Mosquito-proof clothes and protective instrument
By designing mosquito-proof clothing, using solid strips to support the garment body and combining the protective design of the cap body, gloves and foot covers, the problem of dengue patients being bitten by mosquitoes when exercising or leaving the mosquito repellent area is solved, achieving a comprehensive and real-time mosquito-repellent effect.
Patent Information
- Application Number
- CN202421524162.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-28
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-06-28
AI Technical Summary
In the prior art, dengue fever patients are prone to be bitten by mosquitoes again when exercising or leaving the mosquito repellent area, which leads to aggravation of the condition and it is difficult for the prior art to achieve real-time protection.
A mosquito-proof clothing is designed, including a body of clothing, a hat, gloves and a foot cover. Several solid strips are provided on the body of clothing to support the body of clothing, so that the body of clothing is spaced at a certain distance from the patient's skin. A mask and solid strip are provided on the body of cap, gloves and foot covers to fully protect the head, hands and feet.
It achieves comprehensive coverage protection for dengue patients, avoids mosquito bites, and does not affect the patients' free movement. It is suitable for providing real-time protection when moving in different areas.
Smart Images

Figure CN222982529U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of medical protection devices, in particular to a mosquito-proof clothing and a protection device. Background Art
[0002] Dengue fever is an acute arbovirus infectious disease caused by the dengue virus, mainly transmitted by Aedes aegypti and Aedes albopictus. The World Health Organization classifies it into two categories: ordinary dengue fever and severe dengue fever. To date, there is no specific treatment method for dengue fever. The vast majority of patients will recover on their own. However, in a small number of cases, the condition may worsen, and dengue hemorrhagic fever / dengue shock syndrome may occur. Common symptoms include fever, severe headache, eye pain, muscle pain and joint pain, fatigue, nausea, vomiting, diarrhea, etc. In severe cases, patients may experience severe bleeding and shock, leading to death.
[0003] When treating dengue fever patients, how to prevent patients from being bitten by mosquitoes again is an important prevention and control content. In the prior art, to prevent mosquitoes, mainly methods such as hanging mosquito nets on the patient's bed and setting mosquito repellents are used. The prior art limits the mosquito repellent area, and it is easy for patients to be bitten by mosquitoes again during movement or when leaving the mosquito repellent area, making it difficult to achieve the effect of real-time protection.
[0004] Therefore, the prior art still needs to be improved and developed. Summary of the Utility Model
[0005] In order to solve the problem that in the prior art, the protection of dengue fever patients is mainly achieved by hanging mosquito nets, setting mosquito repellents, etc., which limits the mosquito repellent area and makes it easy for patients to be bitten by mosquitoes again during movement or when leaving the mosquito repellent area, leading to the aggravation of the condition, and the prior art is difficult to achieve real-time protection, the utility model provides a mosquito-proof clothing.
[0006] The utility model is achieved through the following technical solutions:
[0007] A mosquito-proof clothing, wherein the mosquito-proof clothing includes:
[0008] A body, on which a number of solid strips are arranged at intervals, and the solid strips are used to support the body into a predetermined shape;
[0009] A cap body, which is detachably connected to the body. A face mask is arranged on one side of the cap body, and the edge of the face mask is fixedly connected to the cap body. The solid strips are arranged on the cap body;
[0010] Gloves, which are symmetrically arranged at the cuffs of the body;
[0011] Foot covers, which are symmetrically arranged at the hems of the body.
[0012] The mosquito-proof clothing described above, wherein the clothing body includes a first layer body and a second layer body, and a plurality of the solid strips are fixedly arranged on the first layer body;
[0013] The edge part of the first layer body is fixedly connected to the edge part of the second layer body, and the size of the second layer body is smaller than that of the first layer body.
[0014] The mosquito-proof clothing described above, wherein both the first layer body and the second layer body are gauzes provided with mesh holes.
[0015] The mosquito-proof clothing described above, wherein the density of the mesh holes of the first layer body and the second layer body is different;
[0016] Or the diameter sizes of the mesh holes of the first layer body and the second layer body are different.
[0017] The mosquito-proof clothing described above, wherein a plurality of zippers are arranged on the clothing body, and the plurality of zippers include:
[0018] A first zipper, which is symmetrically arranged on the clothing body at the position corresponding to the armpit;
[0019] A second zipper, which is symmetrically arranged on the clothing body at the position corresponding to the elbow pit;
[0020] A third zipper, which is symmetrically arranged on the clothing body at the position corresponding to the hip;
[0021] A fourth zipper, which is symmetrically arranged on the clothing body at the position corresponding to the calf;
[0022] A fifth zipper, which is arranged on the clothing body at the position corresponding to the center line of the chest and abdomen.
[0023] The mosquito-proof clothing described above, wherein the first zipper is embedded in the clothing body, and the first zipper extends along the front side of the clothing body to the back side of the clothing body;
[0024] The second zipper is continuously arranged circumferentially along the elbow pit part of the clothing body;
[0025] The third zipper is continuously arranged circumferentially along the hip part of the clothing body;
[0026] The fourth zipper is embedded in the clothing body and is arranged in a penetrating manner with the trouser leg part of the clothing body;
[0027] The fifth zipper is embedded in the clothing body and extends along the front side of the clothing body around the position corresponding to the hip of the clothing body to the back side of the clothing body.
[0028] The mosquito-proof clothing described above, wherein among the solid strips on the clothing body:
[0029] The solid strips corresponding to the limbs of the garment body are arranged in a ring shape;
[0030] The solid strips corresponding to the chest and abdomen of the garment body are arranged along a predetermined arc;
[0031] The solid strips corresponding to the back of the garment body are arranged in a semicircle and are fixedly connected to the solid strips corresponding to the chest and abdomen of the garment body.
[0032] For the mosquito-proof garment described above, the solid strip is an elastic solid strip, and the side chamfer of the solid strip is smoothly arranged.
[0033] For the mosquito-proof garment described above, elastic parts are arranged at the parts corresponding to the cuffs and hems of the garment body, and the elastic parts are used to restrict the openings of the garment body.
[0034] A protective device, wherein the protective device includes the mosquito-proof garment described above.
[0035] The beneficial effects of the present utility model are as follows: By arranging a plurality of solid strips on the garment body to support the garment body, the garment body is spaced from the skin of the patient at a certain distance, and a cap body with a face mask and solid strips is provided for protecting the head, and gloves and foot covers are used for protecting the hands and feet. It can not only form a comprehensive coverage protection for dengue fever patients, but also does not affect the free movement of the patients. It can facilitate the activities of users while preventing the patients from being bitten by mosquitoes again, realizing real-time protection. Description of the Drawings
[0036] Figure 1 is the front view of the mosquito-proof garment of the present utility model;
[0037] Figure 2 is the rear view of the mosquito-proof garment of the present utility model;
[0038] Figure 3 is the sectional view taken along the A-A section of the mosquito-proof garment of the present utility model in Figure 1 ;
[0039] Figure 4 is the schematic diagram of the usage state of the garment body in the mosquito-proof garment of the present utility model.
[0040] In Figures 1 to 4 : 100, garment body; 101, solid strip; 110, first layer body; 120, second layer body; 131, first zipper; 132, second zipper; 133, third zipper; 134, fourth zipper; 135, fifth zipper; 200, cap body; 210, face mask; 300, glove; 400, foot cover. Detailed Embodiments
[0041] To make the objectives, technical solutions and effects of the present utility model clearer and more definite, the following further describes the present utility model in detail with reference to the accompanying drawings and by way of examples. It should be understood that the specific examples described herein are only used to explain the present utility model and are not used to limit the present utility model.
[0042] It should be noted that if there are directional indications (such as up, down, left, right, front, back...) involved in the embodiments of the present utility model, the directional indications are only used to explain the relative positional relationship, movement conditions, etc. between components in a specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indications will also change accordingly.
[0043] In addition, if there are descriptions such as "first", "second", etc. involved in the embodiments of the present utility model, the descriptions of "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of the features. In addition, the technical solutions between various embodiments can be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions results in contradictions or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the protection scope required by the present utility model.
[0044] When treating dengue fever patients, how to prevent patients from being bitten by mosquitoes again is an important prevention and control content. In the prior art, for mosquito prevention, mainly methods such as hanging mosquito nets on the patient's beds and setting mosquito repellents are used. The prior art limits the mosquito repellent area, and it is easy for patients to be bitten by mosquitoes again during the movement process or when leaving the mosquito repellent area, and it is difficult to achieve the effect of real-time protection.
[0045] Based on the above problems in the prior art, the present utility model provides a mosquito-proof clothing, as Figure 1 shown. The mosquito-proof clothing includes: a clothing body 100, on which a number of solid strips 101 are arranged at intervals, and the solid strips 101 are used to support the clothing body 100 into a predetermined shape; a cap body 200, which is detachably connected to the clothing body 100. A face mask 210 is arranged on one side of the cap body 200, and the edge of the face mask 210 is fixedly connected to the cap body 200. Solid strips 101 are arranged on the cap body 200; gloves 300, which are symmetrically arranged at the cuff positions of the clothing body 100; and foot covers 400, which are symmetrically arranged at the hem positions of the clothing body 100.
[0046] The present utility model supports the clothing body 100 by arranging a plurality of shaping strips 101 on the clothing body 100, so that the clothing body 100 is spaced from the skin of the patient at a certain distance, and a cap body 200 with a face mask 210 and shaping strips 101 is arranged for protecting the head, and gloves 300 and foot covers 400 are used for protecting the hands and feet. It can form a comprehensive coverage protection for dengue fever patients without affecting the free movement of the patients, facilitate the activities of users while avoiding the patients from being bitten by mosquitoes again, and achieve real-time protection.
[0047] In the above embodiment, as Figure 1 shown, the main body of the mosquito-proof clothing of the present utility model is composed of a clothing body 100, a cap body 200, gloves 300 and foot covers 400, which are used for comprehensively covering dengue fever patients, so as to achieve the effect of avoiding mosquito bites. At the same time, wearing the mosquito-proof clothing will not affect the free activities of the patients; in this embodiment, the clothing body 100 is made of a fabric material with better air permeability. At the same time, in order to avoid the clothing body 100 causing a tight feeling to the skin of the patient, a plurality of shaping strips 101 are also arranged at intervals on the clothing body 100. The shaping strips 101 are made of elastic materials, such as rubber, silica gel, etc., and can support the clothing body 100 into a predetermined shape, so as to reduce the contact between the skin and the clothing body 100 when the patient wears the clothing body 100 and ensure comfort. On the other hand, a certain space is supported and formed between the clothing body 100 and the skin of the patient through the shaping strips 101, which can avoid mosquitoes from biting the patient through the clothing body 100. Specifically, for example, when the patient is in a lying state, the back side of the patient is attached to the clothing body 100 and attached to the bedsheet. At this time, under the action of the shaping strips 101, the front side clothing body 100 part of the patient is supported away from the skin, providing a breathable space and avoiding mosquito bites.
[0048] Furthermore, the cap body 200 is made of the same material as the clothing body 100, and shaping strips 101 are also arranged on the cap body 200 for supporting the shape of the cap body 200. In addition, a face mask 210 is arranged on one side of the cap body 200. The face mask 210 is made of a transparent material, and the edge of the face mask 210 is fixedly connected to the cap body 200, so as to realize the protection of the patient's face when wearing the cap body 200. Since the face mask 210 is transparent, it will not affect the patient's line of sight. And since the cap body 200 is made of a breathable material, it can ensure the smooth breathing of the patient, and further realize the protection of the skin of the patient's head. In this embodiment, the cap body 200 is detachably connected to the clothing body 100, and the connection can be realized through a zipper. The specific structural setting can refer to existing technologies such as windbreakers and cotton-padded clothes with detachable hats; in this embodiment, the plurality of shaping strips 101 arranged on the cap body 200 also support the edge part of the face mask 210, so as to avoid the face mask 210 from fitting with the patient's face and ensure the comfort of the patient during the wearing process.
[0049] Further, the gloves 300 and the foot covers 400 are made of breathable materials and are used to protect the hand skin and foot skin of the patient. Specifically, the gloves 300 are symmetrically arranged at the cuff positions of the garment body 100. After the patient wears the gloves 300, they can be sleeved with the cuff parts, thereby blocking the hand skin of the patient; the foot covers 400 are symmetrically arranged at the hem positions of the garment body 100. After the patient wears the foot covers 400, they can be sleeved with the hem parts, thereby blocking the foot skin of the patient. In this embodiment, the setting of the gloves 300 does not affect the user's access to items, that is, it does not affect the user's normal life. The setting of the foot covers 400 also facilitates the user's activities. Therefore, it can ensure that the user can carry out normal daily activities during the process of wearing the mosquito-proof clothing.
[0050] In addition, in this embodiment, the mosquito-proof clothing can also be used in combination with the mosquito-proof measures in the prior art. For example, it can be used in combination with mosquito nets and mosquito repellents in specific areas. During the daily activities of the patient, there will inevitably be activities such as changing underwear, washing, and excretion. These activities will inevitably expose part of the patient's skin to a certain extent. Therefore, during such activities, medical staff need to carry out mosquito repellent work in advance in specific areas to ensure the skin safety of the patient. When the mosquito-proof clothing is worn completely, there is no need to cooperate with other mosquito repellent methods. The mosquito-proof clothing of the present utility model can effectively protect the patient from mosquitoes when moving in different areas.
[0051] In another feasible embodiment of the present utility model, as Figure 1 and Figure 3 shown, in this embodiment, the above-mentioned garment body 100 is specifically composed of a first layer body 110 and a second layer body 120. A plurality of the above-mentioned solid strips 101 are fixedly arranged on the first layer body 110 of the garment body 100, and the second layer body 120 is used as a lining in contact with the patient's skin. The advantage of such a setting is that on the one hand, it further avoids mosquitoes from biting the patient through the garment body 100, and on the other hand, it also avoids the direct contact between the user's skin and the solid strips 101, thereby preventing discomfort during the patient's lying process.
[0052] In this embodiment, the edge parts of the first layer body 110 and the second layer body 120 are fixedly connected, and the size of the second layer body 120 is smaller than that of the first layer body 110. During specific manufacturing, the mosquito-proof clothing can be preset as multiple parts according to the parts and then sewn. For example, the mosquito-proof clothing can be preset as parts such as the torso, sleeves, and trouser legs. When manufacturing these parts, taking the sleeves as an example, the first layer body 110 is the outer layer of the sleeves, and the second layer body 120 is the inner lining of the sleeves. The sleeves are in a tubular shape as a whole. Therefore, the two ends of the first layer body 110 and the two ends of the tube of the second layer body 120 are fixedly sewn. At the same time, since the shaping strip 101 is provided on the first layer body 110, the first layer body 110 is propped up into a preset shape. Since the second layer body 120 does not have the shaping strip 101 and its size is slightly smaller than that of the first layer body 110, an inner lining that fits the skin of the patient will be formed when worn. Also, since there are corresponding connection parts between the first layer body 110 and the second layer body 120, that is, under the action of the shaping strip 101, the second layer body 120 is sleeved inside the second layer body 120, and a certain space is naturally spaced around without being stressed. When the patient is in a standing state, there is a space between the first layer body 110 and the second layer body 120, preventing mosquitoes from passing through the first layer body 110 to bite the patient. Correspondingly, parts such as the torso, trouser legs, and the cap body 200 of the clothing body 100 are all manufactured in this way, forming an effect of double-layer wrapping the whole body and naturally forming a spaced space without being stressed, that is, equivalent to setting a miniature mosquito net adapted to the patient outside the second layer body 120 of the patient, effectively avoiding the patient from being bitten by mosquitoes during activities, and at the same time getting rid of the regional restriction of the traditional mosquito-proof tools on the patient.
[0053] When the clothing body 100 having the first layer body 110 and the second layer body 120 is stressed as described above, such as Figure 4 shown, for example, when the patient is in a lying state, the patient's skin generates pressure on the second layer body 120, causing one side of the second layer body 120 to abut against the corresponding side of the first layer body 110 and finally abut against the hospital bed. At this time, due to the support of the shaping strip 101, the shape of the first layer body 110 actually does not change or there is a slight deformation. Among the parts that are not pressed and abutted, a greater space change occurs between the first layer body 110 and the second layer body 120, and this space change can be automatically adjusted according to different lying postures of the patient, ensuring that there is always a "mosquito net" protection for the parts of the patient that are not in contact with the patient, so as to achieve the effect of adaptively protecting the patient.
[0054] Based on the above embodiment, in an implementable manner of the present utility model, to ensure the breathability of the mosquito-proof clothing, both the first layer body 110 and the second layer body 120 are gauzes provided with mesh holes, that is, materials similar to mosquito nets in the prior art. With such a setting, both the ventilation effect is ensured, enabling the original damaged skin of the patient to maintain the recovery speed, and mosquitoes are also prevented from entering, so as to prevent the patient from suffering secondary injuries during the recovery process.
[0055] Specifically, when the first layer body 110 and the second layer body 120 are provided, it is preferable to set the mesh densities of the first layer body 110 and the second layer body 120 to be different. For example, the mesh density of the first layer body 110 is set to be the same as that of the mosquito net in the prior art, and the mesh density of the second layer body 120 is set to be slightly lower than that of the first layer body 110. The purpose of such a setting is to ensure that at the force-bearing part of the clothing body 100, that is, the part where the first layer body 110 and the second layer body 120 are in force-fitting contact, there will be no mesh overlap when they come into contact, thereby preventing mosquitoes from passing through the mesh of the clothing body 100 at the force-bearing part and biting the skin of the patient.
[0056] In addition, the diameter size of the meshes of the first layer body 110 and the diameter size of the meshes of the second layer body 120 can also be set to be different. For example, the diameter size of the meshes of the first layer body 110 is the same as the diameter size of the meshes of the mosquito net in the prior art to prevent mosquitoes from passing through, and the diameter size of the meshes of the second layer body 120 is larger than the diameter size of the meshes of the mosquito net in the prior art to achieve a better ventilation effect.
[0057] During specific setting, those skilled in the art can selectively use the above-mentioned mosquito-proof clothing types with different settings according to the actual situation of the medical institution and the actual situation of the patient. The present application does not specifically limit this.
[0058] In another feasible embodiment of the present utility model, as Figure 1 shown, for the convenience of medical staff to treat patients, a number of zippers are further provided on the above-mentioned clothing body 100. The number of zippers specifically includes a first zipper 131 symmetrically arranged on the clothing body 100 corresponding to the armpit part, and this first zipper 131 is used when measuring the body temperature of the patient; a second zipper 132 symmetrically arranged on the clothing body 100 corresponding to the elbow pit part, and this second zipper 132 is used for intravenous injection of the patient; a third zipper 133 symmetrically arranged on the clothing body 100 corresponding to the hip part, and this third zipper 133 is used to facilitate applying medicine to the thigh part of the patient; a fourth zipper 134 symmetrically arranged on the clothing body 100 corresponding to the calf part, and this fourth zipper 134 is used to apply medicine to the calf part of the patient; a fifth zipper 135 arranged on the clothing body 100 corresponding to the center line of the chest and abdomen, and this fifth zipper 135 is used for putting on and taking off the clothing body 100 or for excretion.
[0059] Furthermore, as Figure 1 and Figure 2As shown, the above-mentioned first zipper 131 is fitted on the garment body 100, that is, the starting point and the ending point of the first zipper 131 are located on the garment body 100, and when the first zipper 131 is fully opened, only the part of the garment body 100 corresponding to the first zipper 131 is exposed. In this embodiment, the first zipper 131 extends along the front side of the garment body 100 to the back side of the garment body 100. The advantage of such a setting is that on the one hand, it limits the opening size of the zipper and reduces the exposed area, and on the other hand, it is convenient for operations such as applying medicine.
[0060] The second zipper 132 is continuously arranged circumferentially along the cubital fossa part of the garment body 100, that is, when the second zipper 132 is fully opened, the part from the cubital fossa to the forearm on the garment body 100 can be separated from the main body of the garment body 100. The advantage of such a setting is that it is convenient for other operation steps when medical staff perform intravenous injection.
[0061] The third zipper 133 is continuously arranged circumferentially along the hip part of the garment body 100, that is, when the third zipper 133 is fully opened, the part from the hip to the leg on the garment body 100 can be separated from the main body of the garment body 100. The advantage of such a setting is that it is convenient for medical staff to perform a large-scale medicine application operation.
[0062] The fourth zipper 134 is fitted on the garment body 100 and intersects with the trouser leg part of the garment body 100, that is, by opening the fourth zipper 134, the avoidance range of the trouser leg can be increased, so as to facilitate medical staff to perform a large-scale medicine application operation on the calf of the patient.
[0063] The fifth zipper 135 is fitted on the garment body 100 and extends along the front side of the garment body 100 around the part corresponding to the hip on the garment body 100 to the back side of the garment body 100. The advantage of such a setting is that it is convenient for the patient to put on and take off the garment body 100, and when excreting, it is not necessary to fully open the fifth zipper 135, reducing the exposed area of the skin.
[0064] In another implementable manner of the present utility model, as Figure 1 and Figure 2 shown, the solid strips 101 provided on the above-mentioned garment body 100 have various types. Among them, the solid strips 101 corresponding to the limb parts of the garment body 100 are arranged in a ring shape, and their function is to support the shape of the limb parts of the garment body 100; the solid strips 101 corresponding to the chest and abdomen parts of the garment body 100 are arranged along a predetermined arc, and their function is to support the front side of the garment body 100 into a predetermined shape while corresponding to the fifth zipper 135 provided, facilitating putting on and taking off; the solid strips 101 corresponding to the back part of the integrated body are arranged along a semicircle and are fixedly connected to the solid strips 101 of the chest and abdomen parts of the garment body 100. Their function is to support the garment body 100 on the back while forming a cooperation with the solid strips 101 on the front side of the garment body 100 to ensure stable support for the shape of the main body of the garment body 100.
[0065] In the above embodiment, the solid strip 101 is made of an elastic material, specifically rubber, silica gel or other materials, to achieve the effects of support and reset after deformation. In addition, in order to avoid discomfort when the patient's skin contacts the solid strip 101, the side edges of the solid strip 101 are smoothly chamfered in this embodiment.
[0066] In another feasible embodiment of the present utility model, as Figure 1 and Figure 2 shown, elastic parts are further provided on the above-mentioned garment body 100 corresponding to the cuffs and hems. The elastic parts are specifically realized by arranging elastic bands at the predetermined parts of the garment body 100, so as to restrain the opening parts of the garment body 100 through the elastic parts and prevent mosquitoes from entering the inside of the mosquito-proof clothing from the opening parts.
[0067] Based on the above embodiment, the actual use process of the mosquito-proof clothing of the present utility model is as follows:
[0068] As Figure 1 shown, during the treatment of a patient suffering from dengue fever, the mosquito-proof clothing is worn to fully cover the patient himself to prevent mosquitoes from biting again;
[0069] During the treatment, medical staff can expose some skin of the patient through several zippers for medical operations;
[0070] When the patient is in a lying state, the first layer body 110 and the second layer body 120 of the garment body 100 automatically form an interval space for mosquito prevention;
[0071] When the patient is in a moving state, the first layer body 110 and the second layer body 120 of the garment body 100 automatically form an interval space for mosquito prevention.
[0072] The mosquito-proof clothing of the present utility model can make the mosquito prevention of dengue fever patients no longer limited to restricted areas, facilitate the activities of patients and normal life, and achieve real-time protection.
[0073] Based on the above embodiments, the present utility model further provides a protective device, which includes the mosquito-proof clothing in the above embodiments. The mosquito-proof clothing includes: a clothing body, on which a plurality of shaping strips are arranged at intervals, and the shaping strips are used to support the clothing body into a predetermined shape; a cap body, which is detachably connected to the clothing body, a face mask is arranged on one side of the cap body, the edge of the face mask is fixedly connected to the cap body, and shaping strips are arranged on the cap body; gloves, which are symmetrically arranged at the cuff positions of the clothing body; foot covers, which are symmetrically arranged at the hem positions of the clothing body. By arranging a plurality of shaping strips on the clothing body to support the clothing body, the clothing body is spaced apart from the skin of the patient at a certain distance, and a cap body with a face mask and shaping strips is arranged to protect the head, and the gloves and foot covers are used to protect the hands and feet. The utility model can not only form a full-coverage protection for dengue fever patients, but also does not affect the free movement of the patients, can facilitate the activities of users while preventing the patients from being bitten by mosquitoes again, and realizes real-time protection.
[0074] In summary, the present utility model provides a mosquito-proof clothing and a protective device. The mosquito-proof clothing includes: a clothing body, on which a plurality of shaping strips are arranged at intervals, and the shaping strips are used to support the clothing body into a predetermined shape; a cap body, which is detachably connected to the clothing body, a face mask is arranged on one side of the cap body, the edge of the face mask is fixedly connected to the cap body, and shaping strips are arranged on the cap body; gloves, which are symmetrically arranged at the cuff positions of the clothing body; foot covers, which are symmetrically arranged at the hem positions of the clothing body. By arranging a plurality of shaping strips on the clothing body to support the clothing body, the clothing body is spaced apart from the skin of the patient at a certain distance, and a cap body with a face mask and shaping strips is arranged to protect the head, and the gloves and foot covers are used to protect the hands and feet. The utility model can not only form a full-coverage protection for dengue fever patients, but also does not affect the free movement of the patients, can facilitate the activities of users while preventing the patients from being bitten by mosquitoes again, and realizes real-time protection.
[0075] It should be understood that the application of the present utility model is not limited to the above examples. For those of ordinary skill in the art, improvements or transformations can be made according to the above description, and all such improvements and transformations should fall within the protection scope of the appended claims of the present utility model.
Claims
1. A mosquito-proof clothing, characterized in that: The anti-mosquito clothing comprises: A garment body, wherein a plurality of fixing strips are arranged at intervals on the garment body, and the fixing strips are used to support the garment body into a predetermined shape; A cap body, wherein the cap body is detachably connected to the garment body, a mask is provided on one side of the cap body, an edge of the mask is fixedly connected to the cap body, and the cap body is provided with the fixing strip; Gloves, the gloves are symmetrically arranged at the cuffs of the garment body; Foot covers are symmetrically arranged at the foot openings of the garment body.
2. The anti-mosquito clothing according to claim 1, characterized in that: The garment body comprises a first layer and a second layer, and a plurality of the fixing strips are fixedly arranged on the first layer; The first layer is fixedly connected to the edge of the second layer, and the size of the second layer is smaller than that of the first layer.
3. The anti-mosquito clothing according to claim 2, characterized in that: The first layer and the second layer are both gauze with mesh.
4. The anti-mosquito clothing according to claim 3, characterized in that: The mesh densities of the first layer and the second layer are different; Or the diameters of the meshes of the first layer and the second layer are different.
5. The anti-mosquito clothing according to claim 1, characterized in that: The garment body is provided with a plurality of zippers, and the plurality of zippers include: A first zipper, wherein the first zipper is symmetrically arranged on a portion of the garment body corresponding to an armpit; A second zipper, the second zipper is symmetrically arranged on the garment body at a position corresponding to the elbow fossa; a third zipper, the third zipper being symmetrically arranged on a portion of the garment body corresponding to the crotch; A fourth zipper, the fourth zipper being symmetrically arranged on a portion of the garment body corresponding to the calf; A fifth zipper is arranged on the garment body at a position corresponding to the center line of the chest and abdomen.
6. The anti-mosquito clothing according to claim 5, characterized in that: The first zipper is embedded in the garment body, and the first zipper is extended along the front side of the garment body to the back side of the garment body; The second zipper is continuously arranged around the elbow fossa of the garment body; The third zipper is continuously arranged around the crotch area of the garment body; The fourth zipper is embedded in the garment body and intersected with the trouser leg portion of the garment body; The fifth zipper is embedded in the garment body and extends along the front side of the garment body around a portion of the garment body corresponding to the crotch to the back side of the garment body.
7. The anti-mosquito clothing according to claim 1, characterized in that: In the solid strip on the garment body: The solid strips corresponding to the limbs of the garment are arranged in a ring shape; The solid strip corresponding to the chest and abdomen of the garment body is arranged along a predetermined arc; The fixing strip corresponding to the back part of the garment body is arranged along a semicircle and is fixedly connected to the fixing strip corresponding to the chest and abdomen part of the garment body.
8. The anti-mosquito clothing according to claim 7, characterized in that: The fixing strip is an elastic fixing strip, and the side edges of the fixing strip are chamfered and smoothly arranged.
9. The anti-mosquito clothing according to claim 1, characterized in that: Elastic parts are arranged on the garment body at positions corresponding to the cuffs and the hems, and the elastic parts are used to constrain the opening of the garment body.
10. A protective device, characterized in that: The protective device comprises the anti-mosquito clothing as described in any one of claims 1 to 9.