothing 1, in particular facing away from the wearer of the protective clothing 1. As explained above, this arrangement allows the first layer 6 to be protected from mechanical stress by the second layer 7.
[0081] Furthermore, this arrangement also allows the closure means 8 to be arranged on the outer side of the protective clothing 1, or on the side facing a source of harmful and / or toxic substances. This ensures that the closure means 8 is accessible and operable to the wearer of the protective clothing 1 when the protective clothing 1 is worn.
[0082] Furthermore, the protective clothing 1 is preferably in the form of trousers 2, as shown in the Fig. 1 to 3. In other words, the protective clothing 1 can be designed in the form of a pair of trousers, in particular in the form of outer trousers and / or overtrousers. A pair of trousers 3 has, in particular, two elongated extremity sections 4 that can be arranged on the legs of a wearer.
[0083] In an embodiment not shown in detail, but also preferred, the protective clothing 1 is designed in the form of a jumpsuit, wherein a jumpsuit has four extremity sections 4, in particular for the legs and arms of the wearer. A widening section 9 is arranged on at least one of these extremity sections 4.
[0084] For a further preferred embodiment, the Fig. 7, the protective clothing 1 is designed in the form of a jacket 3, in particular in the form of an outer jacket and / or overjacket. A jacket 3 can have two extremity sections 4, which are intended for placement on the arms of a wearer.
[0085] Also not shown in detail is that in another preferred embodiment of the inventive concept, the protective clothing 1 is designed in the form of a sweater. A sweater, like a jacket 3, can have two extremity sections 4 in which the wearer's arms can be arranged.
[0086] In a preferred embodiment of the protective clothing 1 according to the invention, the extremity section(s) 4 enclose and / or surround the extremity(ies) of the wearer of the protective clothing 1, in particular at least substantially completely, in particular at least in the region of the thigh(s) and lower leg(s) and / or the upper arm(s) and forearm(s) of the wearer of the protective clothing 1.
[0087] Particularly preferably, at least 70%, preferably at least 80%, particularly preferably at least 85%, of the wearer's extremity protected by the extremity section 4 is covered, surrounded, and / or enclosed by the extremity section. In this way, the extremity of a wearer can be protected at least substantially securely.
[0088] In general, within the scope of the present invention, it can be provided in this context that the widened section 9 is part of the second layer 7 and / or part of the extremity section 4 and / or can be assigned to it. Most preferably, the widened section 9 is part of the extremity section 4 and comprises the protective material 5 containing the first and second layers 6, 7. Accordingly, the protective effect can also be provided in the region of the widened section 9 in the widened state.
[0089] In addition, as equally in Fig. 1, it can be provided according to the invention that the widened section 9 and / or the closure element(s) 8 are arranged and / or positioned on the inner area and / or region of the extremity section 4 facing the body of the wearer of the protective clothing 1. This arrangement enables the closure means 8 and / or the closure means 8 to be protected when worn and / or in use and, in particular, does not impair the arrangement of other equipment and / or pockets.
[0090] According to this, especially in Fig. In the embodiment of the present invention generally stated in Figure 1, it can also be provided that the inner area and / or region of the extremity section 4 facing the body of the wearer of the protective clothing 1 extends over at least 40%, preferably at least 30%, of the outer circumference in the circumferential direction of the extremity section 4. Accordingly, in particular the inner region or the inner area of the extremity section 4 is that section of the extremity section 4 which faces the other extremity of the wearer.
[0091] In this regard, it can also be provided that the widened section 9, the closure element 8, and / or the inner area or the inner region of the extremity section 4 are arranged and / or positioned in the area of the inner leg, preferably at least in the area of the inner lower leg, and / or in the area of the inner arm, preferably at least in the area of the inner forearm, of the wearer of the protective clothing 1 and / or face the wearer. As previously explained, this arrangement allows the widened section 9 to be arranged in a protected manner, and the arrangement can further optimize the positioning of additional equipment, pockets, or the like.
[0092] According to a first preferred embodiment of the invention (as also described in Fig. 1), it can generally be provided according to the invention that the extremity section 4 is designed as a trouser section 14, in particular as a trouser leg of the trousers.
[0093] It is not shown in more detail that the extremity section can preferably also be designed as a trouser section 14 of the overall.
[0094] At the Fig. In the preferred embodiment shown in Fig. 7, the extremity section 4 is designed in particular as a sleeve section 15, in particular as a sleeve of the jacket 3, the overalls and / or the sweater.
[0095] The aforementioned extremity sections 4 are subject to high requirements with regard to tightness, particularly when the protective clothing is used to protect persons, which can be optimally ensured in particular by the invention on at least one, in particular on all, extremity sections 4 of a protective clothing.
[0096] In this context, Fig. 1 also shows the preferred embodiment according to the invention, according to which the protective clothing 1 has at least two extremity sections 4, particularly preferably at least two extremity sections 4 designed as trouser sections 14, in particular as trouser legs. This embodiment, with the widening section 9 arranged particularly on both sides of both trouser sections 14, enables the wearer's legs to be reliably protected from the penetration of harmful and / or toxic substances into the interior 13 of the protective clothing 1 in the application state.
[0097] Fig. Figure 7 shows that, in a further preferred embodiment, at least two extremity sections 4 designed as sleeve sections 15, in particular as sleeves, are particularly preferably provided. In particular, the widening sections 9 are provided on both sleeve sections 15 of the protective clothing 1, each improving the manageability and protection for the respective extremity.
[0098] Accordingly, as described above, the widening section 9 is preferably arranged on at least two extremity sections 4 of the protective clothing 1, as is clearly shown in the Fig. 1. The Fig. 1, the widening section 9 is arranged on both trouser sections 14, in particular both trouser legs. Similarly, the widening section 9 can be arranged on both sleeve sections 15, in particular both sleeves, of the protective clothing 1. The advantageous properties described above can therefore be ensured in particular for all extremity sections 4 of a protective clothing 1 or a protective clothing garment, which can also be referred to as protective clothing 1 within the meaning of the present invention.
[0099] In this context, it can be provided according to the invention in particular that the widening section 9 extends from an open end 16 of the extremity section 4, in particular of the trouser section 14, preferably of the trouser leg, as in Fig. 1, and / or the sleeve portion 15, preferably the sleeve, as shown in Fig. 7. In this context, it is further preferred that the widening section 9 extends in the longitudinal direction L of the extremity section 4, as is also shown in the Fig. 1 is illustrated.
[0100] In this regard, it can also be provided that the widening section 9 tapers upwards, in particular away from the open end 16 of the extremity section 4, as shown schematically in the Fig. 3 and Fig. 4. A tapered design enables, on the one hand, in particular, optimized folding and / or compression of the protective material 5 of the widened section 9. On the other hand, the operability and / or handling of the widened section 9 or the closure means 8 can be improved, since, in particular, correct positioning of the material of the widened section 9 before actuating the closure means 8 is not necessary. In particular, the widened section 9 tapers starting from the open end 16 of the extremity section 4 in the longitudinal direction L of the extremity section 4.
[0101] A tapering of the extremity section 4 is further advantageous in that, if necessary, the extremity section 4 itself can also taper towards the open end 16 and can thus better adapt to the shape of the respective extremity.
[0102] According to this, especially in Fig. 2 and Fig. In the embodiment of the present invention shown in Fig. 3, it can also be provided that the widening section 9 can be transferred by the closure means 8 into an optionally released, preferably widened and / or opened, or closed state.
[0103] In principle, by actuating the closure means 8, intermediate states of the widened section 9 can also be assumed, in which the closure means 8 has not been actuated to the maximum release. These states of the widened section 9 can be referred to in particular as partially released, preferably partially released and / or partially opened, states of the widened section 9. These states also correspond in particular to a partially closed widened section 9 and can thus, in other words, also be referred to in particular as partially closed states of the widened section 9.
[0104] In Fig. 3 schematically shows that, in a preferred embodiment of the present inventive concept, the widened section 9, in particular both in the closed and in the released state, preferably in the widened and / or opened state, comprises a closed, in particular continuous, unopened and / or coherent surface of the first layer 6 and / or the second layer 7. Unlike a zipper, for example in a trouser fly, the closure means 8 does not divide two parts of the protective material 5 spaced apart from one another by an opening. In this way, it is possible for the widened section 9, in particular in every state, to comprise a coherent protective material 5 and thus preferably the protective effect is not impaired by any openings, holes or the like formed in the protective material 5 during use and / or application.
[0105] In other words, in particular, at least the first layer 6 in the widened section 9 is designed to be unperforated and / or continuous in the closed and / or opened or released state, in particular in the widened state. The protective effect of the protective material 5 is ensured in particular by the first layer 6, which preferably has no perforations in the widened section 9, in particular in any state of the widened section 9, thereby ensuring good protection for the wearer's extremities.
[0106] In this context, it is particularly understood that the feature that the first layer is continuous and / or unperforated in the widened section 9 does not preclude the presence of perforations in any intended connecting areas and / or seam areas of individual cut pieces of the first layer 6 or in the connecting area to the second layer 7. These perforations would be present anyway and are not, or will not be, influenced by the widened section 9.
[0107] In Fig. 6 shows a particularly preferred embodiment in which the widening section 9, in the closed state of the widening section 9, has at least one fold 17 arranged and / or formed in the interior 13 of the protective clothing 1 and / or facing inwards, towards the wearer of the protective clothing 1, with at least two folding legs 18 of the protective clothing 1. The fold 17 enables, in particular, efficient compression and / or folding or stowing of the protective material 5 in the closed state of the widening section 9. Accordingly, the fold 17 can in particular ensure that the protective material 5, in the closed state, does not impair wearing comfort due to annoying bulges in the protective material 5.In the same way, damage to the protective material 5 can be prevented both in the closed state and when the closure means 8 is actuated, since the protective material 5 is allocated a certain space by the formation of the fold 17, which in particular does not make it difficult to actuate the closure means 8, for example by snagging.
[0108] For a further preferred embodiment, as the Fig. 3, it is provided that a side seam 40, in particular a trouser side seam, connecting at least two cuts of the second layer 7 to one another, in particular sewing them together, preferably running at least substantially in the longitudinal direction L of the extremity section 4, is provided and / or arranged in and / or on the widening section 9, preferably at least substantially centrally in the widening section 9.
[0109] What is not shown in more detail is that the side seam 40 can also be a sleeve side seam.
[0110] “Cuts” of the first and / or second layer 6, 7 are to be understood such that, in particular, the first and / or second layer 6, 7 are composed of parts or sections, wherein these parts or sections are referred to as “cuts” within the meaning of the present invention. Cuts of the first and / or second layer are, in particular, connected to one another in the worn and / or used state, preferably sewn. A plurality of cuts can be provided for both the first layer 6 and the second layer 7. Ultimately, the first layer 6 can be formed by connecting the cuts of the first layer 6. In the same way, the second layer 7 can be formed, in particular, by connecting the cuts of the second layer 7.
[0111] Advantageously, in this preferred embodiment of the present invention, in the closed state of the widened section 9, the closure means 8 can functionally replace the side seam 40 and / or be arranged at least substantially at the location where the side seam 40 would be arranged anyway without a widened section 9. A further advantage is that, in the closed state of the widened section 9, the side seam 40 is arranged inside the protective clothing 1 and can thus be protected. The risk of harmful and / or toxic substances penetrating through the side seam 40 can be further reduced in this way.
[0112] In Fig. 6 shows a particularly preferred embodiment in which the fold legs 18 of the fold 17 are separated from one another by the side seam 40 in the closed state of the widening section 9.
[0113] This makes it possible, in particular, for the fold 17 to be predetermined and / or determined by the side seam 40, whereby the fold 17 can be formed "automatically" without the wearer having to laboriously fold the fold 17 manually, and the fold legs 18 can be easily predetermined in this way. This leads, in particular, to simplified handling of the protective clothing 1, especially when putting on the protective clothing 1.
[0114] For a further preferred embodiment, Fig. 4 schematically shows that in the open state, the widened section 9 is wedge-shaped. The wedge shape of the widened section 9 increases the wearing comfort of the protective clothing 1 and, in particular, simplifies folding the fold 17 and / or the protective material 5 when closing the widened section 9. Furthermore, the wedge shape can provide an expansion in that section of the extremity section 4 which, in particular, should be as wide as possible when putting on the protective clothing 1, but should be reduced as much as possible when in use and / or in the application state. This particularly applies to the area around the open end 16 of the extremity section 4, which should be as wide as possible when putting on the protective clothing 1, for example for wearing protective equipment such as gloves and / or footwear.However, if the protective equipment has been passed through the extremity sections 4, the opening cross-section in this area should ideally be reducible to prevent the risk of toxic and / or harmful substances entering. Within the scope of the invention, these diametrically opposed requirements can thus be met in a particularly advantageous manner.
[0115] In the Fig. 5 shows a particularly preferred embodiment in which, in the closed state, the fold 17 and / or the fold legs 18 of the widening section 9 is / are formed as a wedge-shaped fold 17 and / or as a wedge-shaped fold leg 18. The fold 17 and the fold legs 18 are in the Fig. 5, since the widening section 9 is shown in the closed state. However, the wedge shape is schematically represented by a dashed line.
[0116] In Fig. 4 further illustrates that the closure means 8 preferably terminates at and / or in the region of the tapered end(s) 19 of the widened portion 9, particularly in the open and / or closed state of the widened portion 9. The wedge shape of the widened portion 9 can consequently also determine the course of the closure means 8 and thus ensure, particularly at the pointed end 19, that no material becomes caught in the closure means 8 at the end of the closure means 8 when the widened portion 9 is fully open.
[0117] An angle α, as shown schematically in the Fig. 3 and Fig. 4, at the tapered end 19 of the wedge-shaped widening section 9, particularly in the open state of the widening section 9, of at least 3°, preferably at least 5°, more preferably at least 10°, and / or from 3° to 70°, more preferably from 5° to 40°, more preferably from 10° to 25°. The aforementioned angles α enable an improved design of the widening section 9.
[0118] In Fig. Figure 3 clearly shows that, in a further preferred embodiment, the closure means 8 extends at least substantially over the entire length, in particular in the longitudinal direction L of the extremity section 4, of the widened section 9. Consequently, the widened section 9 does not protrude relative to the closure means 8. In this way, the entire widened section 9 can be actuated by the closure means 8.
[0119] In a particularly preferred embodiment, the maximum width of the extremity section 4 in the closed state of the widening section 9 corresponds to at least 5%, preferably at least 10%, more preferably at least 15%, in particular at least 20%, of the length of the extremity section 4, in particular extending in the longitudinal direction L of the extremity section 4. In this way, in particular, an elongated extremity section 4 is obtained which can be used to cover the extremity of a wearer and can consequently adapt to the elongated shape of the wearer's extremity, thereby ensuring optimal protection.
[0120] In other words, it is preferably provided that the maximum width of the extremity section 4 in the closed state of the widening section 9 corresponds to between 5% and 60%, preferably between 10% and 40%, more preferably between 15% and 35%, in particular between 20% and 30%, of the length of the extremity section 4, in particular running in the longitudinal direction L of the extremity section 4.
[0121] In Fig. 3 shows, for the preferred embodiment illustrated there, that the maximum width of the extremity section 4 in the released state, preferably in the widened and / or opened state, of the widening section 9 corresponds to at least 6%, preferably at least 12%, more preferably at least 18%, in particular at least 23%, of the length of the extremity section 4, in particular running in the longitudinal direction L of the extremity section 4. This makes it possible, in particular, that the opening cross-section or the inner and / or outer diameter 10, 11 of the extremity section 4 can be sufficiently enlarged to increase handleability and that the protective clothing 1 can be easily and quickly put on even when wearing footwear and / or gloves.
[0122] In other words, the maximum width of the extremity section 4 in the released state, preferably in the widened and / or opened state, of the widening section 9 can correspond to between 6% and 65%, preferably between 12% and 45%, more preferably between 18% and 40%, in particular between 23% and 33%, of the length of the extremity section 4, in particular running in the longitudinal direction L of the extremity section 4.
[0123] In a particularly preferred embodiment, it is provided that the closure means 8 runs continuously and / or uninterruptedly over the entire length of the widening section 9 and / or is designed as a continuous or uninterrupted closure means 8, as is shown schematically in particular in the Fig. 3 is shown.
[0124] In particular, it is provided that the closure means 8 is designed as a zipper 20, as can be seen from the Fig. 4, among other things, is schematically shown. The zipper 20 allows for simple operation with few operating errors, and the zipper 20 is also characterized by its durability and secure closure.
[0125] Preferably, the zipper 20 has two side parts 21, in particular having staples, and a slider 22 that selectively connects the side parts 21 via a positive fit. In particular, the side parts 21 of the zipper 20 can delimit the widening section 9, as schematically shown in the Fig. 3 represents.
[0126] In Fig. Figure 6 shows particularly clearly that, in a further preferred embodiment, the closure means 8, in particular the side parts 21 of the zipper 20, is placed and / or laid onto the protective material 5, in particular the second layer 7, preferably completely, and is preferably firmly connected, in particular sewn, to the protective material 5, in particular the second layer 7. In this way, in particular, the functionality of the protective material 5, the first and second layers 6, 7 cannot be impaired, and, moreover, simple adaptation of the closure means 8 is also ensured.
[0127] Preferably, the closure means 8 is connected to the second layer 7 in an unenclosed or unenclosed manner and / or in an unenclosed or unenclosed manner and / or is arranged on the second layer 7. Consequently, the functionality of the closure means 8 is also not impaired.
[0128] In Fig. Figure 4 shows that the closure means 8, in particular the zipper 20, preferably has at least two closure elements 23, in particular side parts 21, that can be connected to one another, preferably in a form-fitting manner. The closure elements 23 enable a limitation of the widened section 9 and, furthermore, a secure closure of the widened section 9 in the closed state. The closure elements 23 can be designed to be complementary to one another, at least in some areas, thus ensuring multiple actuation of the closure means 8.
[0129] In Fig. Figure 2 shows a further preferred embodiment in which, in particular, the closure elements 23, in particular the side parts 21, of the closure means 8 are each sewn to the second layer 7, preferably only and / or exclusively to the second layer 7, by at least one seam region 12. Consequently, the seam region 12 does not impair the protective effect of the first layer 6 and / or the first layer 6 as such.
[0130] In the Fig. 3 schematically shows that the widened section 9 preferably extends over at least 40%, in particular over at least 50%, preferably over at least 60%, of the length of the extremity section 4, in particular the trouser section 14, preferably the trouser leg, and / or the sleeve section 15, preferably the sleeve. The widening of the inner opening cross-section of the extremity section 4 can thus be provided over a large part of the length of the extremity section 4, after which the previously described advantages of easy handling of the protective clothing 1 can follow.
[0131] In other words, the widening section 9 can extend over a range of 40% and 100%, preferably a range of 50% to 95%, more preferably a range of 60% to 85%, of the length of the extremity section 4, in particular trouser section 14, preferably the trouser leg, and / or the sleeve section 15, preferably the sleeve.
[0132] In a particularly preferred embodiment, the widening section 9 can lead to a maximum widening and / or enlargement of the inner and / or outer diameter 10, 11 of the extremity section 4, in particular the trouser section 14, preferably the trouser leg, and / or the sleeve section 15, preferably the sleeve, in particular at the open end 16 of the extremity section 4, of at least 3%, preferably of at least 5%, more preferably of at least 5%, in particular of at least 10%. The aforementioned widening allows, in particular, the wearer's extremities to slide easily into the extremity sections 4 when donning the protective clothing 1.
[0133] In other words, the widening section 9 can lead to a maximum widening and / or enlargement of the inner and / or outer diameter 10, 11 of the extremity section 4, in particular of the trouser section 14, preferably of the trouser leg, and / or of the sleeve section 15, preferably of the sleeve, in particular at the open end 16 of the extremity section 4 in a range of 3% to 70%, preferably in a range of 5% to 50%, more preferably in a range of 10% to 40%, in particular in a range of 12% to 30%.
[0134] In further embodiments, the extremity section 4, in particular the trouser section 14, preferably the trouser leg, and / or the sleeve section 15, preferably the sleeve, can be at least substantially tubular, in particular at least substantially cylindrical, at least in the region of the widened section 9 in the closed state of the widened section 9. Particularly preferably, in this context, it can be provided that the width of the extremity section 4, in particular the trouser section 14, preferably the trouser leg, and / or the sleeve section 15, preferably the sleeve, in the closed state of the widened section 9, is at least substantially the same, preferably across and / or in the longitudinal direction L of the extremity section 4.
[0135] According to a further preferred embodiment, as shown in Fig. 2, the extremity section 4, in particular the trouser section 14, preferably the trouser leg, is tapered at least in the region of the widened section 9 when the widened section 9 is closed, towards the open end 16 of the extremity section 4, in particular running in the longitudinal direction L of the extremity section 4. In this way, in particular the fit of the extremity section can be improved when the widened section 9 is closed, since the tapered extremity section 4 can adapt to a tapered extremity of the wearer, whereby ultimately the protective effect against harmful and / or toxic substances can also be improved when the protective clothing 1 is worn.
[0136] In the Fig. 7 schematically illustrates that the sleeve section 15, preferably the sleeve, is preferably also tapered toward the open end 16 of the extremity section 4, at least in the region of the widened section 9 in the closed state of the widened section 9, in particular extending in the longitudinal direction L of the extremity section 4. This can result in the advantages described above.
[0137] In this context, it is particularly preferred if the minimum width of the extremity section 4 in the tapered region of the extremity section 4 corresponds to at least 60%, preferably at least 70%, more preferably at least 80%, in particular at least 85%, and / or from 60% to 95%, preferably from 70% to 90%, more preferably from 75% to 85%, of the maximum width of the extremity section 4 in the tapered region of the extremity section 4.
[0138] In the Fig. 2 and Fig. 3 schematically shows that preferably in the interior 13 of the protective clothing 1, in particular in the interior 13 of the extremity section 4, in particular of the trouser section 14, preferably of the trouser leg, a gaiter (“inner gaiter”) 24 is provided for arrangement on the foot, on the footwear and / or on the lower extremity, in particular on the leg, of the wearer.
[0139] The gaiter 4 makes it possible to ensure that the protective clothing 1 does not shift and / or slip, in particular when the protective clothing 1 is worn and / or used. The gaiter 4 can preferably also be connected to external equipment, such as footwear, and in this way position in particular the extremity section 4 relative to the footwear.
[0140] Furthermore, when putting on the protective clothing, the first layer 6 can be protected from damage by the material of the gaiter 24. At the same time, the gaiter facilitates sliding into the extremity section 4, especially when protective equipment is on.
[0141] The wearing comfort of the protective clothing 1 can also be improved by the gaiter 24, in particular by the gaiter 24 and not the first layer 6 being adjacent to the extremity of the wearer.
[0142] In particular, the gaiter 24 is connected, in particular sewn, to at least the first layer 6, in particular only and / or exclusively to the first layer 6. This enables the internal arrangement of the gaiter 24, which, in the applied state, only protrudes a small portion from the extremity portion 4.
[0143] In this context, it is particularly preferred that the gaiter 24 extends at least over the length of the widened section 9. The protective clothing 1 can therefore be positioned by the gaiter 24, in particular both in the open and in the closed state of the widened section 9.
[0144] In this context, it is particularly preferred that the opening width of the gaiter 24 at least substantially corresponds to the opening width of the extremity section 4, preferably of the trouser section 14, preferably of the trouser leg, in particular the inner diameter 10 of the extremity section 4, preferably of the trouser section 14, preferably of the trouser leg, in the released state, preferably in the widened and / or opened state, of the widening section 9 and / or exceeds this, as is clearly shown in Fig. 3. The gaiter 24 therefore does not represent any further obstacle when inserting the wearer's extremities into the respective extremity sections 4 and consequently does not impair the achievement of the previously described advantages of the widening section 9 according to the invention.
[0145] In this context, it is advantageously provided that the gaiter 24 can be reduced in its opening cross-section via a fastening means 25. The fastening means 25 can, in particular, comprise an elastic band and a locking element for securing or releasing the elastic band as needed. The fastening means 25 enables the gaiter 24 to be secured in place during use. The fastening means 25 can also have a barrier effect, which is particularly advantageous when combined with the widened section 9, allowing a reinforced barrier effect to be achieved against the penetration of harmful substances.
[0146] In the Fig. 15, a further preferred embodiment provides that the protective clothing 1 has at least one opening section 27, in particular a fly, which can be opened and / or closed with a further closure means 26, for selectively opening the protective clothing 1 in the region of the opening section 27. The opening section 27 enables further simplified donning of the protective clothing 1, which, depending on the fit, requires the opening section 27 to be opened as needed.
[0147] It is not shown in more detail that the opening section is and / or forms a divisible opening section 27 of a jacket 3, a sweater or an overall.
[0148] The opening section 27 can be specially protected according to the invention, as explained below: In this context, the further closure means 26, in the closed state, can be covered and / or overlapped on the underside and / or on its side facing the interior 13 of the protective clothing 1 and on the top side and / or on its side facing the pollutant and / or toxic substance source, respectively, with a material section 28a, 28b of at least the first layer 6, in particular with a material section 28a, 28b of the protective material 5. This arrangement enables, in particular, at least "double protection", namely protection on the top and bottom sides of the further closure means 26 in the closed state of the opening section 27, as shown in Fig. 17 is particularly clearly shown schematically in the closed state of the opening section 27.
[0149] In this context, it is particularly preferred that the additional closure means 26 be designed to be liquid-repellent, preferably water-repellent, in particular waterproof, and / or air- or windproof. This provides additional protection for the wearer in the area of the additional closure means 26, whereby, combined with the top and bottom arrangement of the respective material sections 28a, 28b, "triple protection" of the additional closure means 26 can be ensured.
[0150] In addition to the widened section 9, the opening section 27 creates a user-friendly and safer protective clothing 1, which is characterized by effective application of the protective clothing 1, but despite this improved manageability, does not lead to a reduction in the protective effect in use. Accordingly, the opening section 27 and the widened section 9 develop a synergistic effect and provide an overall efficiently usable protective clothing 1.
[0151] In this context, it is generally preferred that the further closure means 26 comprises at least two further closure elements 29 that can be connected to one another, preferably in a form-fitting manner. The further closure elements 29 can, in particular, be designed to complement one another in some areas and, in particular, ensure a form-fitting connection of the further closure means 26.
[0152] Particularly preferably, the further closure means 26 is designed as a further zipper 30, preferably wherein the further zipper 30 has two side parts 31, in particular having staples, and a slider 32 optionally connecting the side parts 31 via a positive fit, as shown in the Fig. 15, Fig. 16 and Fig. 18 is shown schematically. Preferably, the side parts 31 of the further zipper 30 delimit the opening section 27.
[0153] In Fig. 16 shows that the protective clothing 1 has and / or forms an opening 33 in the open state of the opening section 27. In particular, in the open state of the opening section 27, two partial sections of the protective clothing 1, on each of which a further closure element 29 of the further closure means 26 is arranged, are spaced apart from one another and / or these partial sections are separated from one another, as is clearly shown in a schematic representation. Fig. 16 shows.
[0154] The opening 33 allows a widening of the protective clothing 1 for putting on the protective clothing 1.
[0155] In Fig. 16 further shows that at least one material section 28a designed as a lower cover section 34 is arranged on at least one partial section of the protective clothing 1, according to which in particular the previously shown protection of the opening section 27 can be achieved.
[0156] Furthermore, in this context, it is further provided that the lower cover section 34 protrudes from the partial section on which the lower cover section 34 is arranged.
[0157] In addition, the lower cover section 34 can, at least in part, preferably completely, cover and / or overlap the further closure means 26 on the side facing the wearer of the protective clothing 1 when the further closure means 26 is closed. This arrangement also results in the previously described protective effect provided by the material section 28a.
[0158] In this context, it is further particularly preferably provided that the further closure means 26 is covered and / or covered on the upper side, in particular on a side of the protective clothing 1 facing the harmful and / or toxic substance source, by a material section 28b designed as an upper cover section 35, at least in some areas, preferably completely, in the closed state of the further closure means, as shown schematically in the Fig. 15 is shown.
[0159] The upper cover section 35 can be arranged on at least one partial section of the protective clothing 1, in particular on the partial section of the protective clothing 1 on which the lower cover section 34 is also arranged, as is also the case with the Fig. 15. Both material sections 28a, 28b can therefore be arranged on the same subsection, thus simplifying the application of the protective clothing 1 and optimizing the protective effect.
[0160] In Fig. 15 further shows that the upper cover section 35 preferably protrudes from the partial section on which the upper cover section 35 is arranged, thus extending the protected area even when the opening section 27 is partially opened.
[0161] It is further particularly preferred that the further closure means 26 is designed to be liquid-repellent, preferably water-repellent, in particular waterproof, and / or air- or wind-tight, which leads to an improvement in the protective effect, as already explained above.
[0162] In this case, the additional closure elements 29, in particular the side parts 31, of the additional closure means 26 can preferably have, at least in some areas, preferably completely, a plastic coating and / or plastic film, preferably a polyurethane coating and / or a polyurethane film, in particular on the side of the protective clothing 1 facing the source of harmful and / or toxic substances, and / or can be formed at least in some areas, preferably completely, from a plastic, preferably polyurethane. The aforementioned coating ensures protection against liquids and / or wind and prevents the penetration of liquids via the additional closure means 26, thus further improving the protective effect of the entire protective clothing 1.
[0163] According to the invention, the adsorption layer 6a can be discontinuous and / or gas-permeable.
[0164] In a further particularly preferred embodiment of the present inventive concept, it is provided that the adsorption layer 6a is connected to the textile carrier layer 6b via an adhesive layer 36 applied to one side of the textile carrier layer 6b.
[0165] In particular, the adhesion promoter layer 36 can fix and / or adhere the adsorption layer 6a.
[0166] In addition, the adhesive layer 36 can be present and / or formed as a water vapor and / or gas permeable and / or discontinuously formed adhesive layer, preferably based on an adhesive polymer.
[0167] Advantageously, the adhesive layer 36 provides or enables a bond of the adsorption layer 6a that is particularly durable for long-term use of the protective clothing 1 and, moreover, is also optimally designed, particularly with regard to the protective effect of the protective material 5, preferably due to its discontinuous design. The adhesive layer 36 can therefore, in particular, ensure the correct positioning of the adsorption layer 6a and thus contribute to improving the protective effect of the protective material 5 against harmful and / or toxic substances.
[0168] In a particularly preferred embodiment, it is provided that the first layer 6 is and / or is designed to be gas-permeable, in particular air-permeable.
[0169] In particular, it can be provided that the first layer 6 is present and / or formed as a gas-permeable, in particular air-permeable, preferably textile, sheet material.
[0170] In this context, the textile carrier layer 6b can be present and / or formed as a preferably gas-permeable, in particular air-permeable, textile sheet structure.
[0171] In general, in this context, it can further be provided that the textile carrier layer 6b is designed as a knitted fabric, in particular as a warp-knitted fabric (knitted fabric) or a knitted fabric (knitted fabric), woven fabric, scrim or textile composite material, in particular as a knit fabric.
[0172] Furthermore, according to a preferred embodiment, it can be provided that the textile carrier layer 6b has a basis weight in the range of 10 g / m 2 up to 350 g / m 2 , especially in the range of 20 g / m 2 up to 300 g / m 2, preferably in the range of 30 g / m 2 up to 250 g / m 2 , particularly preferably in the range of 50 g / m 2 up to 175 g / m 2 , in particular determined according to DIN EN 12127, preferably after 24 hours of conditioning at a temperature of 20 °C and a relative humidity of 65 %.
[0173] Furthermore, with regard to the adsorption layer 6a of the first layer 6, the following embodiments have proven particularly advantageous within the scope of the present invention. Thus, the invention provides, in particular, for the adsorption layer 6a to be discontinuous. In particular, the adsorption layer 6a is gas-permeable, preferably air-permeable.
[0174] As shown in the enlarged section according to Fig. 8 and beyond in the Fig. 9 to 13, it is particularly provided that the adsorption layer 6a comprises adsorber particles 6c, in particular a plurality of individual and / or discrete adsorber particles 6c, or is formed therefrom. According to the invention, the first layer 6 is constructed in at least two layers (cf., for example, Fig. 8 and Fig. 13). Fig. Figure 8 illustrates a two-layer structure of the first layer 6, while Fig. 9 to 13 illustrate three-, four- and five-layer structures.
[0175] In a further, likewise preferred, in particular alternative, embodiment, it is provided that the adsorption layer 6a comprises and / or is formed from adsorber fibers and / or adsorber filaments, in particular activated carbon fibers and / or activated carbon filaments, preferably in the form of an activated carbon fiber sheet.
[0176] In general, the adsorbent particles 6c of the adsorption layer 6a can be selected from the group of (i) in particular particulate activated carbon and / or activated carbon particles, preferably in the form of activated carbon particles in granular form (“granular carbon”) or activated carbon particles in spherical form (“spherical carbon”); (ii) zeolites, in particular natural and / or synthetic zeolites; (iii) molecular sieves, in particular zeolitic molecular sieves, synthetic molecular sieves and / or in particular synthetic molecular sieves based on carbon, oxides and / or glasses; (iv) metal oxide and / or metal particles; (v) ion exchange resins, in particular polydisperse and / or monodisperse cation and / or anion exchangers, in particular of the gel type and / or macroporous type; (vi) inorganic oxides, in particular silicon dioxides, silica gels and / or aluminum oxides; (vii) porous organic polymers and / or porous organic-inorganic hybrid polymers and / or metal-organic framework materials, in particular MOFs (metal organic framework), COFs (covalent organic framework), ZIFs (zeolite imidazolate framework), POMs (polymer organic material) and / or OFCs; (viii) mineral granules; (ix) clathrates; and (x) mixtures and / or combinations thereof; with (i) being particularly preferred.
[0177] In particular, the adsorber particles 6c of the adsorption layer 6a can be activated carbon particles, preferably in the form of activated carbon particles in granular form (“granular carbon”) or activated carbon particles in spherical form (“spherical carbon”), preferably in the form of activated carbon particles in spherical form.
[0178] According to the invention, however, it can also be provided in principle that the adsorber particles 6c of the adsorption layer 6a are activated carbon fibers or activated carbon filaments in the form of an activated carbon fiber sheet.
[0179] In this context, according to the invention, with regard to the specific design of the adsorber particles 6c, preferably in the form of activated carbon particles in grain or spherical form, the behavior can be as follows: - In this context, the diameter of the adsorber particles 6c, in particular of the activated carbon particles, can be 0.005 mm to 2.5 mm, preferably 0.01 mm to 2 mm, preferably 0.015 mm to 1.5 mm, particularly preferably 0.02 mm to 1.25 mm, very particularly preferably 0.03 mm to 1 mm, and / or wherein the average diameter, in particular the average diameter D 50, the adsorber particles 6c, in particular the activated carbon particles, 0.01 mm to 2 mm, in particular 0.02 mm to 1.75 mm, preferably 0.03 mm to 1.5 mm, particularly preferably 0.04 mm to 1.25 mm, very particularly preferably 0.04 mm to 1 mm. - In addition, the adsorbent particles 6c, in particular the activated carbon particles, can be used in an amount in the range of 5 g / m 2 up to 300 g / m 2 , especially 25 g / m 2 up to 275 g / m 2 , preferably 30 g / m 2 up to 250 g / m 2 , preferably 50 g / m 2 up to 200 g / m 2 , and / or the protective material 1, in particular the adsorption layer 6a, the adsorber particles 6c, in particular the activated carbon particles, can be used in an amount in the range of 5 g / m 2 up to 300 g / m 2 , especially 25 g / m 2 up to 275 g / m 2 , preferably 30 g / m 2 up to 250 g / m 2 , preferably 50 g / m 2 up to 200 g / m 2 , have. - Furthermore, the adsorbent particles 6c, in particular the activated carbon particles, can be obtainable by carbonization and subsequent activation of a synthetic and / or non-natural substance-based particulate starting material, in particular based on organic polymer particles. - Preferably, the adsorbent particles 6c, in particular the activated carbon particles, can be obtained from a particulate starting material based on organic polymers, in particular based on sulfonated organic polymers, preferably based on divinylbenzene-crosslinked polystyrene, preferably based on styrene / divinylbenzene copolymers, in particular by carbonization and subsequent activation of the starting material, in particular wherein the content of divinylbenzene in the starting material is in the range from 1 wt.% to 20 wt.%, in particular 1 wt.% to 15 wt.%, preferably 1.5 wt.% to 12.5 wt.%, preferably 2 wt.% to 10 wt.%, based on the starting material. - In addition, it can be provided that the adsorber particles 6c, in particular the activated carbon particles, are formed on the basis of a polymer-based spherical activated carbon (PBSAC) and / or that the adsorber particles 6c, in particular the activated carbon particles, are formed from a polymer-based spherical activated carbon (PBSAC).
[0180] In the Fig. 11 and Fig. 13 shows preferred embodiments of the invention, in which the first layer 6 additionally has a cover layer 37, in particular arranged on the adsorption layer 6a and / or connected to the adsorption layer 6a. Particularly preferably, the cover layer 37 is present as a preferably gas-permeable textile fabric and / or is designed as such.
[0181] The cover layer 37 can equally function as the outer layer of the first layer 6 (in particular on the side of the first layer 6 facing away from the wearer or user in the wearing or use state of the protective clothing 1), as shown in Fig. 13 is shown schematically. In the Fig. 11, however, shows a further preferred embodiment in which a particle and / or aerosol layer 39, which will be discussed below, forms the outer layer of the first layer 6.
[0182] In the Fig. 13 schematically shows the application of the protective material 5, in which a distance between the first layer 6 and the second layer 7 can be made possible except in possible connecting areas, in particular in seam seams or seam seam areas. This distance is shown in the Fig. 13. Such a distance can also be made possible, in particular, in the non-directly connected areas of the layers 6, 7, for the layer structures of the protective material 5 shown in the other figures.
[0183] The cover layer 37 can therefore protect the adsorption layer 6a from damage, particularly due to mechanical forces. This enables long-term use of the protective clothing 1 with a high level of protection against toxic and / or harmful substances.
[0184] In a further preferred embodiment, each of which is described in the Fig. 1 to 3, the protective clothing 1 has, in and / or on the extremity section 4, in particular in the lower region facing the open end 16 of the extremity section 4, an adjustment means 38 for variably adjusting the inner and / or outer diameter 10, 11 of the extremity section 4, in particular in the region of the adjustment means 38. Preferably, the adjustment means 38 enables the extremity section 4 to rest on and / or nestle precisely against the extremities and / or other items of clothing, in particular footwear and / or gloves, in the region of the extremities of the wearer.
[0185] The adjustment means 38 can be formed in particular by a hook and loop fastener connected to the second layer 7, preferably only and / or exclusively to the second layer 7, as shown in the Fig. 1 to 3. In addition to the defined or predetermined widening and reduction of the internal cross-section in the extremity section 4 by the widening section 9, the adjusting means 38 now creates additional variable adjustability of the extremity section 4 for a precise fit to the extremities of the wearer. In particular, the adjusting means 38 is only actuated once the protective clothing 1 has been put on and the widening section 9 has been moved into the closed state. Fine adjustment can then be carried out by the adjusting means 38. In this embodiment according to the invention, the wearer of the protective clothing 1 is thus given the option of optimally adapting the protective clothing 1 to his or her body shape, wherein the widening section 9 according to the invention particularly improves the wearing comfort and the ease of putting on the protective clothing 1.
[0186] It is particularly preferred within the scope of the present invention if the widened section 9 is combined with the adjustment means 38 and the fastening means 25, if a gaiter 24 is provided, as a measure for efficient and secure adjustment of the protective clothing 1 according to the invention. In this way, three different means are provided in a protective clothing 1 according to the invention, which clearly complement one another in their individual effects, allowing quick and uncomplicated donning of the bulwark clothing 1 and, moreover, specifically quick, individual, and precisely fitting adjustment of the protective clothing, which is essential to enable the best possible protective effect of the protective clothing 1. In this respect, there is a synergistic effect of the various closure and adjustment means, which is clearly beneficial to the protective clothing 1 according to the invention as a whole.
[0187] In addition, the Fig. 10 and Fig. 11 each show embodiments according to the invention, according to which the first layer 6 additionally has a particle and / or aerosol filter layer 39, preferably a particle and aerosol filter layer 39.
[0188] Fig. 11 shows that in a preferred embodiment, the particle and / or aerosol filter layer 39 is arranged on the cover layer 37 and / or connected to the cover layer 37.
[0189] Fig. 10 shows a further embodiment in which in particular the particle and / or aerosol filter layer 39 is arranged on the adsorption layer 6a and / or is connected to the adsorption layer 6a.
[0190] On this basis, the first layer 6 can additionally be equipped with particle or aerosol filter properties. This further increases the protective function against harmful or toxic substances, whereby, as a result of this inventive measure, the adsorption layer 6a is further relieved and thus does not deplete as quickly. This can further extend the use or wear time of the protective clothing 1 according to the invention.
[0191] In this context, the particle and / or aerosol filter layer 39 can be present and / or formed as a gas-permeable textile fabric comprising or formed from a plurality of individual textile fibers. Furthermore, the particle and / or aerosol filter layer 39 can comprise or consist of at least one functional layer with particle and / or aerosol filter properties, in particular with particle and aerosol filter properties.
[0192] Within the scope of the present invention, the particle and / or aerosol filter layer 39, if present, is generally arranged or positioned in front of the adsorption layer 6a in the direction of a pollutant or toxic substance source, and thus in particular on the side or surface of the adsorption layer 6a facing away from the wearer or user of the protective clothing 1. This can relieve the adsorption layer 6a of the load it takes on with regard to the absorption of pollutants or toxic substances, since these can largely already be absorbed by the particle or aerosol filter layer 6e.
[0193] Furthermore, the particle and / or aerosol filter layer 39 can be designed to be gas-permeable, in particular air-permeable, and / or water vapor-permeable, preferably gas-permeable, in particular air-permeable, and water vapor-permeable, preferably air-permeable and water vapor-permeable.
[0194] In particular, it can be provided according to the invention that the particle and / or aerosol filter layer 39 is present and / or formed as a gas-permeable textile fabric which comprises or is formed from a plurality of individual textile fibers with fiber diameters in the range from 10 nm to 30 µm, preferably in the range from 50 nm to 10 µm, preferably with a basis weight (in particular determined as dry weight), in particular determined according to DIN EN 12127, preferably after 1 hour of drying at 105 °C, in the range of 2 g / m 2 up to 100 g / m 2 , especially in the range of 5 g / m 2 up to 90 g / m 2 , particularly preferably in the range of 10 g / m 2 up to 80 g / m 2 .
[0195] In addition, the particle and / or aerosol filter layer 39 can have a basis weight (in particular determined as dry weight) in the range of 2 g / m 2 up to 100 g / m 2, especially in the range of 5 g / m 2 up to 90 g / m 2 , particularly preferably in the range of 10 g / m 2 up to 80 g / m 2 , in particular determined according to DIN EN 12127, preferably after drying for 1 hour at 105 °C.
[0196] According to the invention, it can be provided overall that the textile fibers of the particle and / or aerosol filter layer 39 have fiber diameters in the range from 10 nm to 30 µm, preferably in the range from 50 nm to 10 µm.
[0197] In this context, synthetic fibers (chemical fibers) can be used as textile fibers of the particle and / or aerosol filter layer 39, in particular from the group of polyesters (PES); polyolefins, such as polyethylene (PE), polypropylene (PP), polyoxyethylene and polyoxypropylene; polyvinyl chlorides (CLF); polyvinylidene chlorides (CLF); acetates (CA); triacetates (CTA); polyacrylic (PAN), in particular polyacrylonitriles; polyamides (PA); polyvinyl alcohol (PVAL); polyurethanes; polyvinyl esters; poly(meth-)acrylates; polyvinylidene fluorides (PVDF); and mixtures thereof, particularly preferably polyurethanes; polyesters, polyolefins, polyamides, polyacrylonitriles, poly(meth-)acrylates and polyvinylidene fluorides (PVDF) and mixtures thereof, very particularly preferably polyurethanes.
[0198] Furthermore, polyurethane fibers can be used as textile fibers for the particle and / or aerosol filter layer 39. In particular, the particle and / or aerosol filter layer 39, in particular the functional layer, can comprise or consist of polyurethane fibers.
[0199] In general, the particle and / or aerosol filter layer 39 can be formed as a scrim or textile composite material, in particular nonwoven, particularly preferably as a nonwoven.
[0200] According to a preferred embodiment of the invention, the particle and / or aerosol filter layer 39 is formed and / or is present as a scrim or textile composite material, in particular nonwoven, particularly preferably as a nonwoven, of polyurethane fibers.
[0201] Based on the aforementioned technical measures, particularly defined fiber arrangements can be realized in the particle or aerosol filter layer 39, which leads to further defined particle or aerosol filter properties with simultaneously high gas or air permeability.
[0202] Preferably, the particle and / or aerosol filter layer 39 can be produced by electrospinning, meltblow processes or a combination of these two processes, preferably by a combination of electrospinning and meltblow processes.
[0203] According to the invention, numerous arrangements are possible for the particle or aerosol filter layer 39: Thus, according to the invention, the particle and / or aerosol filter layer 39 can be arranged directly on the adsorption layer 6a, in particular fixed on and / or to the adsorption layer 6a, preferably laminated thereto. In this way, the particle and / or aerosol layer 39 can also protect the adsorption layer 6a and / or the filter properties of the protective clothing 1 can be improved.
[0204] According to the invention, it can also be provided that the particle and / or aerosol filter layer 39 is fixed on and / or to the adsorption layer 6a, preferably by means of lamination, in particular wherein the particle and / or aerosol filter layer 39 is also fixed on and / or to the cover layer 37, preferably by means of lamination.
[0205] According to a further embodiment of the present invention, it can also be provided that the particle and / or aerosol filter layer 39 is fixed on and / or to the adsorption layer 6a, preferably by means of lamination, and wherein the particle and / or aerosol filter layer 39 is also fixed on and / or to the cover layer 37, preferably by means of lamination.
[0206] In general, the particle and / or aerosol filter layer 39 can be a textile fabric formed by and / or from textile fibers, in particular synthetic textile fibers, preferably polyurethane fibers, with a plurality of pores or meshes delimited by the textile fibers.
[0207] In particular, in a further preferred embodiment, the particle and / or aerosol filter layer 39 can have an average pore size or average mesh size of at most 200 µm, in particular of at most 100 µm, preferably of at most 75 µm, particularly preferably of at most 50 µm, very particularly preferably of at most 40 µm, even more preferably of at most 10 µm. Particularly preferably, the particle and / or aerosol filter layer 39 can have an average pore size or average mesh size in the range from 0.5 µm to 200 µm, in particular in the range from 0.75 µm to 100 µm, preferably in the range from 1 µm to 75 µm, particularly preferably in the range from 1.5 µm to 50 µm, very particularly preferably in the range from 1.75 µm to 40 µm, even more preferably in the range from 2 µm to 10 µm.
[0208] According to this embodiment, it is thus particularly such that the particle and / or aerosol filter layer 39 has pores or meshes, in particular a plurality of pores or meshes.
[0209] In particular, it can be provided according to the invention that the average pore size or average mesh size is at most 200 µm, in particular at most 100 µm, preferably at most 75 µm, particularly preferably at most 50 µm, very particularly preferably at most 40 µm, even more preferably at most 10 µm.
[0210] In other words, the average pore size or average mesh size can be in particular in the range from 0.5 µm to 200 µm, in particular in the range from 0.75 µm to 100 µm, preferably in the range from 1 µm to 75 µm, particularly preferably in the range from 1.5 µm to 50 µm, very particularly preferably in the range from 1.75 µm to 40 µm, even more preferably in the range from 2 µm to 10 µm.
[0211] According to a particularly preferred embodiment of the invention, the particle and / or aerosol filter layer 39 can be a textile fabric formed by and / or from textile fibers, in particular synthetic textile fibers, preferably polyurethane fibers, with pores or meshes delimited by the textile fibers. It is particularly preferred that the ratio of the average pore size or mesh width to the average diameter of the textile fibers be in the range from 0.1 to 2,000, in particular in the range from 1 to 500, preferably in the range from 5 to 350, particularly preferably in the range from 10 to 300, and most particularly preferably in the range from 25 to 250.
[0212] In this context, the particle and / or aerosol filter layer 39 may have the following properties: - Thus, the particle and / or aerosol filter layer 39 can have an average efficiency E maccording to DIN EN 779 (July 1993) of at least 40%, in particular at least 50%, preferably at least 70%, particularly preferably at least 90%, very particularly preferably at least 95%, and / or the particle and / or aerosol filter layer 39 can have an average separation efficiency A m according to DIN EN 779 (July 1993) of at least 50%, in particular at least 70%, preferably at least 90%, particularly preferably at least 95%, very particularly preferably at least 99%. - In addition, it can be provided that the particle and / or aerosol filter layer 39 has an integral initial transmittance D i according to DIN EN 1822 (April 1998; DEHS aerosol, MPPS = 0.1 to 0.3 µm) of at most 50%, in particular at most 40%, preferably at most 30%, particularly preferably at most 20%, very particularly preferably at most 10%. - According to the invention, the particle and / or aerosol filter layer 39 can have an average separation rate for particles and / or aerosols with diameters in the range from 0.1 to 0.3 µm of at least 80%, in particular at least 90%, preferably at least 95%, at an inflow velocity of 0.1 m / s. Alternatively or additionally, the particle and / or aerosol filter layer 39 can have an average separation rate for particles and / or aerosols with diameters ≥ 2 µm, in particular ≥ 1.5 µm, preferably ≥ 1.0 µm, of at least 95%, in particular at least 98%, preferably at least 99%, at an inflow velocity of 0.1 m / s. - In addition, the particle and / or aerosol filter layer 39 can have a separation efficiency, in particular fractional separation efficiency, of at least 80%, in particular of at least 85%, preferably of at least 90%, determined according to DIN EN 1822 at a pressure difference of 15 Pascal with potassium chloride (KCl) as test substance as minimum efficiency (MPPS, in particular MPPS = 0.1 µm to 0.3 µm).
[0213] According to a preferred manner according to the invention, the particle and / or aerosol filter layer 39 has a thickness in the range of 0.001 mm to 5 mm, in particular in the range of 0.01 mm to 2.5 mm, preferably in the range of 0.01 mm to 1 mm, even more preferably in the range of 0.05 to 0.8 mm, in particular determined according to DIN EN ISO 5084. Alternatively or additionally, the particle and / or aerosol filter layer 39 can be designed as a HEPA filter (High Efficiency Penetration or Particulate Air) or ULPA filter (Ultra Low Penetration or Particulate Air).
[0214] In the preferred manner according to the invention, the particle and / or aerosol filter layer 39 is formed as an air-permeable textile fabric in the form of a nonwoven fabric (nonwoven fabric) made of and / or from textile fibers, in particular polyurethane fibers, with fiber diameters in the range from 10 nm to 30 µm, preferably 50 nm to 10 µm, preferably with a basis weight (in particular determined according to DIN EN 12127, preferably after drying for 1 hour at 105 °C) in the range of 2 g / m 2 up to 100 g / m 2 , especially in the range of 5 g / m 2 up to 90 g / m 2 , particularly preferably in the range of 10 g / m 2 up to 80 g / m 2 , wherein the particle and / or aerosol filter layer 39 is produced by electrospinning, meltblow process or a combination of these two processes.
[0215] According to the invention, the cover layer 37 can in particular also have the following properties: - In particular, the cover layer 37 can be designed and / or present as a preferably gas-permeable textile fabric. - In addition, the cover layer 37 can be designed as an air-permeable textile fabric, preferably as a woven fabric, scrim, nonwoven or textile composite material, knitted fabric, in particular as a knitted fabric or knitted fabric, preferably as a woven fabric or nonwoven fabric. - Likewise, the cover layer 37 can comprise or be formed from natural textile fibers and / or synthetic textile fibers (chemical fibers), preferably synthetic textile fibers, preferably synthetic textile fibers (chemical fibers) based on polyester and / or polyamide. - Furthermore, the cover layer 37 can comprise or be formed from synthetic fibers (chemical fibers), optionally in combination with natural fibers, preferably cotton fibers. - In addition, the cover layer 37 can have a basis weight (in particular determined as dry weight) in the range of 10 g / m 2 up to 275 g / m 2 , especially in the range of 15 g / m 2 up to 175 g / m 2 , preferably in the range of 25 g / m 2 up to 150 g / m 2 , particularly preferably in the range of 30 g / m 2 up to 100 g / m 2 , in particular determined according to DIN EN 12127, preferably after drying for 1 hour at 105 °C. - In addition, the cover layer 37 can have a gas permeability, in particular air permeability, of at least 1.5 l·m -2 s -1 , in particular at least 3 lm -2 .s -1 , preferably at least 7 l·m -2 s -1 , preferably at least 10 l·m-2 s -1 , particularly preferably at least 20 l·m -2 s -1 , in particular determined according to DIN EN ISO 9237 and / or in particular determined at a differential pressure (flow resistance) of 127 Pascal.
[0216] In addition, in particular the adhesive layer 36 and / or the adhesive of the adhesive layer 36 can be applied in an amount in the range of 5 g / m 2 up to 80 g / m 2 , especially in the range of 10 g / m 2 up to 60 g / m 2 , preferably in the range of 15 g / m 2 up to 50 g / m 2 , applied and / or applied to the textile carrier layer 6b.
[0217] Particularly preferably, the adhesive and / or adhesive polymer is selected from the group of polyacrylates (PA), polymethacrylates (PMA), polymethyl methacrylates (PMMA), polycarbonates (PC), polyurethanes (PU), and silicones, as well as mixtures or combinations of at least two of the aforementioned compounds, preferably polyurethane (PU). Alternatively or additionally, the adhesive and / or adhesive polymer can be a polyurethane (PU).
[0218] In addition, the adhesive layer 36 can have a density in the range of 100 g / l to 500 g / l, in particular in the range of 150 g / l to 400 g / l, preferably in the range of 200 g / l to 350 g / l.
[0219] According to the invention, it is also advantageous if the adhesive layer 36 is partially penetrated into the textile carrier layer 6b and / or if the adhesive layer 36 extends into the textile carrier layer 6b.
[0220] According to the invention, the adhesive layer 36 and / or the adhesive of the adhesive layer 36 can be applied and / or applied to the textile carrier layer 6b as a water vapor and / or air permeable, preferably water vapor and air permeable, and / or discontinuously formed adhesive layer based on an adhesive polymer, wherein the adhesive layer is designed either in the form of a dried and / or cured, in particular cross-linked, broken adhesive polymer foam or in the form of a grid of a plurality of adhesive (polymer) points distributed over the carrier layer 6b, preferably in the form of a dried and / or cured, in particular cross-linked, broken adhesive polymer foam.
[0221] As regards the adhesive layer of the adhesive layer, this can be designed either in the form of a dried and / or cured, in particular cross-linked, broken adhesive polymer foam or in the form of a grid of a plurality of adhesive (polymer) points distributed over the carrier layer 6b, preferably in the form of a dried and / or cured, in particular cross-linked, broken adhesive polymer foam.
[0222] In this context, the adhesive layer 36 may in particular have the following properties: - Thus, the adhesive layer 36 and / or the adhesive of the adhesive layer 36 can be applied and / or applied to the textile carrier layer 6b as a water vapor and / or air permeable, preferably water vapor and air permeable, and / or discontinuously formed adhesive layer based on a dried and / or cured, in particular crosslinked, broken adhesive polymer foam. - In addition, in particular the broken adhesive polymer foam may have a large number of dried and / or cured, in particular cross-linked, destroyed and / or burst and / or collapsed foam bubbles. - Furthermore, the broken adhesive polymer foam, in particular the dried and / or cured, in particular cross-linked, destroyed and / or burst and / or collapsed foam bubbles of the broken adhesive foam, can have a plurality of destroyed and / or broken and / or collapsed walls and / or webs made of adhesive polymer. - According to the invention, the broken adhesive polymer foam can have a proportion of destroyed and / or burst and / or collapsed foam bubbles of at least 10%, in particular at least 30%, preferably at least 50%, preferably at least 70%, particularly preferably at least 90%, very particularly preferably at least 95%, based on the total number of foam bubbles in the broken adhesive polymer foam. - In addition, in particular the broken adhesive polymer foam can have a proportion of destroyed and / or burst and / or collapsed foam bubbles in the range from 10% to 100%, in particular in the range from 30% to 99.9%, preferably in the range from 50% to 99%, preferably in the range from 70% to 99%, particularly preferably in the range from 90% to 98%, based on the total number of foam bubbles in the broken adhesive polymer foam. - According to an embodiment of the invention, it can be such that the broken adhesive polymer foam is not closed and / or that the broken adhesive polymer foam has a plurality of perforations, pores, channels and / or openings extending in particular in the broken adhesive polymer foam and / or a plurality of perforations, pores, channels and / or openings connecting in particular the respective outer sides of the broken adhesive polymer foam and / or the adhesive layer. - In addition, it can preferably be provided that the broken adhesive polymer foam is formed in a continuous and / or coherent manner. - Furthermore, the broken adhesive polymer foam can be applied and / or applied to the textile carrier layer 6b at least substantially over the entire surface and / or all sides. - Furthermore, it can be provided in particular that the broken adhesive polymer foam has a density and / or a volume weight, in particular a volume weight reduced by at least 5%, in particular by at least 10%, preferably by at least 15%, more preferably by at least 20%, particularly preferably by at least 25%, relative to the non-foamed and / or continuously formed adhesive polymer, compared to a corresponding non-foamed and / or continuously formed adhesive polymer. - Furthermore, the broken adhesive polymer foam particularly preferably has, in comparison to a corresponding non-foamed and / or continuously formed adhesive polymer, a reduced density and / or reduced, in particular reduced per unit area, volume weight in the range from 5% to 80%, in particular in the range from 10% to 70%, preferably in the range from 15% to 60%, preferably in the range from 20% to 55%, based on the non-foamed and / or continuously formed adhesive polymer. - In addition, the broken adhesive polymer foam can have a density and / or volume weight increased by at most 10%, in particular at most 5%, preferably at most 1%, relative to the intact and / or non-broken adhesive polymer foam, in particular an area-related increase in volume weight. - Furthermore, the broken adhesive polymer foam can have a reduced elasticity and / or reversible extensibility by at most 30%, in particular by at most 20%, preferably by at most 10%, preferably by at most 5%, relative to the intact and / or unbroken adhesive polymer foam, compared to a corresponding intact and / or unbroken adhesive polymer foam. - According to the invention, the broken adhesive polymer foam can have a reduced elasticity and / or reversible extensibility in the range of 5% to 30%, in particular in the range of 10% to 20%, relative to the intact and / or unbroken adhesive polymer foam, compared to a corresponding intact and / or unbroken adhesive polymer foam. - Thus, in particular the broken adhesive polymer foam can furthermore be obtainable by drying and / or curing, in particular crosslinking, of a foamed, preferably foamed with mechanical energy input, aqueous or organic-based, preferably aqueous-based, solution and / or dispersion of the adhesive polymer, in particular accompanied by an at least partial breaking of the foam provided by the foamed solution and / or dispersion of the adhesive polymer, in particular wherein the drying and / or curing, in particular crosslinking, is carried out in the presence of at least one foaming agent and optionally at least one foam stabilizer and optionally at least one crosslinking agent and optionally at least one emulsifier and optionally at least one thickener.
[0223] According to the invention, it can further be provided that the adhesive layer 36 and / or the adhesive of the adhesive layer 36 has been applied and / or applied to the textile carrier layer 6b as a water vapor and / or air-permeable, preferably water vapor and air-permeable, and / or discontinuously formed adhesive layer based on an adhesive polymer, wherein the adhesive layer is designed in the form of a grid of a plurality of adhesive (polymer) dots distributed over the carrier layer 6b; and / or wherein the adhesive layer is designed in the form of a grid of a plurality of adhesive (polymer) dots distributed over the carrier layer 6b.
[0224] In particular, the adhesive layer can cover at most 75% of the surface of the carrier layer 6b, preferably at most 60% of the surface of the carrier layer 6b, particularly preferably at most 50% of the surface of the carrier layer 6b, very particularly preferably at most 40% of the surface of the carrier layer 6b. Alternatively or additionally, it can be provided in particular that the grid of the plurality of adhesive (polymer) dots distributed over the carrier layer 6b is regular or irregular.
[0225] In general, in particular the adhesive (polymer) dots may have at least substantially the same size, in particular size extension.
[0226] Furthermore, the first layer 6 can also be characterized by one or more of the following properties: - In particular, the first layer 6 can have a basis weight in the range of 10 g / m 2 up to 600 g / m 2 , especially in the range of 50 g / m2 up to 500 g / m 2 , preferably in the range of 100 g / m 2 up to 450 g / m 2 , particularly preferably in the range of 150 g / m 2 up to 410 g / m 2 , in particular determined according to DIN EN 12127, preferably after 24 hours of conditioning at a temperature of 20 °C and a relative humidity of 65 %. - In addition, the first layer 6 can have a thickness, in particular total cross-sectional thickness, in the range from 0.01 mm to 10 mm, in particular in the range from 0.05 mm to 5 mm, preferably in the range from 0.1 mm to 3 mm, preferably in the range from 0.2 mm to 2 mm, particularly preferably in the range from 0.5 mm to 2 mm, in particular determined according to DIN EN ISO 5084. - Furthermore, the first layer 6 and / or the protective material 5 can have a gas permeability, in particular air permeability, of at least 1 mm / s, in particular at least 2 mm / s, preferably at least 5 mm / s, preferably at least 7 mm / s, particularly preferably at least 10 mm / s, in particular determined according to DIN EN ISO 9237 and / or in particular determined at a differential pressure (flow resistance) of 100 Pascal. - In addition, the first layer 6 and / or the protective material 5 can have a gas permeability, in particular air permeability, in the range from 1 mm / s to 500 mm / s, in particular in the range from 2 mm / s to 400 mm / s, preferably in the range from 5 mm / s to 200 mm / s, preferably in the range from 7 mm / s to 150 mm / s, particularly preferably in the range from 10 mm / s to 100 mm / s, in particular determined according to DIN EN ISO 9237 and / or in particular determined at a differential pressure (flow resistance) of 100 Pascal.
[0227] In addition, the second layer 7 can also be characterized by one or more of the following properties: - In particular, the second layer 7 can be designed as a gas-permeable, in particular air-permeable, textile fabric, in particular as a textile knitwear, preferably as a warp-knitted fabric (knitted fabric) or a knitted fabric (knitted fabric), or in particular as a woven fabric, scrim, nonwoven fabric or textile composite material, preferably a woven fabric. - In addition, the second layer 7 can comprise or be formed from natural textile fibers and / or synthetic textile fibers (chemical fibers), preferably synthetic textile fibers. - In addition, the second layer 7 may comprise or be formed from synthetic fibers (chemical fibers), optionally in combination with natural fibers, preferably cotton fibers. - In addition, the second layer 7 may comprise elastane (EL), in particular elastane fibers. - Furthermore, the second layer 7 can have a basis weight in the range of 5 g / m 2 up to 400 g / m 2 , especially in the range of 10 g / m 2 up to 300 g / m 2 , preferably in the range of 20 g / m 2 up to 250 g / m 2 , particularly preferably in the range of 30 g / m 2 up to 175 g / m 2 , in particular determined according to DIN EN 12127, preferably after 24 hours of conditioning at a temperature of 20 °C and a relative humidity of 65 %. - In addition, the second layer 7 can have a thickness, in particular cross-sectional thickness, in the range from 0.001 mm to 10 mm, in particular in the range from 0.01 mm to 8 mm, preferably in the range from 0.05 mm to 4 mm, preferably in the range from 0.075 mm to 2 mm, particularly preferably in the range from 0.1 mm to 2 mm, further preferably in the range from 0.15 mm to 1 mm, in particular determined according to DIN EN ISO 5084. - Furthermore, the second layer 7 can have a gas permeability, in particular air permeability, of at least 1.5 l·m-2·s-1, in particular at least 3 l·m-2·s-1, preferably at least 7 l·m-2·s-1, preferably at least 10 l·m-2·s-1, particularly preferably at least 20 l·m-2·s-1, in particular determined according to DIN EN ISO 9237 and / or in particular determined at a differential pressure (flow resistance) of 127 Pascal.
[0228] According to a further embodiment of the invention, it can also be provided that the second layer 7 is a material, in particular textile fiber material, preferably textile fibers, selected from the group of natural materials and synthetic materials, in particular selected from the group of cotton (CO); wool; linen; polyesters; polyolefins, polyvinyl chloride; polyvinylidene chloride; acetates, in particular cellulose acetates; triacetates, in particular cellulose triacetates; aramids, in particular meta- and / or para-amides; optionally modified and / or regenerated celluloses; polyacrylic; polyamide; polyvinyl alcohol; polyurethanes; polyvinyl esters; modified and / or regenerated celluloses, in particular viscose; and mixtures or combinations thereof, preferably selected from the group of modified and / or regenerated celluloses, in particular viscose; aramids, in particular meta- and / or para-amides;polyamide and mixtures or combinations thereof;
[0229] In this context, it can be provided that the second layer 7, in particular on its outer side and / or on its side facing the poison and / or pollutant source, is oleophobic and / or hydrophobic, preferably oleophobic and hydrophobic, and / or wherein the second layer 7, in particular on its outer side and / or on its side facing the poison and / or pollutant source, has an oleophobic and / or hydrophobic finish, in particular oleophobic and hydrophobic finish, in particular in the form of an impregnation or coating, preferably by means of at least one fluorocarbon and / or at least one fluorohydrocarbon, preferably a fluorinated polymer.
[0230] The above-mentioned design enables, in particular, that the second layer 7 can optimally withstand the external stresses of the protective clothing 1 and in this way, in particular, the first layer 6 can be well protected.
[0231] The protective clothing according to the invention has overall excellent protective properties against harmful and toxic substances: Thus, the protective clothing 1, in particular also in the widened section 9, preferably the seam area 12, can have a barrier effect against harmful and / or toxic substances, in particular chemical warfare agents, in particular bis[2-chloroethyl] sulfide (mustard gas, HD), determined according to method 2.2 of CRDEC-SP-84010, of at most 4 µg / cm 2 per 24 hours, in particular not more than 3.5 µg / cm 2 per 24 hours, preferably not more than 3.0 µg / cm 2 per 24 hours, preferably not more than 2.5 µg / cm 2 per 24 hours, particularly preferably not more than 2.25 µg / cm 2per 24 hours, most preferably not more than 2 µg / cm 2 per 24 hours, more preferably not more than 1.75 µg / cm 2 per 24 hours.
[0232] In addition, the protective clothing 1 can be tested, in particular measured as cumulative breakthrough by means of gas chromatography (GC / FPD) after a mustard gas exposure of 24 h at a temperature of 23 °C and a relative humidity of at most 5% RH, in particular with a material sample area of 10 cm2, a material exposure to 8 mustard gas drops (respective drop volume = 1 µl), a test carried out in a test cell above a PE membrane (10 µm), a flow under the material of 100 ml / min, a flow over the material of 0.5 m / s and a flow through the material of 0 cm / s. Within the scope of the aforementioned diffusion flow test, the procedure can in particular be such that the air flow under the material sample is drawn through a wash bottle, for example, and the cumulative breakthrough is then measured by means of gas chromatography, as stated above.The diffusion flow test simulates the diffusion of liquid warfare agent through the underlying protective material without convection and thereby simulates the flat contact of the protective clothing on the skin, the latter being simulated by the PE membrane.
[0233] Furthermore, protective clothing 1, in particular also in the widened section 9, preferably seam area 12, can have a barrier effect against harmful and / or toxic substances, in particular chemical warfare agents, in particular bis[2-chloroethyl] sulfide (mustard gas, HD), determined according to the Laid Drop Diffusive Flow Test of at most 4 µg / cm 2 per 24 hours, in particular not more than 3.5 µg / cm 2 per 24 hours, preferably not more than 3.0 µg / cm 2 per 24 hours, preferably not more than 2.5 µg / cm 2 per 24 hours, particularly preferably not more than 2.25 µg / cm 2 per 24 hours, most preferably not more than 2 µg / cm 2per 24 hours, more preferably not more than 1.75 µg / cm 2 per 24 h, in particular measured as cumulative breakthrough by gas chromatography (GC / FPD) after exposure to mustard gas for 24 h at a temperature of 23 °C and a relative humidity of not more than 5 % RH, in particular with a material sample area of 10 cm 2 , a material exposure to 8 mustard gas drops (each drop volume = 1 µl), a test execution in a test cell above a PE membrane (10 µm), a flow under the material of 100 ml / min, a flow above the material of 0.5 m / s and a flow through the material of 0 cm / s.
[0234] In addition, the following embodiments of the protective clothing according to the invention are also the subject of the present aspect: Thus, according to the present aspect, the present invention also relates to protective clothing 1 with a protective function against chemical and / or biological and / or radioactive pollutants and / or poisons (warfare agents) ("ABC or CBRN protective function"), in particular ABC protective clothing ("CBRN protective clothing"), preferably for civil or military purposes, in particular in the form of trousers 2, a jacket 3 or an overall, preferably in the form of trousers 2, in particular according to one of the preceding embodiments, wherein the protective clothing 1 has at least one extremity section 4 for, in particular partial and / or complete, protection of at least one extremity, in particular at least one upper and / or lower extremity, of a wearer of the protective clothing 1, preferably in the wearing and / or use state, in particular wherein the extremity section 4 surrounds and / or encloses at least one extremity of the wearer at least in regions, wherein the protective clothing 1 comprises a multi-layer protective material 5, wherein the protective material 5 (a) a first, in particular flat and / or two-dimensional, layer 6 in the form of a multi-layer, in particular at least two-layer, air-permeable adsorption filter material ("inner layer"), in particular for the adsorption of chemical and / or biological and / or radioactive pollutants and / or toxins, preferably wherein the adsorption filter material has an adsorption layer 6a and a textile carrier layer 6b ("adsorption layer carrier"), and (b) a second, in particular flat and / or two-dimensional, layer 7 in the form of a textile air-permeable outer material (“outer layer”), wherein the protective clothing 1 has a widening section 9 which can be released and / or closed with at least one closure means 8 for selectively widening and / or enlarging the inner and / or outer diameter 10, 11 of the protective clothing 1 in the region of the widening section 9, wherein the widening section 9 is arranged at least partially, preferably completely, on and / or in the extremity section 4, wherein the closure means 8 is only and / or exclusively connected to the second layer 7, in particular sewn, and / or wherein the closure means 8 is (directly) unconnected to the first layer 6, in particular wherein the closure means 8 is connected to the second layer 7 by sewing in at least one seam area 12, in particular using at least one yarn and / or thread; and wherein the protective clothing 1 has at least one opening section 27 which can be opened and / or closed with a further closure means 26, in particular a trouser fly and / or a divisible opening section of a jacket 3, a sweater or a jumpsuit, for selectively opening the protective clothing 1 in the region of the opening section 27; in particular wherein the further closure means 26 in the closed state is covered and / or covered on the underside and / or on its side facing the interior 13 of the protective clothing 1, and on the top side and / or on its side facing the poison and / or pollutant source, in each case with a material section 28a, 28b of at least the first layer 6, in particular with a material section 28a, 28b of the protective material 5, and / or in particular wherein the further closure means 26 is designed to be liquid-repellent, preferably water-repellent, in particular waterproof, and / or air- or wind-tight.
[0235] With regard to the present first aspect, reference can also be made to the statements on the further aspects of the present invention, which apply accordingly in the present case.
[0236] The figure representations according to Fig. 1 to Fig. 18 particularly illustrate the aspect of the present invention, namely a method for producing a protective clothing 1 according to one of the aforementioned embodiments is described, wherein, to form an extremity section 4, a first layer 6 is formed independently of one another from individual cuts of the first layer 6 to be connected to one another, and a second layer 7 is formed from individual cuts of the second layer 7 to be connected to one another, wherein the cuts of the first layer 6 are connected, preferably sewn, to one another to form the first layer 6, and wherein the cuts of the second layer 7 are connected, preferably sewn, to one another to form the second layer 7, wherein, in particular after formation and / or during formation of the second layer 7, a closure means 8 of a widening section 9 is connected only and / or exclusively to the second layer 7, in particular in at least one seam area 12 by sewing, in particular using at least one yarn and / or thread, and wherein, in particular after the connection of the closure means 8 to the second layer 7, the first and the second layer 6, 7 are arranged and / or positioned overlapping one another and are connected to one another in at least one connection region.
[0237] With regard to the method described above, reference can also be made to the statements on the further aspects of the present invention, which apply accordingly in the present case.
[0238] Furthermore, the figure representations according to Fig. 1 to Fig. 18 in particular also the second aspect of the present invention, according to which the invention also provides for the use of a widening section 9 to improve the wearing comfort and / or to improve the donning behavior and / or the putting on and / or the adaptability (i.e. adaptability to a user or wearer or in the worn state) of protective clothing 1 with a protective function against chemical and / or biological and / or radioactive pollutants and / or poisons (warfare agents) ("ABC or CBRN protective function"), in particular ABC protective clothing ("CBRN protective clothing"), preferably for civil or military purposes, in particular in the form of trousers 2, a jacket 3 or an overall, preferably in the form of trousers 2, in particular protective clothing 1 as described above according to the present invention, wherein the protective clothing 1 has at least one extremity section 4 for, in particular partial and / or complete, protection of at least one extremity, in particular at least one upper and / or lower extremity, of a wearer of the protective clothing 1, preferably in the wearing and / or use state, in particular wherein the extremity section 4 surrounds and / or encloses at least one extremity of the wearer at least in regions, wherein the protective clothing 1 comprises a multi-layer protective material 5, in particular wherein the protective material 5 comprises: (a) a first, in particular flat and / or two-dimensional, layer 6 in the form of a multi-layer, in particular at least two-layer, air-permeable adsorption filter material ("inner layer"), in particular for the adsorption of chemical and / or biological and / or radioactive pollutants and / or toxins, preferably wherein the adsorption filter material has an adsorption layer 6a and a textile carrier layer 6b ("adsorption layer carrier"), and (b) a second, in particular flat and / or two-dimensional, layer 7 in the form of a textile, air-permeable outer material (“outer layer”), wherein the protective clothing 1 has a widening section 9 which can be released and / or closed with at least one closure means 8 for selectively widening and / or enlarging the inner and / or outer diameter 10, 11 of the protective clothing 1 in the region of the widening section 9, wherein the widening section 9 is arranged at least partially, preferably completely, on and / or in the extremity section 4, and wherein the closure means 8 is only and / or exclusively connected, in particular sewn, to the second layer 7 and / or wherein the closure means 8 is, preferably directly, unconnected to the first layer 6, in particular wherein the closure means 8 is connected to the second layer 7 by sewing in at least one seam region 12, in particular using at least one yarn and / or thread.
[0239] With regard to the present second aspect, reference can also be made to the statements relating to the further aspects of the present invention, which apply accordingly in the present case.
[0240] Further embodiments, modifications, variations, modifications, special features and advantages of the present invention will be readily apparent and achievable to a person skilled in the art upon reading the description, without departing from the scope of the present invention.
[0241] The present invention is illustrated by the following embodiments, which, however, are not intended to limit the present invention in any way. EXAMPLES OF IMPLEMENTATION:
[0242] The protective function of a protective clothing according to the invention against harmful or toxic substances, in particular chemical warfare agents, is characterized and determined based on Method 2.2 of CRDEC-SP-84010 and with respect to bis[2-chloroethyl] sulfide (= mustard gas or HD). This method determines the barrier effect of a protective clothing or material against mustard gas, with the quality of the protective function or barrier effect increasing with decreasing penetration values.
[0243] In particular, this determination method involves a so-called convective flow test with mustard gas; for this purpose, an air stream containing mustard gas is allowed to act on the test material in question at a constant flow resistance and a flow velocity of approximately 0.45 cm / s, and the area-related breakthrough quantity is determined after 24 hours (80% relative humidity; 32 °C; 10 • 1 µl HD / 12.56 cm2 )
[0244] According to the applicant's specification, the barrier effect against mustard gas, determined according to method 2.2 of CRDEC-SP-84010, should be less than 4 µg / cm 2 per 24 hours.
[0245] First, a multi-layer protective material known per se, as previously described in detail, used according to the invention (ie protective material 5 according to Fig. 10), whereby the multi-layer protective material is provided in accordance Fig. 10 on the one hand, an air-permeable multi-layer adsorption filter material acting as an inner layer for the adsorption of chemical and / or biological and / or radioactive pollutants and / or toxic substances (= first layer 6 according to Fig. 10) and on the other hand a textile air-permeable outer material acting as an outer layer (= second layer 7 according to Fig. 10), which is also impregnated with an oleophobic and hydrophobic finish. The adsorption filter material (“first layer 6” according to Fig. 10) itself is multi-layered and comprises, viewed from the inside outwards (ie viewed from the carrier to the outside), a textile carrier layer or a textile adsorption layer carrier (reference number no. 6b according to Fig. 10) on which a plurality of adhesive (polymer) dots (reference number no. 36 according to Fig. 10) are applied, to which in turn discrete adsorbent particles (reference number no. 6c according to Fig. 10) in the form of activated carbon beads are permanently fixed or glued, which form the adsorption layer (reference number no. 6a according to Fig. 10). A textile particle and aerosol filter layer (reference number 39 according to Fig. 10) to further increase the protective function against harmful or toxic substances. This results in a multi-layered, air-permeable protective material (ie protective material 5 according to Fig. 10) in the form of a laminate. Characterization of the materials used for the multi-layer protective material
[0246] Multi-layer adsorption filter material (= first layer 6 according to Fig. 10): • textile carrier layer 6b: textile knitwear, surface weight approx. 80 g / m 2 (determined according to DIN EN 12127 after 24 hours of conditioning at a temperature of 20 °C and a relative humidity of 65%); • Adhesive (polymer) 36: Polyurethane (PU), application quantity approx. 35 g / m2 , surface of the carrier layer 6b covered with adhesive (polymer) to less than 40%; • Adsorption layer 6a or adsorber particles 6c: discrete activated carbon particles in spherical shape (“spherical carbon”), diameter of the adsorber particles: 0.04 mm to 1 mm, application quantity: approx. 90 g / m 2 , activated carbon particles based on a polymer-based spherical activated carbon (PBSAC) (produced from a particulate starting material based on organic polymers, namely sulfonated organic polymers based on styrene / divinylbenzene copolymers, by carbonization and subsequent activation of the starting material, wherein the content of divinylbenzene in the starting material is in the range of 2 wt.% to 10 wt.%, based on the starting material); • Particle and aerosol filter layer 39: gas-permeable textile fabric (non-woven) made of a large number of individual synthetic textile fibers with fiber diameters in the range of 50 nm to 10 µm, surface weight of approximately 50 g / m 2 (determined according to DIN EN 12127 after 24 hours of conditioning at a temperature of 20 °C and a relative humidity of 65%).
[0247] Outer material (= second layer 7 according to Fig. 10): breathable, textile fabric in the form of a woven fabric, weight approx. 140 g / m 2 (determined according to DIN EN 12127 after 24 hours of conditioning at a temperature of 20 °C and a relative humidity of 65%), oleophobic and hydrophobic treatment by impregnation or coating with a fluorinated polymer. Testing on multi-layer protective material
[0248] As a reference, the barrier effect against mustard gas is first determined on an unprocessed sample (10 cm x 10 cm) of this multi-layer protective material according to method 2.2 of CRDEC-SP-84010: < 0.08 µg / cm 2 per 24 hours Tests on the protective clothing according to the invention
[0249] In a manner known per se, a protective clothing according to the invention with a protective function against chemical and / or biological and / or radioactive pollutants and / or poisons (warfare agents) (“ABC or CBRN protective function”) in the form of trousers is produced from a plurality of textile pieces of the previously described multi-layer protective material, as described in detail above and, for example, in Fig. 1 to 6, wherein the individual textile pieces of the previously described multi-layer protective material are each joined together by sewing.
[0250] As previously described in the general part, the protective clothing in the form of trousers has two extremity sections for protecting the extremities (here: legs) of a wearer of the protective clothing when worn and / or in use, wherein the extremity sections completely surround or enclose these two extremities of the wearer when worn and / or in use. The protective clothing in the form of trousers, each completely arranged on or in the extremity section, has a widening section that can be opened or closed with at least one closure means (here: zipper) for optionally widening or enlarging the inner and / or outer diameter of the protective clothing in the form of trousers in the region of the widening section, wherein the closure means is only or exclusively connected to the second layer (i.e. to the outer material), namely sewn, or wherein the closure means is unconnected to the first layer (i.e.the adsorption filter material).
[0251] At the so-called widening section (reference number no. 9 according to Fig. 1 to 6), the barrier effect against mustard gas is determined according to method 2.2 of CRDEC-SP-84010, both in the closed state of the widening section (cf. Fig. 2) with < 0.08 µg / cm 2 per 24 hours as well as in the open state of the widening section (cf. Fig. 3) also with < 0.08 µg / cm 2per 24 hours. This shows that, through the inventive design of the widened section and through the combined use of the previously described multi-layer protective material, the protective function against chemical and / or biological and / or radioactive pollutants and / or toxic substances (warfare agents) ("ABC or CBRN protective function") is fully retained, and this with improved wearing comfort, in particular with improved donning and / or application and / or adaptability (i.e. adaptability to a user or wearer or when worn), of the protective clothing according to the invention compared to a protective clothing without such a widened section. In this way, the protective clothing trousers according to the invention can be quickly and easily put on over existing clothing, including footwear, etc. (as overtrousers, so to speak), without the protective performance being impaired.
[0252] Further tests are carried out on the opening section 27 in the form of a trouser fly (cf. Fig. 15), which is provided with a further closure means in the form of a zipper (reference number no. 30 according to Fig. 18) with two locking elements or side parts (reference numbers 29 and 31 according to Fig. 15 and Fig. 16) is designed to be lockable or openable.
[0253] When this opening section 27 is closed, the tests described below are carried out.
[0254] As a reference, protective clothing in the form of trousers as described above serves, in which the closure means of the opening section 27 is a conventional, i.e., water- and air-permeable zipper, which is also designed to be exposed, i.e., without a top or bottom cover. Here, the barrier effect against mustard gas is measured according to method 2.2 of CRDEC-SP-84010 with > 10 µg / cm2 per 24 hours (ie outside the applicant's specifications). However, if, in accordance with the invention, this zipper is additionally provided on the top and bottom with a cover section (reference numbers 34 and 35 according to Fig. 15 and Fig. 16) made of the multi-layer protective material described above or alternatively only of the adsorption filter material (= first layer) of the multi-layer protective material described above, the barrier effect against mustard gas is determined according to method 2.2 of CRDEC-SP-84010 to a value of 2.8 µg / cm 2 per 24 h or 2.9 µg / cm 2 per 24 hours (ie within the applicant's specifications).
[0255] In another test specimen of the previously described protective clothing in the form of trousers, which is also in accordance with the invention, a liquid-repellent, i.e. water-repellent, in particular waterproof, and wind- or airtight zipper (zipper made of polyurethane (PU) with additional PU side sections of the zipper) is used as the closure means of the opening section 27, which results in a barrier effect against mustard gas according to method 2.2 of CRDEC-SP-84010 of 1.8 µg / cm 2 per 24 hours. If this zipper is additionally provided with a cover section on the top and bottom (reference numbers 34 and 35 according to Fig. 15 and Fig.16) is covered or covered with the previously described multi-layer protective material or alternatively only with the adsorption filter material (= first layer) of the previously described multi-layer protective material, the barrier effect against mustard gas is determined according to method 2.2 of CRDEC-SP-84010 to values of < 0.08 µg / cm 2 per 24 hours.
[0256] In this way, protective clothing is obtained which overall meets the applicant's requirements or specifications regarding barrier effect against harmful and toxic substances.
[0257] Overall, within the scope of the present invention, also against the background of the above statements, a high-performance protective clothing is provided which has improved wearing comfort, in particular improved donning behavior and / or application and / or adaptability (ie adaptability to a user or wearer or in the worn state), wherein in this context, however, at the same time an excellent protective function against harmful and toxic substances is provided and, in addition, excellent application properties are achieved, for example with regard to the provision of high air permeability with an overall low basis weight. List of reference symbols: 1 protective clothing 2 pants 3 Jacket 4 Extremity section 5 Protective material 6 first layer 6a Adsorption layer 6b textile carrier layer 6c Adsorbent particles 7 second layer 8 Closure means 9 Widening section 10 inner diameter of 1 11 outer diameter of 1 12 Seam area 13 Interior of 1 14 Trouser section 15 Sleeve section 16 open end of 4 17 folds 18 pleat legs 19 tapered end of 9 20 zipper 21 page of 20 22 sliders out of 20 23 closure element of 8 24 gaiters 25 fasteners out of 24 26 additional closure means 27 Opening section 28a Material section 28b Material section 29 additional closure element of 26 30 additional zippers 31 side panel of 30 32 sliders out of 30 33 Opening 34 lower cover section 35 upper cover section 36 Adhesive layer 37 Cover layer 38 Adjustment tools 39 Particle and / or aerosol layer 40 side seam L longitudinal direction of 4 α angle of 19
Claims
[1] Protective clothing (1) with a protective function against chemical and / or biological and / or radioactive pollutants and / or toxic substances (warfare agents) (“NBC or CBRN protective function”), in particular NBC protective clothing (“CBRN protective clothing”), preferably for civil or military purposes, in particular in the form of trousers (2), a jacket (3) or an overall, preferably in the form of trousers (2), wherein the protective clothing (1) has at least one extremity section (4) for, in particular, partial and / or complete protection of at least one extremity, in particular at least one upper and / or lower extremity, of a wearer of the protective clothing (1), preferably in the wearing and / or use state, in particular wherein the extremity section (4) surrounds and / or encloses at least one extremity of the wearer at least in regions, wherein the protective clothing (1) comprises a multi-layer protective material (5), wherein the protective material (5) comprises: (a) a first, in particular flat and / or two-dimensional, layer (6) in the form of a multi-layer, in particular at least two-layer, air-permeable adsorption filter material (“inner layer”), in particular for the adsorption of chemical and / or biological and / or radioactive pollutants and / or toxins, preferably wherein the adsorption filter material has an adsorption layer (6a) and a textile carrier layer (6b) (“adsorption layer carrier”), and (b) a second, in particular flat and / or two-dimensional, layer (7) in the form of a textile, air-permeable outer material (“outer layer”), wherein the protective clothing (1) has a widening section (9) which can be released and / or closed with at least one closure means (8) for selectively widening and / or enlarging the inner and / or outer diameter (10, 11) of the protective clothing (1) in the region of the widening section (9), wherein the widening section (9) is arranged at least partially, preferably completely, on and / or in the extremity section (4), and wherein the closure means (8) is only and / or exclusively connected, in particular sewn, to the second layer (7) and / or wherein the closure means (8) is, preferably directly, unconnected to the first layer (6), in particular wherein the closure means (8) is connected to the second layer (7) by sewing in at least one seam region (12), in particular using at least one yarn and / or thread. [2] Protective clothing according to claim 1, wherein the first layer (6) is arranged and / or positioned on the side of the protective clothing (1) facing away from a source of harmful and / or toxic substances in the wearing and / or use state of the protective clothing (1); and / or wherein the first layer (6) is arranged and / or positioned facing the interior (13) of the protective clothing, in particular facing the wearer of the protective clothing (1), in the wearing and / or use state of the protective clothing (1); and / or wherein the second layer (7) is arranged and / or positioned on the side of the protective clothing (1) facing a source of harmful and / or toxic substances, in particular the outer side of the protective clothing (1), in the wearing and / or using state of the protective clothing (1); and / or wherein the second layer (7) is arranged and / or positioned facing away from the interior (13) of the protective clothing (1), in particular facing away from the wearer of the protective clothing (1), in the wearing and / or using state of the protective clothing (1). [3] Protective clothing according to claim 1 or 2, wherein the protective clothing (1) is designed in the form of trousers (2) and / or in the form of legwear, in particular in the form of outer trousers and / or overtrousers; and / or wherein the protective clothing (1) is designed in the form of a jumpsuit; and / or wherein the protective clothing (1) is designed in the form of a jacket (3), in particular in the form of an outer jacket and / or overjacket, and / or a pullover; in particular, wherein the extremity section(s) (4) surrounds and / or encloses the extremity(ies) of the wearer of the protective clothing (1), in particular at least substantially completely, in particular at least in the region of the thigh(s) and lower leg(s) and / or the upper arm(s) and forearm(s) of the wearer of the protective clothing (1); and / or wherein the widening section (9) is part of the second layer (7) and / or part of the extremity section (4); in particular wherein the widening section (9) and / or the closure element(s) (8) is / are arranged and / or positioned on the inner area and / or region of the extremity section (4) facing the body of the wearer of the protective clothing (1); Preferably, the inner area and / or region of the extremity section (4) facing the body of the wearer of the protective clothing (1) extends over at least 40%, preferably at least 30%, of the outer circumference in the circumferential direction of the extremity section (4); and / or Preferably, the widening section (9), the closure element (8) and / or the inner area or the inner region of the extremity section (4) is arranged and / or positioned in the area of the inner leg, preferably at least in the area of the inner lower leg, and / or in the area of the inner arm, preferably at least in the area of the inner forearm, of the wearer of the protective clothing (1) and / or faces the wearer. [4] Protective clothing according to one of the preceding claims, wherein the extremity section (4) is designed as a trouser section (14), in particular as a trouser leg of the trousers and / or the overalls, and / or in particular as a sleeve section (15), in particular as a sleeve of the jacket (3), the overalls and / or the pullover, in particular wherein the protective clothing (1) has at least two extremity sections (4), particularly preferably at least two as trouser sections (14), in particular as trouser legs, and / or particularly preferably at least two extremity sections (4) designed as sleeve sections (15), in particular as sleeves; and / or wherein the widening section (9) is arranged on at least two extremity sections (4) of the protective clothing (1), in particular wherein the widening section (9) is arranged on both trouser sections (14), in particular both trouser legs, and / or on both sleeve sections (15), in particular both sleeves, of the protective clothing (1);and / or wherein the widened section (9) extends from an open end (16) of the extremity section (4), in particular of the trouser section (14), preferably of the trouser leg, and / or of the sleeve section (15), preferably of the sleeve, preferably in the longitudinal direction (L) of the extremity section (4), preferably wherein the widened section (9) tapers upwards, in particular away from the open end (16) of the extremity section (4), and / or preferably wherein the widened section (9) tapers starting from the open end (16) of the extremity section (4) in the longitudinal direction (L) of the extremity section (4). [5] Protective clothing according to one of the preceding claims, wherein the widening section (9) can be transferred by the closure means (8) into an optionally released, preferably widened and / or opened, or closed state; and / or wherein the widening section (9), in particular both in the closed and in the released state, preferably in the widened and / or opened state, comprises a closed, in particular continuous, opening-free and / or contiguous surface of the first layer (6) and / or the second layer (7); and / or wherein the first layer (6) in the widening section (9) is formed unbroken and / or uninterrupted in the closed and / or opened or released state, in particular in the widened state. [6] Protective clothing according to one of the preceding claims, wherein the widening section (9) in the closed state of the widening section (9) has at least one fold (17) arranged and / or formed in the interior (13) of the protective clothing (1) and / or facing inwards towards the wearer of the protective clothing (1) with at least two folding legs (18) of the protective clothing (1); and / or wherein at least one side seam (40), in particular a trouser side seam and / or sleeve side seam, connecting, in particular sewing, at least two cuts of the second layer (7) to one another, preferably running at least substantially in the longitudinal direction (L) of the extremity section (4), is provided and / or arranged in and / or on the widening section (9), preferably at least substantially centrally in the widening section (9), in particular wherein the fold legs (18) of the fold (17) are separated from one another by the side seam (40) in the closed state of the widening section (9). [7] Protective clothing according to one of the preceding claims, wherein in the open state the widening section (9) is wedge-shaped and / or wherein in the closed state the fold (17) and / or the fold legs (18) of the widening section (9) is / are formed as a wedge-shaped fold (17) and / or as a wedge-shaped fold leg (18), in particular wherein the closure means (8) ends at and / or in the region of the tapered end(s) (19) of the widening section (9), in particular in the open and / or closed state of the widening section (9); and / or in particular wherein the angle (α) at the tapered end (19) of the wedge-shaped widening section (9), in particular in the open state of the widening section (9), is at least 3°, preferably at least 5°, more preferably at least 10°, and / or from 3° to 70°, more preferably from 5° to 40°, more preferably from 10° to 25°. [8] Protective clothing according to one of the preceding claims, wherein the closure means (8) extends at least substantially over the entire length, in particular in the longitudinal direction (L) of the extremity section (4), of the widening section (9); and / or wherein the maximum width of the extremity section (4) in the closed state of the widening section (9) corresponds to at least 5%, preferably at least 10%, more preferably at least 15%, in particular at least 20%, of the length of the extremity section (4), in particular extending in the longitudinal direction (L) of the extremity section (4); and / or wherein the maximum width of the extremity section (4) in the closed state of the widening section (9) corresponds to between 5% and 60%, preferably between 10% and 40%, more preferably between 15% and 35%, in particular between 20% and 30%, of the length of the extremity section (4), in particular extending in the longitudinal direction (L) of the extremity section (4); and / or wherein the maximum width of the extremity section (4) in the released state, preferably in the widened and / or opened state, of the widening section (9) corresponds to at least 6%, preferably at least 12%, more preferably at least 18%, in particular at least 23%, of the length of the extremity section (4), in particular extending in the longitudinal direction (L) of the extremity section (4); and / or wherein the maximum width of the extremity section (4) in the released state, preferably in the widened and / or opened state, of the widening section (9) corresponds to between 6% and 65%, preferably between 12% and 45%, more preferably between 18% and 40%, in particular between 23% and 33%, of the length of the extremity section (4), in particular running in the longitudinal direction (L) of the extremity section (4). [9] Protective clothing according to one of the preceding claims, wherein the closure means (8) extends continuously and / or uninterruptedly over the entire length of the widening section (9) and / or is designed as a continuous or uninterrupted closure means (8), in particular wherein the closure means (8) is designed as a zipper (20), preferably wherein the zipper (20) has two side parts (21), in particular having staples, and a slider (22) selectively connecting the side parts (21) via a positive fit; and / or preferably wherein the side parts (21) of the zipper (20) delimit the widening section (9); and / or wherein the closure means (8) is placed and / or laid on the protective material (5), in particular the second layer (7), preferably completely, preferably firmly connected, in particular sewn, to the protective material (5), in particular the second layer (7); and / or wherein the closure means (8) is connected to the second layer (7) in an unenclosed or unenclosed manner and / or uninserted or uninserted manner and / or is arranged on the second layer (7). [10] Protective clothing according to one of the preceding claims, wherein the closure means (8), in particular the zipper (20), has at least two closure elements (23), in particular side parts (21), which can be connected to one another, preferably in a form-fitting manner; and / or in particular wherein the closure elements (23), in particular the side parts (21), of the closure means (8) are each sewn to the second layer (7), preferably only and / or exclusively to the second layer (7), by at least one seam region (12). [11] Protective clothing according to one of the preceding claims, wherein the widening section (9) extends over at least 40%, in particular over at least 50%, preferably over at least 60%, of the length of the extremity section (4), in particular the trouser section (14), preferably the trouser leg, and / or the sleeve section (15), preferably the sleeve; and / or wherein the widening section (9) extends over a range of 40% and 100%, preferably a range of 50% to 95%, more preferably a range of 60% to 85%, of the length of the extremity section (4), in particular the trouser section (14), preferably the trouser leg, and / or the sleeve section (15), preferably the sleeve; and / or wherein the widening section (9) leads to a maximum widening and / or enlargement of the inner and / or outer diameter (10, 11) of the extremity section (4), in particular the trouser section (14), preferably the trouser leg, and / or the sleeve section (15), preferably the sleeve, in particular at the open end (16) of the extremity section (4) of at least 3%, preferably of at least 5%, more preferably of at least 5%, in particular of at least 10%; and / or wherein the widening section (9) leads to a maximum widening and / or enlargement of the inner and / or outer diameter (10, 11) of the extremity section (4), in particular the trouser section (14), preferably the trouser leg, and / or the sleeve section (15), preferably the sleeve, in particular at the open end (16) of the extremity section (4) in a range of 3% to 70%, preferably in a range of 5% to 50%, more preferably in a range of 10% to 40%, in particular in a range of 12% to 30%. [12] Protective clothing according to one of the preceding claims, wherein the extremity section (4), in particular the trouser section (14), preferably the trouser leg, and / or the sleeve section (15), preferably the sleeve, is at least substantially tubular, in particular at least substantially cylindrical, at least in the region of the widening section (9) in the closed state of the widening section (9); in particular, wherein the width of the extremity section (4), in particular the trouser section (14), preferably the trouser leg, and / or the sleeve section (15), preferably the sleeve, in the closed state of the widening section (9), preferably over and / or in the longitudinal direction (L) of the extremity section (4), is at least substantially the same size; and / or wherein the extremity section (4), in particular the trouser section (14), preferably the trouser leg, and / or the sleeve section (15), preferably the sleeve, is tapered at least in the region of the widening section (9) in the closed state of the widening section (9) towards the open end (16) of the extremity section (4), in particular running in the longitudinal direction (L) of the extremity section (4); in particular wherein the minimum width of the extremity section (4) in the tapered region of the extremity section (4) corresponds to at least 60%, preferably at least 70%, more preferably at least 80%, in particular at least 85%, and / or from 60% to 95%, preferably from 70% to 90%, more preferably from 75% to 85%, of the maximum width of the extremity section (4) in the tapered region of the extremity section (4). [13] Protective clothing according to one of the preceding claims, wherein in the interior (13) of the protective clothing (1), in particular in the interior (13) of the extremity section (4), in particular of the trouser section (14), preferably of the trouser leg, a gaiter (“inner gaiter”) (24) is provided for arrangement on the foot, on the footwear and / or on the lower extremity, in particular on the leg, of the wearer; in particular wherein the gaiter (24) is connected, in particular sewn, at least to the first layer (6), in particular only and / or exclusively to the first layer (6); and / or in particular wherein the gaiter (24) extends at least over the length of the widening section (9); and / or in particular wherein the opening width of the gaiter (24) at least substantially corresponds to and / or exceeds the opening width of the extremity section (4), preferably of the trouser section (14), preferably of the trouser leg, in particular the inner diameter (10) of the extremity section (4), preferably of the trouser section (14), preferably of the trouser leg, in the released state, preferably in the widened and / or opened state, of the widening section (9); and / or in particular wherein the opening cross-section of the gaiter (24) can be reduced by means of a fastening means (25). [14] Protective clothing according to one of the preceding claims, wherein the protective clothing (1) has at least one opening section (27) which can be released and / or closed with a further closure means (26), in particular a trouser fly and / or a divisible opening section of a jacket (3), a sweater or an overall, for selectively opening the protective clothing (1) in the region of the opening section (27); in particular, wherein the further closure means (26) in the closed state is covered and / or covered on the underside and / or on its side facing the interior (13) of the protective clothing (1) and on the top side and / or on its side facing the pollutant and / or toxic substance source, respectively, with a material section (28a, 28b) of at least the first layer (6), in particular with a material section (28a, 28b) of the protective material (5); and / or in particular wherein the further closure means (26) is designed to be liquid-repellent, preferably water-repellent, in particular waterproof, and / or air- or wind-tight; and / or in particular wherein the further closure means (26) has at least two further closure elements (29) which can be connected to one another, preferably in a form-fitting manner, and / or in particular wherein the further closure means (26) is designed as a further zipper (30), preferably wherein the further zipper (30) has two side parts (31), in particular having staples, and a slider (32) which optionally connects the side parts (31) via a form-fitting manner and / or in particular wherein the side parts (31) of the further zipper (30) delimit the opening section (27). [15] Protective clothing according to one of the preceding claims, wherein the protective clothing (1) has and / or forms an opening (33) in the open state of the opening section (27); in particular, wherein in the open state of the opening section (27), two partial sections of the protective clothing (1), on each of which a further closure element (29) of the further closure means (26) is arranged, are spaced apart and / or separated from one another; and / or in particular, wherein at least one material section (28a) designed as a lower cover section (34) is arranged on at least one partial section of the protective clothing (1); and / or in particular, wherein the lower cover section (34) protrudes from the partial section on which the lower cover section (34) is arranged; and / or in particular wherein the lower cover section (34) covers and / or covers the further closure means (26) at least in some areas, preferably completely, on the side facing the wearer of the protective clothing (1) when the further closure means (26) is in the closed state. [16] Protective clothing according to one of the preceding claims, wherein the further closure means (26) is covered and / or covered on the upper side, in particular on a side of the protective clothing (1) facing the harmful and / or toxic substance source of the protective clothing (1), by a material section (28b) designed as an upper cover section (35), at least in regions, preferably completely, in the closed state of the further closure means (26); in particular, wherein the upper cover section (35) is arranged on at least one partial section of the protective clothing (1), in particular on the partial section of the protective clothing (1) on which the lower cover section (34) is also arranged; and / or in particular, wherein the upper cover section (35) protrudes from the partial section on which the upper cover section (35) is arranged; and / or wherein the further closure means (26) is designed to be liquid-repellent, preferably water-repellent, in particular waterproof, and / or air- or wind-tight; in particular wherein the further closure elements (29), in particular the side parts (31), of the further closure means (26) have, at least in regions, preferably completely, a plastic coating and / or plastic film, preferably a polyurethane coating and / or a polyurethane film, in particular on the side of the protective clothing (1) facing the source of the harmful and / or toxic substance, and / or are formed at least in regions, preferably completely, from a plastic, preferably polyurethane. [17] Protective clothing according to one of the preceding claims, wherein the adsorption layer (6a) is discontinuous and / or gas-permeable; and / or wherein the adsorption layer (6a) is connected to the textile carrier layer (6b) via an adhesive layer (36) applied to one side of the textile carrier layer (6b); in particular wherein the adhesion promoter layer (36) fixes and / or adheres the adsorption layer (6a); preferably wherein the adhesive layer (36) is present and / or formed as a water vapor and / or gas permeable and / or discontinuously formed adhesive layer, preferably based on an adhesive polymer. [18] Protective clothing according to one of the preceding claims, wherein the first layer (6) is gas-permeable, in particular air-permeable, and / or is designed; and / or wherein the first layer (6) is present and / or formed as a gas-permeable, in particular air-permeable, textile fabric; and / or wherein the textile carrier layer (6b) is preferably a gas-permeable, in particular, an air-permeable textile fabric is present and / or formed; and / or wherein the textile carrier layer (6b) is designed as a knitted fabric, in particular as a warp-knitted fabric (knitted fabric) or a woven fabric (knitted fabric), a woven fabric, a scrim or a textile composite material, in particular as a knitwear; and / or wherein the textile carrier layer (6b) has a basis weight in the range of 10 g / m 2 up to 350 g / m 2 , especially in the range of 20 g / m 2 up to 300 g / m 2 , preferably in the range of 30 g / m 2 up to 250 g / m 2 , particularly preferably in the range of 50 g / m 2 up to 175 g / m 2 , in particular determined according to DIN EN 12127, preferably after 24 hours of conditioning at a temperature of 20 °C and a relative humidity of 65 %. [19] Protective clothing according to one of the preceding claims, wherein the adsorption layer (6a) comprises or is formed from adsorber particles (6c), in particular a plurality of individual and / or discrete adsorber particles (6c), or wherein the adsorption layer (6a) comprises or is formed from adsorber fibers and / or adsorber filaments, in particular activated carbon fibers and / or activated carbon filaments, preferably in the form of an activated carbon fiber sheet. [20] Protective clothing according to claim 19, wherein the adsorbent particles (6c) of the adsorption layer (6a) are selected from the group of (i) in particular particulate activated carbon and / or activated carbon particles, preferably in the form of activated carbon particles in granular form (“granular carbon”) or activated carbon particles in spherical form (“spherical carbon”); (ii) zeolites, in particular natural and / or synthetic zeolites; (iii) molecular sieves, in particular zeolitic molecular sieves, synthetic molecular sieves and / or in particular synthetic molecular sieves based on carbon, oxides and / or glasses; (iv) metal oxide and / or metal particles; (v) ion exchange resins, in particular polydisperse and / or monodisperse cation and / or anion exchangers, in particular of the gel type and / or macroporous type; (vi) inorganic oxides, in particular silicon dioxides, silica gels and / or aluminum oxides; (vii) porous organic polymers and / or porous organic-inorganic hybrid polymers and / or metal-organic framework materials, in particular MOFs (metal organic framework), COFs (covalent organic framework), ZIFs (zeolite imidazolate framework), POMs (polymer organic material) and / or OFCs; (viii) mineral granules; (ix) clathrates; and (x) mixtures and / or combinations thereof; where (i) is particularly preferred; and / or wherein the adsorber particles (6c) of the adsorption layer (6a) are activated carbon particles, preferably in the form of activated carbon particles in granular form (“granular carbon”) or activated carbon particles in spherical form (“spherical carbon”), preferably in the form of activated carbon particles in spherical form; and / or wherein the adsorber particles (6c) of the adsorption layer (6a) are activated carbon fibers and / or activated carbon filaments, in particular in the form of an activated carbon fiber sheet. [21] Protective clothing according to one of the preceding claims, wherein the diameter of the adsorber particles (6c), in particular of the activated carbon particles, is 0.005 mm to 2.5 mm, preferably 0.01 mm to 2 mm, preferably 0.015 mm to 1.5 mm, particularly preferably 0.02 mm to 1.25 mm, very particularly preferably 0.03 mm to 1 mm, and / or wherein the average diameter, in particular the average diameter D 50, the adsorber particles (6c), in particular the activated carbon particles, is 0.01 mm to 2 mm, in particular 0.02 mm to 1.75 mm, preferably 0.03 mm to 1.5 mm, particularly preferably 0.04 mm to 1.25 mm, very particularly preferably 0.04 mm to 1 mm; and / or wherein the adsorbent particles (6c), in particular the activated carbon particles, are present in an amount in the range of 5 g / m 2 up to 300 g / m 2 , especially 25 g / m 2 up to 275 g / m 2 , preferably 30 g / m 2 up to 250 g / m 2 , preferably 50 g / m 2 up to 200 g / m 2 , and / or wherein the protective material (1), in particular the adsorption layer (6a), the adsorber particles (6c), in particular the activated carbon particles, are used in an amount in the range of 5 g / m 2 up to 300 g / m 2 , especially 25 g / m 2 up to 275 g / m 2 , preferably 30 g / m 2 up to 250 g / m 2 , preferably 50 g / m 2 up to 200 g / m 2, and / or wherein the adsorbent particles (6c), in particular the activated carbon particles, are obtainable by carbonization and subsequent activation of a synthetic and / or non-natural substance-based particulate starting material, in particular based on organic polymer particles; and / or wherein the adsorbent particles (6c), in particular the activated carbon particles, are obtained from a particulate starting material based on organic polymers, in particular based on sulfonated organic polymers, preferably based on divinylbenzene-crosslinked polystyrene, preferably based on styrene / divinylbenzene copolymers, in particular by carbonization and subsequent activation of the starting material, in particular wherein the content of divinylbenzene in the starting material is in the range from 1 wt.% to 20 wt.%, in particular 1 wt.% to 15 wt.%, preferably 1.5 wt.% to 12.5 wt.%, preferably 2 wt.% to 10 wt.-%, based on the starting material; and / or wherein the adsorber particles (6c), in particular the activated carbon particles, are formed on the basis of a polymer-based spherical activated carbon (PBSAC) and / or wherein the adsorber particles (6c), in particular the activated carbon particles, are formed from a polymer-based spherical activated carbon (PBSAC). [22] Protective clothing according to one of the preceding claims, wherein the first layer (6) additionally has a cover layer (37), in particular arranged on the adsorption layer (6a) and / or connected to the adsorption layer (6a), wherein the cover layer (37) is present and / or formed as a preferably gas-permeable textile fabric. [23] Protective clothing according to one of the preceding claims, wherein the protective clothing (1) in and / or on the extremity section (4), in particular in the lower region facing the open end (16) of the extremity section (4), has an adjusting means (38) for variably adjusting the inner and / or outer diameter (10, 11) of the extremity section (4), in particular in the region of the adjusting means (38), preferably for the abutment and / or precise fitting of the extremity section (4) on the extremities and / or on other items of clothing, in particular footwear and / or gloves, in the region of the extremities of the wearer. [24] Protective clothing according to one of the preceding claims, wherein the first layer (6) additionally comprises a particle and / or aerosol filter layer (39), preferably a particle and aerosol filter layer (39), arranged in particular on the cover layer (37) or on the adsorption layer (6a) and / or connected to the cover layer (37) or the adsorption layer (6a); in particular, wherein the particle and / or aerosol filter layer (39) is present and / or formed as a gas-permeable textile fabric which comprises or is formed from a plurality of individual textile fibers; and / or in particular wherein the particle and / or aerosol filter layer (39) has or consists of at least one functional layer with particle and / or aerosol filter properties, in particular with particle and aerosol filter properties; and / or in particular wherein the particle and / or aerosol filter layer (39) is designed to be gas-permeable, in particular air-permeable, and / or water vapor-permeable, preferably gas-permeable, in particular air-permeable, and water vapor-permeable, preferably air-permeable and water vapor-permeable. [25] Protective clothing according to one of the preceding claims, wherein the particle and / or aerosol filter layer (39) is present and / or formed as a gas-permeable textile fabric comprising or being formed from a plurality of individual textile fibers with fiber diameters in the range from 10 nm to 30 µm, preferably in the range from 50 nm to 10 µm, preferably with a basis weight (in particular determined as dry weight), in particular determined according to DIN EN 12127, preferably after drying for 1 hour at 105 °C, in the range of 2 g / m 2 up to 100 g / m 2, especially in the range of 5 g / m 2 up to 90 g / m 2 , particularly preferably in the range of 10 g / m 2 up to 80 g / m 2 ; and / or wherein the particle and / or aerosol filter layer (39) has a basis weight (in particular determined as dry weight) in the range of 2 g / m 2 up to 100 g / m 2 , especially in the range of 5 g / m 2 up to 90 g / m 2 , particularly preferably in the range of 10 g / m 2 up to 80 g / m 2 , in particular determined according to DIN EN 12127, preferably after drying for 1 hour at 105 °C; and / or wherein the textile fibers of the particle and / or aerosol filter layer (39) have fiber diameters in the range from 10 nm to 30 µm, preferably in the range from 50 nm to 10 µm; and / or wherein synthetic fibers (chemical fibers) are used as textile fibers of the particle and / or aerosol filter layer (39), in particular from the group of polyesters (PES); polyolefins, such as polyethylene (PE), polypropylene (PP), polyoxyethylene and polyoxypropylene; polyvinyl chlorides (CLF); polyvinylidene chlorides (CLF); acetates (CA); triacetates (CTA); polyacrylic (PAN), in particular polyacrylonitriles; polyamides (PA); polyvinyl alcohol (PVAL); polyurethanes; polyvinyl esters; poly(meth)acrylates; polyvinylidene fluorides (PVDF); and mixtures thereof, particularly preferably polyurethanes; polyesters, polyolefins, polyamides, polyacrylonitriles, poly(meth)acrylates and polyvinylidene fluorides (PVDF) and mixtures thereof, very particularly preferably polyurethanes; and / or wherein polyurethane fibers are used as textile fibers of the particle and / or aerosol filter layer (39); and / or wherein the particle and / or aerosol filter layer (39) is designed as a scrim or textile composite material, in particular nonwoven, particularly preferably as a nonwoven; and / or wherein the particle and / or aerosol filter layer (39) is formed and / or present as a fabric or textile composite, in particular nonwoven, particularly preferably as a nonwoven, of polyurethane fibers; and / or wherein the particle and / or aerosol filter layer (39) is produced by electrospinning, meltblow processes or a combination of these two processes, preferably by a combination of electrospinning and meltblow processes. [26] Protective clothing according to one of the preceding claims, wherein the particle and / or aerosol filter layer (39) is arranged directly on the adsorption layer (6a), in particular fixed on and / or to the adsorption layer (6a), preferably laminated thereon; and / or wherein the particle and / or aerosol filter layer (39) is fixed on and / or to the adsorption layer (6a), preferably by means of lamination, in particular wherein the particle and / or aerosol filter layer (39) is also fixed on and / or to the cover layer (37), preferably by means of lamination; and / or wherein the particle and / or aerosol filter layer (39) is fixed on and / or to the adsorption layer (6a), preferably by means of lamination, and wherein the particle and / or aerosol filter layer (39) is also fixed on and / or to the cover layer (37), preferably by means of lamination. [27] Protective clothing according to one of the preceding claims, wherein the particle and / or aerosol filter layer (39) is a textile fabric formed by and / or from textile fibers, in particular synthetic textile fibers, preferably polyurethane fibers, with a plurality of pores or meshes delimited by the textile fibers;in particular wherein the particle and / or aerosol filter layer (39) has an average pore size or average mesh width of at most 200 µm, in particular of at most 100 µm, preferably of at most 75 µm, particularly preferably of at most 50 µm, very particularly preferably of at most 40 µm, even more preferably of at most 10 µm, and / or in particular wherein the particle and / or aerosol filter layer (39) has an average pore size or average mesh width in the range from 0.5 µm to 200 µm, in particular in the range from 0.75 µm to 100 µm, preferably in the range from 1 µm to 75 µm, particularly preferably in the range from 1.5 µm to 50 µm, very particularly preferably in the range from 1.75 µm to 40 µm, even more preferably in the range of 2 µm to 10 µm; and / or; wherein the particle and / or aerosol filter layer (39) has pores or meshes, in particular a plurality of pores or meshes; in particular wherein the average pore size or average mesh size is at most 200 µm, in particular at most 100 µm, preferably at most 75 µm, particularly preferably at most 50 µm, very particularly preferably at most 40 µm, even more preferably at most 10 µm, and / or in particular wherein the average pore size or average mesh size is in the range from 0.5 µm to 200 µm, in particular in the range from 0.75 µm to 100 µm, preferably in the range from 1 µm to 75 µm, particularly preferably in the range from 1.5 µm to 50 µm, very particularly preferably in the range from 1.75 µm to 40 µm, even more preferably in the range from 2 µm to 10 µm. [28] Protective clothing according to one of the preceding claims, wherein the particle and / or aerosol filter layer (39) is a textile fabric formed by and / or from textile fibers, in particular synthetic textile fibers, preferably polyurethane fibers, with pores or meshes delimited by the textile fibers; in particular wherein the ratio of the average pore size or mesh width to the average diameter of the textile fibers is in the range from 0.1 to 2,000, in particular in the range from 1 to 500, preferably in the range from 5 to 350, particularly preferably in the range from 10 to 300, most particularly preferably in the range from 25 to 250. [29] Protective clothing according to one of the preceding claims, wherein the particle and / or aerosol filter layer (39) has an average efficiency E maccording to DIN EN 779 (July 1993) of at least 40%, in particular at least 50%, preferably at least 70%, particularly preferably at least 90%, very particularly preferably at least 95%, and / or wherein the particle and / or aerosol filter layer (39) has an average separation efficiency A m according to DIN EN 779 (July 1993) of at least 50%, in particular at least 70%, preferably at least 90%, particularly preferably at least 95%, most preferably at least 99%; and / or wherein the particle and / or aerosol filter layer (39) has an integral initial transmittance D i according to DIN EN 1822 (April 1998; DEHS aerosol, MPPS = 0.1 to 0.3 µm) of not more than 50%, in particular not more than 40%, preferably not more than 30%, particularly preferably not more than 20%, most preferably not more than 10%; and / or wherein the particle and / or aerosol filter layer (39) has an average separation rate of at least 80%, in particular at least 90%, preferably at least 95%, for particles and / or aerosols with diameters in the range from 0.1 to 0.3 µm at an inflow velocity of 0.1 m / s, and / or wherein the particle and / or aerosol filter layer (39) has an average separation rate of at least 95%, in particular at least 98%, preferably at least 99%, for particles and / or aerosols with diameters ≥ 2 µm, in particular ≥ 1.5 µm, preferably ≥ 1.0 µm at an inflow velocity of 0.1 m / s; and / or wherein the particle and / or aerosol filter layer (39) has a separation efficiency, in particular fractional separation efficiency, of at least 80%, in particular of at least 85%, preferably of at least 90%, determined according to DIN EN 1822 at a pressure difference of 15 Pascal with potassium chloride (KCl) as test substance as minimum efficiency (MPPS, in particular MPPS = 0.1 µm to 0.3 µm). [30] Protective clothing according to one of the preceding claims wherein the particle and / or aerosol filter layer (39) has a thickness in the range of 0.001 mm to 5 mm, in particular in the range of 0.01 mm to 2.5 mm, preferably in the range of 0.01 mm to 1 mm, even more preferably in the range of 0.05 to 0.8 mm, in particular determined according to DIN EN ISO 5084; and / or wherein the particle and / or aerosol filter layer (39) is designed as a HEPA filter (High Efficiency Penetration or Particulate Air) or ULPA filter (Ultra Low Penetration or Particulate Air). [31] Protective clothing according to one of the preceding claims, wherein the particle and / or aerosol filter layer (39) is formed as an air-permeable textile fabric in the form of a nonwoven fabric (nonwoven fabric) formed by and / or from textile fibers, in particular polyurethane fibers, with fiber diameters in the range from 10 nm to 30 µm, preferably 50 nm to 10 µm, preferably with a basis weight (in particular determined according to DIN EN 12127, preferably after drying for 1 hour at 105 °C) in the range of 2 g / m 2 up to 100 g / m 2 , especially in the range of 5 g / m 2 up to 90 g / m 2 , particularly preferably in the range of 10 g / m 2 up to 80 g / m 2 , wherein the particle and / or aerosol filter layer (39) is produced by electrospinning, meltblow processes or a combination of these two processes. [32] Protective clothing according to one of the preceding claims, wherein the cover layer (37) is designed and / or present as a preferably gas-permeable textile fabric; and / or wherein the cover layer (37) is designed as an air-permeable textile fabric, preferably as a woven fabric, nonwoven fabric, nonwoven textile material, knitted fabric, in particular as a knitted fabric or knitted fabric, preferably as a woven fabric or nonwoven fabric; and / or wherein the covering layer (37) comprises or is formed from natural textile fibers and / or synthetic textile fibers (chemical fibers), preferably synthetic textile fibers, preferably synthetic textile fibers (chemical fibers) based on polyester and / or polyamide; and / or wherein the covering layer (37) comprises or is formed from synthetic fibers (chemical fibers), optionally in combination with natural fibers, preferably cotton fibers; and / or wherein the cover layer (37) has a basis weight (in particular determined as dry weight) in the range of 10 g / m 2 up to 275 g / m 2 , especially in the range of 15 g / m 2 up to 175 g / m 2 , preferably in the range of 25 g / m 2 up to 150 g / m 2 , particularly preferably in the range of 30 g / m 2 up to 100 g / m 2 , in particular determined according to DIN EN 12127, preferably after drying for 1 hour at 105 °C; and / or wherein the cover layer (37) has a gas permeability, in particular air permeability, of at least 1.5 lm -2 .s -1 , in particular at least 3 lm -2 .s -1 , preferably at least 7 l·m -2 s -1 , preferably at least 10 l·m -2 s -1 , particularly preferably at least 20 l·m -2 s -1, in particular determined according to DIN EN ISO 9237 and / or in particular determined at a differential pressure (flow resistance) of 127 Pascal. [33] Protective clothing according to one of the preceding claims, wherein the adhesive layer (36) and / or the adhesive of the adhesive layer (36) is applied in an amount in the range of 5 g / m 2 up to 80 g / m 2 , especially in the range of 10 g / m 2 up to 60 g / m 2 , preferably in the range of 15 g / m 2 up to 50 g / m 2 , is applied and / or applied to the textile carrier layer (6b). wherein the adhesive and / or the adhesive polymer is selected from the group of polyacrylates (PA), polymethacrylates (PMA), polymethyl methacrylates (PMMA), polycarbonates (PC), polyurethanes (PU) and silicones as well as mixtures or combinations of at least two of the aforementioned compounds, preferably polyurethane (PU), and / or wherein the adhesive and / or the adhesive polymer is a polyurethane (PU). [34] Protective clothing according to one of the preceding claims, wherein the adhesive layer (36) has a density in the range of 100 g / l to 500 g / l, in particular in the range of 150 g / l to 400 g / l, preferably in the range of 200 g / l to 350 g / l. [35] Protective clothing according to one of the preceding claims, wherein the adhesive layer (36) is partially penetrated into the textile carrier layer (6b) and / or wherein the adhesive layer (36) extends into the textile carrier layer (6b). [36] Protective clothing according to one of the preceding claims, wherein the adhesive layer (36) and / or the adhesive of the adhesive layer (36) is applied and / or applied to the textile carrier layer (6b) as a water vapor and / or air-permeable, preferably water vapor and air-permeable, and / or discontinuously formed adhesive layer based on an adhesive polymer, wherein the adhesive layer is formed either in the form of a dried and / or cured, in particular cross-linked, broken adhesive polymer foam or in the form of a grid of a plurality of adhesive (polymer) points distributed over the carrier layer (6b), preferably in the form of a dried and / or cured, in particular cross-linked, broken adhesive polymer foam; and / or wherein the adhesive layer is designed either in the form of a dried and / or cured, in particular cross-linked, broken adhesive polymer foam or in the form of a grid of a plurality of adhesive (polymer) points distributed over the carrier layer (6b), preferably in the form of a dried and / or cured, in particular cross-linked, broken adhesive polymer foam. [37] Protective clothing according to one of the preceding claims, wherein the adhesive layer (36) and / or the adhesive of the adhesive layer (36) is applied and / or applied to the textile carrier layer (6b) as a water vapor and / or air permeable, preferably water vapor and air permeable, and / or discontinuously formed adhesive layer based on a dried and / or cured, in particular crosslinked, broken adhesive polymer foam; in particular wherein the broken adhesive polymer foam has a plurality of dried and / or cured, in particular cross-linked, destroyed and / or burst and / or collapsed foam bubbles; and / or in particular wherein the broken adhesive polymer foam, in particular the dried and / or cured, in particular cross-linked, destroyed and / or burst and / or collapsed foam bubbles of the broken adhesive foam, has or have a plurality of destroyed and / or broken and / or collapsed walls and / or webs made of adhesive polymer; and / or in particular wherein the broken adhesive polymer foam has a proportion of destroyed and / or burst and / or collapsed foam bubbles of at least 10%, in particular at least 30%, preferably at least 50%, preferably at least 70%, particularly preferably at least 90%, very particularly preferably at least 95%, based on the total number of foam bubbles in the broken adhesive polymer foam; and / or in particular wherein the broken adhesive polymer foam has a proportion of destroyed and / or burst and / or collapsed foam bubbles in the range from 10% to 100%, in particular in the range from 30% to 99.9%, preferably in the range from 50% to 99%, preferably in the range from 70% to 99%, particularly preferably in the range from 90% to 98%, based on the total number of foam bubbles in the broken adhesive polymer foam; and / or in particular wherein the broken adhesive polymer foam is not closed and / or in particular wherein the broken adhesive polymer foam has a plurality of perforations, pores, channels and / or openings extending in particular in the broken adhesive polymer foam and / or a plurality of perforations, pores, channels and / or openings connecting in particular the respective outer sides of the broken adhesive polymer foam and / or the adhesive layer; and / or in particular wherein the fractured adhesive polymer foam is continuous and / or coherent; and / or. in particular, wherein the broken adhesive polymer foam is applied and / or applied at least substantially over the entire surface and / or all over the textile carrier layer (6b); and / or in particular wherein the broken adhesive polymer foam has a density and / or a volume weight that is reduced by at least 5%, in particular by at least 10%, preferably by at least 15%, more preferably by at least 20%, particularly preferably by at least 25%, relative to the non-foamed and / or continuously formed adhesive polymer, and / or in particular wherein the broken adhesive polymer foam has a density and / or a volume weight that is reduced by at least 5%, in particular by at least 10%, preferably by at least 15%, more preferably by at least 20%, particularly preferably by at least 25%, relative to the non-foamed and / or continuously formed adhesive polymer; ...has a reduced density and / or reduced, in particular reduced per unit area, volume weight in the range of 5% to 80%, in particular in the range of 10% to 70%, preferably in the range of 15% to 60%, preferably in the range of 20% to 55%, based on the non-foamed and / or continuously formed adhesive polymer; and / or. in particular wherein the broken adhesive polymer foam has a density and / or volume weight increased by at most 10%, in particular at most 5%, preferably at most 1%, relative to the intact and / or unbroken adhesive polymer foam; and / or in particular wherein the broken adhesive polymer foam has, compared to a corresponding intact and / or unbroken adhesive polymer foam, a reduced elasticity and / or reversible extensibility by at most 30%, in particular by at most 20%, preferably by at most 10%, preferably by at most 5%, relative to the intact and / or unbroken adhesive polymer foam; and / or in particular wherein the broken adhesive polymer foam has, compared to a corresponding intact and / or unbroken adhesive polymer foam, a reduced elasticity and / or reversible extensibility in the range of 5% to 30%, in particular in the range of 10% to 20%, relative to the intact and / or unbroken adhesive polymer foam; and / or in particular wherein the broken adhesive polymer foam is obtainable by drying and / or curing, in particular crosslinking, of a foamed, preferably foamed with mechanical energy input, aqueous or organic-based, preferably aqueous-based, solution and / or dispersion of the adhesive polymer, in particular accompanied by an at least partial breaking of the foam provided by the foamed solution and / or dispersion of the adhesive polymer, in particular wherein the drying and / or curing, in particular crosslinking, is carried out in the presence of at least one foaming agent and optionally at least one foam stabilizer and optionally at least one crosslinking agent and optionally at least one emulsifier and optionally at least one thickener. [38] Protective clothing according to one of the preceding claims, wherein the adhesive layer (36) and / or the adhesive of the adhesive layer (36) is applied and / or applied to the textile carrier layer (6b) as a water vapor and / or air-permeable, preferably water vapor and air-permeable, and / or discontinuously formed adhesive layer based on an adhesive polymer, wherein the adhesive layer is in the form of a grid of a plurality of adhesive (polymer) dots distributed over the carrier layer (6b); and / or wherein the adhesive layer is in the form of a grid of a plurality of adhesive (polymer) dots distributed over the carrier layer (6b); in particular wherein the adhesive layer covers at most 75% of the surface of the carrier layer (6b), preferably at most 60% of the surface of the carrier layer (6b), particularly preferably at most 50% of the surface of the carrier layer (6b), very particularly preferably at most 40% of the surface of the carrier layer (6b); and / or in particular, wherein the grid of the plurality of adhesive (polymer) dots distributed over the carrier layer (6b) is formed regularly or irregularly; and / or in particular wherein the adhesive (polymer) dots have at least substantially the same size, in particular size extension. [39] Protective clothing according to one of the preceding claims, wherein the first layer (6) has a basis weight in the range of 10 g / m 2 up to 600 g / m 2 , especially in the range of 50 g / m 2 up to 500 g / m 2 , preferably in the range of 100 g / m 2 up to 450 g / m 2 , particularly preferably in the range of 150 g / m 2 up to 410 g / m 2 , in particular determined according to DIN EN 12127, preferably after 24 hours of conditioning at a temperature of 20 °C and a relative humidity of 65%; and / or wherein the first layer (6) has a thickness, in particular a total cross-sectional thickness, in the range from 0.01 mm to 10 mm, in particular in the range from 0.05 mm to 5 mm, preferably in the range from 0.1 mm to 3 mm, preferably in the range from 0.2 mm to 2 mm, particularly preferably in the range from 0.5 mm to 2 mm, in particular determined according to DIN EN ISO 5084; and / or wherein the first layer (6) and / or the protective material (5) has a gas permeability, in particular air permeability, of at least 1 mm / s, in particular at least 2 mm / s, preferably at least 5 mm / s, preferably at least 7 mm / s, particularly preferably at least 10 mm / s, in particular determined according to DIN EN ISO 9237 and / or in particular determined at a differential pressure (flow resistance) of 100 Pascal; and / or wherein the first layer (6) and / or the protective material (5) have a gas permeability, in particular air permeability, in the range from 1 mm / s to 500 mm / s, in particular in the range from 2 mm / s to 400 mm / s, preferably in the range from 5 mm / s to 200 mm / s, more preferably in the range from 7 mm / s to 150 mm / s, particularly preferably in the range from 10 mm / s to 100 mm / s, in particular determined according to DIN EN ISO 9237 and / or in particular determined at a differential pressure (flow resistance) of 100 Pascal. [40] Protective clothing according to one of the preceding claims, wherein the second layer (7) is designed as a gas-permeable, in particular air-permeable, textile fabric, in particular as a textile knitwear, preferably as a warp-knitted fabric (knitted fabric) or a woven fabric (knitted fabric), or in particular as a woven fabric, nonwoven fabric, nonwoven fabric or textile composite material, preferably a woven fabric; and / or wherein the second layer (7) comprises or is formed from natural textile fibers and / or synthetic textile fibers (chemical fibers), preferably synthetic textile fibers; and / or wherein the second layer (7) comprises or is formed from synthetic fibers (chemical fibers), optionally in combination with natural fibers, preferably cotton fibers; and / or wherein the second layer (7) comprises elastane (EL), in particular elastane fibers; and / or wherein the second layer (7) has a basis weight in the range of 5 g / m 2 up to 400 g / m 2 , especially in the range of 10 g / m 2 up to 300 g / m 2, preferably in the range of 20 g / m 2 up to 250 g / m 2 , particularly preferably in the range of 30 g / m 2 up to 175 g / m 2 , in particular determined according to DIN EN 12127, preferably after 24 hours of conditioning at a temperature of 20 °C and a relative humidity of 65%; and / or wherein the second layer (7) has a thickness, in particular cross-sectional thickness, in the range from 0.001 mm to 10 mm, in particular in the range from 0.01 mm to 8 mm, preferably in the range from 0.05 mm to 4 mm, preferably in the range from 0.075 mm to 2 mm, particularly preferably in the range from 0.1 mm to 2 mm, further preferably in the range from 0.15 mm to 1 mm, in particular determined according to DIN EN ISO 5084; and / or wherein the second layer (7) has a gas permeability, in particular air permeability, of at least 1.5 lm -2 .s -1 , in particular at least 3 lm -2 .s -1 , preferably at least 7 l·m-2 s -1 , preferably at least 10 l·m -2 s -1 , particularly preferably at least 20 l·m -2 s -1 , in particular determined according to DIN EN ISO 9237 and / or in particular determined at a differential pressure (flow resistance) of 127 Pascal. [41] Protective clothing according to one of the preceding claims, wherein the second layer (7) comprises or consists of a material, in particular textile fiber material, preferably textile fibers, selected from the group of natural materials and synthetic materials, in particular selected from the group of cotton (CO); wool; linen; polyesters; polyolefins, polyvinyl chloride; polyvinylidene chloride; acetates, in particular cellulose acetates; triacetates, in particular cellulose triacetates; aramids, in particular meta- and / or para-amides; optionally modified and / or regenerated celluloses; polyacrylic; polyamide; polyvinyl alcohol; polyurethanes; polyvinyl esters; modified and / or regenerated celluloses, in particular viscose; and mixtures or combinations thereof, preferably selected from the group of modified and / or regenerated celluloses, in particular viscose; aramids, in particular meta- and / or para-amides; polyamide and mixtures or combinations thereof. [42] Protective clothing according to one of the preceding claims, wherein the second layer (7), in particular on its outer side and / or on its side facing the poison and / or pollutant source, is oleophobic and / or hydrophobic, preferably oleophobic and hydrophobic, and / or wherein the second layer (7), in particular on its outer side and / or on its side facing the poison and / or pollutant source, has an oleophobic and / or hydrophobic finish, in particular oleophobic and hydrophobic finish, in particular in the form of an impregnation or coating, preferably by means of at least one fluorocarbon and / or at least one fluorohydrocarbon, preferably a fluorinated polymer. [43] Protective clothing according to one of the preceding claims, wherein the protective clothing (1), in particular also in the widened section (9), preferably the seam area (12), has a barrier effect against harmful and / or toxic substances, in particular chemical warfare agents, in particular bis[2-chloroethyl]sulphide (mustard gas, HD), determined according to method 2.2 of CRDEC-SP-84010, of at most 4 µg / cm 2 per 24 hours, in particular not more than 3.5 µg / cm 2 per 24 hours, preferably not more than 3.0 µg / cm 2 per 24 hours, preferably not more than 2.5 µg / cm 2 per 24 hours, particularly preferably not more than 2.25 µg / cm 2 per 24 hours, most preferably not more than 2 µg / cm 2 per 24 hours, more preferably not more than 1.75 µg / cm 2 per 24 hours; and / or wherein the protective clothing (1), in particular also in the widened section (9), preferably the seam area (12), has a barrier effect against harmful and / or toxic substances, in particular chemical warfare agents, in particular bis[2-chloroethyl]sulphide (mustard gas, HD), determined according to the Laid Drop Diffusive Flow Test of at most 4 µg / cm 2 per 24 hours, in particular not more than 3.5 µg / cm 2 per 24 hours, preferably not more than 3.0 µg / cm 2 per 24 hours, preferably not more than 2.5 µg / cm 2 per 24 hours, particularly preferably not more than 2.25 µg / cm 2 per 24 hours, most preferably not more than 2 µg / cm 2 per 24 hours, more preferably not more than 1.75 µg / cm 2 per 24 hours, in particular measured as cumulative breakthrough by gas chromatography (GC / FPD) after exposure to mustard gas for 24 hours at a temperature of 23°C and a relative humidity of not more than 5% RH, especially with a material sample area of 10 cm 2 , a material exposure to 8 mustard gas drops (each drop volume = 1 µl), a test execution in a test cell above a PE membrane (10 µm), a flow under the material of 100 ml / min, a flow above the material of 0.5 m / s and a flow through the material of 0 cm / s. [44] Protective clothing (1) with a protective function against chemical and / or biological and / or radioactive pollutants and / or poisons (warfare agents) (“ABC or CBRN protective function”), in particular ABC protective clothing (“CBRN protective clothing”), preferably for civil or military purposes, in particular in the form of trousers (2), a jacket (3) or an overall, preferably in the form of trousers (2), in particular protective clothing (1) according to one of the preceding claims, wherein the protective clothing (1) has at least one extremity section (4) for, in particular, partial and / or complete protection of at least one extremity, in particular at least one upper and / or lower extremity, of a wearer of the protective clothing (1), preferably in the wearing and / or use state, in particular wherein the extremity section (4) surrounds and / or encloses at least one extremity of the wearer at least in regions, wherein the protective clothing (1) comprises a multi-layer protective material (5), wherein the protective material (5) (a) a first, in particular flat and / or two-dimensional, layer (6) in the form of a multi-layer, in particular at least two-layer, air-permeable adsorption filter material (“inner layer”), in particular for the adsorption of chemical and / or biological and / or radioactive pollutants and / or toxins, preferably wherein the adsorption filter material has an adsorption layer (6a) and a textile carrier layer (6b) (“adsorption layer carrier”), and (b) a second, in particular flat and / or two-dimensional, layer (7) in the form of a textile, air-permeable outer material (“outer layer”), has, wherein the protective clothing (1) has a widening section (9) which can be released and / or closed with at least one closure means (8) for selectively widening and / or enlarging the inner and / or outer diameter (10, 11) of the protective clothing (1) in the region of the widening section (9), wherein the widening section (9) is arranged at least partially, preferably completely, on and / or in the extremity section (4), wherein the closure means (8) is only and / or exclusively connected, in particular sewn, to the second layer (7) and / or wherein the closure means (8) is (directly) unconnected to the first layer (6), in particular wherein the closure means (8) is connected to the second layer (7) by sewing in at least one seam region (12), in particular using at least one yarn and / or thread; and wherein the protective clothing (1) has at least one opening section (27) which can be released and / or closed with a further closure means (26), in particular a trouser fly and / or a divisible opening section of a jacket (3), a sweater or an overall, for selectively opening the protective clothing (1) in the region of the opening section (27); in particular wherein the further closure means (26) in the closed state is covered and / or covered on the underside and / or on its side facing the interior (13) of the protective clothing (1), and on the top side and / or on its side facing the poison and / or pollutant source, in each case with a material section (28a, 28b) of at least the first layer (6), in particular with a material section (28a, 28b) of the protective material (5), and / or in particular wherein the further closure means (26) is designed to be liquid-repellent, preferably water-repellent, in particular waterproof, and / or airtight or windtight. [45] Protective clothing (1) with a protective function against chemical and / or biological and / or radioactive pollutants and / or poisons (warfare agents) (“ABC or CBRN protective function”), in particular ABC protective clothing (“CBRN protective clothing”), preferably for civil or military purposes, in particular in the form of trousers (2), a jacket (3) or an overall, preferably in the form of trousers (2), in particular protective clothing (1) according to one of the preceding claims, wherein the protective clothing (1) has at least one extremity section (4) for, in particular, partial and / or complete protection of at least one extremity, in particular at least one upper and / or lower extremity, of a wearer of the protective clothing (1), preferably in the wearing and / or use state, in particular wherein the extremity section (4) surrounds and / or encloses at least one extremity of the wearer at least in regions, wherein the protective clothing (1) comprises a multi-layer protective material (5), wherein the protective material (5) (a) a first, in particular flat and / or two-dimensional, layer (6) in the form of a multi-layer, in particular at least two-layer, air-permeable adsorption filter material (“inner layer”), in particular for the adsorption of chemical and / or biological and / or radioactive pollutants and / or toxins, preferably wherein the adsorption filter material has an adsorption layer (6a) and a textile carrier layer (6b) (“adsorption layer carrier”), and (b) a second, in particular flat and / or two-dimensional, layer (7) in the form of a textile, air-permeable outer material (“outer layer”), has, wherein the protective clothing (1) has a widening section (9) which can be released and / or closed with at least one closure means (8) for selectively widening and / or enlarging the inner and / or outer diameter (10, 11) of the protective clothing (1) in the region of the widening section (9), wherein the widening section (9) is arranged at least partially, preferably completely, on and / or in the extremity section (4), wherein the closure means (8) is only and / or exclusively connected, in particular sewn, to the second layer (7) and / or wherein the closure means (8) is (directly) unconnected to the first layer (6), in particular wherein the closure means (8) is connected to the second layer (7) by sewing in at least one seam region (12), in particular using at least one yarn and / or thread; and wherein the protective clothing (1) has at least one opening section (27) which can be released and / or closed with a further closure means (26), in particular a trouser fly and / or a divisible opening section of a jacket (3), a sweater or an overall, for selectively opening the protective clothing (1) in the region of the opening section (27); in particular wherein the further closure means (26) is characterized by at least one, preferably at least two, particularly preferably three of the following features (i), (ii) and (iii): (i) the further closure means (26) is, in the closed state, covered and / or overlapped on the underside and / or on its side facing the interior (13) of the protective clothing (1) with a material section (28a) of at least the first layer (6), in particular with a material section (28a) of the protective material (5), (ii) the further closure means (26) is, in the closed state, covered and / or overlapped on the top side and / or on its side facing the pollutant and / or toxic substance source with a material section (28b) of at least the first layer (6), in particular with a material section (28b) of the protective material (5), (iii) the further closure means (26) is liquid-repellent, preferably water-repellent, in particular waterproof, and / or air- ordesigned to be windproof. [46] Use of a widening section (9) to improve the wearing comfort and / or to improve the donning behavior and / or the putting on and / or the adaptability (ie adaptability to a user or wearer or in the worn state) of protective clothing (1) with a protective function against chemical and / or biological and / or radioactive pollutants and / or toxic substances (warfare agents) ("ABC or CBRN protective function"), in particular ABC protective clothing ("CBRN protective clothing"), preferably for civil or military purposes, in particular in the form of trousers (2), a jacket (3) or an overall, preferably in the form of trousers (2), in particular protective clothing (1) according to one of the preceding claims, wherein the protective clothing (1) has at least one extremity section (4) for, in particular, partial and / or complete protection of at least one extremity, in particular at least one upper and / or lower extremity, of a wearer of the protective clothing (1), preferably in the wearing and / or use state, in particular wherein the extremity section (4) surrounds and / or encloses at least one extremity of the wearer at least in regions, wherein the protective clothing (1) comprises a multi-layer protective material (5), in particular wherein the protective material (5) comprises: (a) a first, in particular flat and / or two-dimensional, layer (6) in the form of a multi-layer, in particular at least two-layer, air-permeable adsorption filter material (“inner layer”), in particular for the adsorption of chemical and / or biological and / or radioactive pollutants and / or toxins, preferably wherein the adsorption filter material has an adsorption layer (6a) and a textile carrier layer (6b) (“adsorption layer carrier”), and (b) a second, in particular flat and / or two-dimensional, layer (7) in the form of a textile, air-permeable outer material (“outer layer”), wherein the protective clothing (1) has a widening section (9) which can be released and / or closed with at least one closure means (8) for selectively widening and / or enlarging the inner and / or outer diameter (10, 11) of the protective clothing (1) in the region of the widening section (9), wherein the widening section (9) is arranged at least partially, preferably completely, on and / or in the extremity section (4), and wherein the closure means (8) is only and / or exclusively connected, in particular sewn, to the second layer (7) and / or wherein the closure means (8) is, preferably directly, unconnected to the first layer (6), in particular wherein the closure means (8) is connected to the second layer (7) by sewing in at least one seam region (12), in particular using at least one yarn and / or thread. [47] Use according to claim 46, characterized byone or more of the features of claims 1 to 45.