glove
Patent Information
- Application Number
- DE202024103214
- Authority / Receiving Office
- DE · DE
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2024-06-14
- Publication Date
- 2025-10-30
- Estimated Expiration
- 2034-06-30
Smart Images

Figure 00000000_0000_ABST
Abstract
Description
[0001] The present invention relates to a glove, in particular a heat-resistant glove, preferably a grilling glove.
[0002] Various types of gloves are used in many different fields, such as medical, manual, and industrial applications. Besides fashionable gloves, which are primarily used in the private sector, special protective gloves are employed, differing depending on the application. For example, in the medical or chemical fields, gloves made of latex or nitrile are used to be impermeable to chemicals or biological substances. Such gloves generally offer the fingers a high degree of freedom of movement.
[0003] In addition, there are gloves designed specifically for mechanical protection. These gloves can use leather, aramid fibers, or blends containing steel fibers as their base material. Specifically, these might include gloves for gardening, manual labor, or even combat gloves.
[0004] Another important application is gloves that offer heat protection. These are used, for example, when working in high-temperature environments, during welding, or in the primary metallurgical industry. A common private use for heat-resistant gloves is grilling.
[0005] This involves the need to handle, lift, and transport objects such as a grill grate, grill pan, or similar items. If such an object has been on a grill for an extended period, it will reach high temperatures, making effective heat protection essential to prevent burns to the hand. Especially when carrying such hot objects, the weight of the object exerts significant pressure on the glove and, consequently, on the user's hand. In this case, the heat transfers to the hand relatively quickly.
[0006] Against this background, the object of the present invention is to provide an alternative glove which in particular avoids the aforementioned disadvantages and has particularly efficient heat protection.
[0007] This problem is solved in a glove, in particular a heat-resistant glove, preferably a grilling glove, by the fact that it is constructed in a multi-layered manner, at least in one section, and has an outer layer made of leather, wherein an additional heat protection layer made of leather is provided on the underside of the glove, which covers the palm of the user's hand when in use, and which covers the outer layer made of leather, in particular from the outside.
[0008] The invention is based on the fundamental idea of providing a glove with an outer layer of leather in a manner known per se. To improve heat resistance, an additional heat-resistant layer is provided, particularly in one area of the hand, preferably in an area encompassing the palm and fingers of the user. This reduces the thermal conductivity of the glove from the outside towards the user's hand, so that hot objects can be carried for extended periods without risk of burns.
[0009] Preferably, the leather heat protection layer is applied to the outer surface of the top layer. This means that it is visible from the outside. However, embodiments in which the additional leather heat protection layer is located on the inside are also conceivable. In this case, the outer leather top layer is visible throughout.
[0010] In a further embodiment, the heat protection layer can extend over the underside of a hand area, particularly the metacarpal and finger areas, of the glove. In other words, the heat protection layer can be provided only in one area of the user's palm. This embodiment is based on the consideration that loads are borne with this area of the hand, and thus a hot object is more likely to exert high pressure on the user's hand in this area. Therefore, such a heat protection layer in the metacarpal and finger areas of the glove is generally sufficient.
[0011] Specifically, the heat protection layer can be formed in one piece. This means that only one continuous segment is provided, which preferably extends over the underside of the palm and finger areas of the glove. Accordingly, the heat protection layer can have a contour comprising a palm area and several finger areas branching off from it, in particular five finger areas.
[0012] Alternatively, the heat protection layer can have several separate, in particular, mutually distinct sections, with the heat protection layer specifically comprising a metacarpal section and several finger sections. In this case, individual segments or sections of the heat protection layer are provided, which are accordingly also individually attached to the outer layer. One segment may be provided that covers a metacarpal area of the glove and ends at the front at the transition to the fingers. Furthermore, additional segments may be provided, each covering a finger.
[0013] Preferably, the heat protection layer is sewn to the underlying cover layer. This allows for the simple production of a multi-layered structure.
[0014] If the heat protection layer is made in one piece, it can be sewn to the underlying cover layer along its outer contour. This means that a continuous seam connecting the heat protection layer to the cover layer is provided around the entire outer contour. At the transition from the palm to the fingers, the heat protection layer can be sewn to the cover layer with a transverse seam. This means that an additional seam is provided precisely in the area of the transition to the fingers, where flexion frequently occurs. In the palm area, the heat protection layer can be sewn to the cover layer with at least one, and in particular two, cross-shaped diagonal seams.In this case, in addition to the circumferential seam along the outer contour of the heat protection layer, a corresponding diagonal seam or several diagonal seams are provided in order to prevent a surface detachment from the top layer and to achieve a stable connection.
[0015] If the heat protection layer has several separate, and especially distinct, sections, each section can be sewn to the underlying cover layer with a circumferential seam along its outer contour. It is also possible for a section covering the metacarpal area to be sewn to the cover layer with additional diagonal seams. The individual sections of the heat protection layer can lie flush against each other or be spaced apart. In particular, there can be a gap between a metacarpal section of the heat protection layer and the finger sections. This can facilitate finger flexion, thus improving the user's hand mobility.
[0016] The seams connecting the heat protection layer to the top layer can be made of, or incorporate, a heat-resistant yarn. In other words, such a yarn was used in the production of the seams. Preferably, the heat-resistant yarn contains or consists of Kevlar or aramid fibers. This allows the seams to withstand high thermal stress. This prevents the heat protection layer from separating from the top layer due to high thermal stress. The yarn can be visually matched to the top layer or the heat protection layer, for example, by being black or brown.
[0017] In a further embodiment, the heat protection layer can be provided that it is not bonded to the underlying cover layer, particularly not over its entire surface or by a material bond. This means that the connection is preferably made exclusively via seams, allowing the heat protection layer to lift away from the cover layer in the areas between the seams, effectively creating an air gap between the two layers. This further improves thermal insulation, as air is a particularly effective thermal insulator. Specifically, it can be provided that the heat protection layer is not (fully) bonded to the underlying cover layer.
[0018] The heat-resistant layer and / or the outer layer can be made of leather, in particular cowhide, preferably split cowhide. Such leather layers result in a robust design for the gloves and high mechanical resistance. Furthermore, leather has a high coefficient of friction, allowing for a secure grip even on heavy objects. Preferably, the heat-resistant layer and the outer layer are different colors. For example, the outer layer can be a lighter shade of brown and the heat-resistant layer a darker shade of brown. In this case, the area with special heat protection is also easily identifiable to the user.
[0019] Specifically, the heat protection layer and / or the top layer can have a thickness of at least 0.5 mm, in particular at least 0.8 mm, preferably at least 1 mm, and / or at most 2 mm, in particular at most 1.6 mm, preferably at most 1.2 mm.
[0020] The outer layer can extend over the entire length of the glove and / or over the top and bottom of the glove. This means that, apart from the area containing the heat-resistant layer, the entire rest of the glove has a uniform appearance made of the same material as the outer layer.
[0021] Specifically, the top layer can have an upper segment that covers the back of the hand during use and a lower segment that covers the palm during use. In other words, the top layer consists of two segments or sections that have an almost identical and / or mutually symmetrical outer contour. Preferably, the two segments are sewn together with an internal seam. The internal seam results in both an aesthetically pleasing appearance and good protection against mechanical stress at the seam.
[0022] The glove can further comprise an insulating layer arranged within the outer layer, extending in particular over a hand area of the glove, preferably at least over the metacarpal area and the fingers. In other words, a specific insulating layer with favorable thermal insulation properties can be provided. Similar to the outer layer, this layer can have an upper segment that covers the back of the hand during use and a lower segment that covers the palm during use. The two segments can be sewn together, particularly with an external seam. Accordingly, similar to the outer layer, the insulating layer can consist of two segments or sections that have essentially identical and / or mutually symmetrical outer contours and are sewn together along at least a portion of their outer contours.
[0023] In a specific embodiment, the insulation layer can consist of or contain Kevlar fabric. Such a Kevlar fabric is particularly suitable for thermal insulation and can be characterized by containing or consisting of aramid fibers. Preferably, the insulation layer consists of at least 70%, more preferably at least 80%, more preferably at least 90%, and more preferably at least 95%, 98%, 99%, or substantially all of aramid fibers.
[0024] According to a preferred embodiment, the insulation layer has an area-related weight of at least 100 g / m². 2 , in particular of at least 140 g / m² 2 , preferably of at least 170 g / m² 2 , and / or of no more than 300 g / m² 2 , in particular of no more than 250 g / m² 2 , preferably of no more than 180 g / m² 2Insulation layers designed in this way allow for good thermal insulation on the one hand, and sufficient tactile sensitivity in the user's fingers to grip even relatively delicate objects securely on the other.
[0025] Preferably, the insulating layer extends over a hand area, in particular over the metacarpal area and the fingers of the glove. If the glove also has an arm area designed to cover at least part of the forearm, in particular the entire forearm of a user, the insulating layer preferably does not extend over this arm area.
[0026] The glove can further comprise an inner textile layer, which is arranged particularly within the insulating layer and preferably extends at least over the palm and fingers of the glove. Specifically, the insulating layer can extend exclusively over the hand area of the glove and / or not over the arm area. Such an inner textile layer, which preferably comes into direct contact with the user's skin during use, can provide a high level of comfort.
[0027] Specifically, the inner textile layer can consist of or incorporate a nonwoven material. The inner textile layer can consist at least partially of cotton. It is also possible for the inner textile layer to consist at least partially of polyester. Specifically, the inner textile layer can consist of at least 50%, in particular at least 55%, preferably at least 60%, and / or at most 80%, in particular at most 75%, preferably at most 70%, of polyester. Preferably, the inner textile layer consists of at least 20%, in particular at least 25%, preferably at least 30%, and / or at most 50%, in particular at most 45%, preferably at most 40%, of cotton. The inner textile layer can consist exclusively of cotton and polyester, in particular taking into account the aforementioned proportions.
[0028] It is also possible that the inner textile layer consists exclusively, i.e., 100%, of cotton.
[0029] The weight per unit area of the inner textile layer can be at least 250 g / m². 2 , in particular at least 300 g / m² 2 , preferably at least 330 g / m² 2 , and / or a maximum of 500 g / m² 2 , in particular a maximum of 430 g / m² 2 , preferably no more than 380 g / m² 2 Such surface-related weights of a textile layer have proven to be particularly comfortable for the user.
[0030] Similar to the insulating layer and the outer layer, the inner textile layer can also have an upper segment that covers the back of the hand during use and a lower segment that covers the palm during use. Preferably, the two segments or sections are sewn together, particularly with an external seam. Such an external seam can improve comfort at the contact points with the hand. Preferably, the seam runs along part of the outer contour of the two segments.
[0031] The individual layers, in particular the inner textile layer, the insulation layer, and the top layer, can be sewn together at certain points or along certain lines. Preferably, the individual layers are not bonded together across their entire surface and / or in a fabric-bonded manner, nor are they glued together.
[0032] In a further embodiment, the glove can have an arm area designed to cover at least part of the forearm, and in particular the entire forearm, when in use. This embodiment is based on the consideration of not limiting the glove to protecting only the hand, but also to at least partially covering the forearm. It has been shown that when grilling and cooking, there is also a risk of touching the grill, for example, a fire bowl, with the forearm. For this reason, extended forearm protection in the corresponding arm area, which can also be referred to as the glove cuff and preferably connects to a hand area of the glove at the rear, provides effective protection of the forearm against burns.
[0033] The glove can have a total length of at least 35 cm, and preferably at least 40 cm. The total length is preferably measured from the front of the fingers to the back of the glove, i.e., to the opening. Such a total length ensures that, for most people, the arm area of the glove securely covers the entire forearm and thus protects against burns.
[0034] Preferably, the top layer extends over the entire hand and arm area of the glove. This allows for a uniform external appearance along the entire length of the glove.
[0035] The glove may have a cuff layer located within the outer layer in the arm area. In other words, a specific cuff layer may be situated within the outer layer, encompassing only the arm area. The cuff layer may be sewn to an inner textile layer and / or an insulating layer, extending specifically over a portion of the glove's hand, adjacent to the front of the glove's hand area.
[0036] The socket can have an upper segment, which covers the top of the forearm when in use, and a lower segment, which covers the underside of the forearm when in use. The two segments or sections can be connected to each other, particularly by external seams. These seams can be positioned opposite each other on the outer sides.
[0037] In a further embodiment, the upper layer can consist of a cotton fabric, in particular a cotton denim fabric. The upper layer can have a weight per unit area of at least 250 g / m². 2 , in particular of at least 300 g / m² 2 , preferably of at least 350 g / m² 2 , and / or of no more than 500 g / m² 2 , in particular of no more than 450 g / m² 2 , preferably of no more than 400 g / m² 2 , particularly preferably a weight per unit area of 370 g / m² 2 exhibit.
[0038] At its rear end, i.e. in the area of the rear opening of the glove, the shaft layer can be sewn all the way around to the outer cover layer, in particular with an internal seam.
[0039] The seams connecting the individual segments of the different layers to each other and / or to each other can be made of, or incorporate, a heat-resistant yarn. In other words, the seams were produced using such a yarn. Preferably, the heat-resistant yarn contains or consists of Kevlar or aramid fibers. This allows the seams to withstand high thermal stress. The yarn can be visually matched to the respective layers, for example, by being black or brown.
[0040] It may be designed so that the glove has no cuff in the arm area. It is also possible that the glove's open cross-section widens towards the back. This allows the glove to be quickly removed in an emergency.
[0041] Furthermore, a fastening tab can be provided, particularly at a rear end, preferably in the arm area of the glove, to allow the glove to be hung up. The fastening tab can be made of leather. In particular, the fastening tab can be made of the same material and / or in the same color as the outer layer.
[0042] In a further development, the glove can be designed as a five-finger glove.
[0043] For further details of the invention, reference is made to the dependent claims and to the following description of an exemplary embodiment with reference to the drawing. The drawing shows: Fig. 1 the upper side of a glove according to the invention; Fig. 2 the underside of the glove Fig. 1; Fig. 3. Take off the glove Fig. 1 and Fig. 2 in a cutaway perspective view; and Fig. 4. the layered construction of the glove from the Fig. 1 to 3.
[0044] The Fig. Figures 1 to 4 show a heat-resistant glove 1, which can be used as a grilling glove, according to the present invention. Specifically, the glove 1 is designed as a five-finger glove and has a front hand area 2, which surrounds the user's hand when in use, and a rear arm area 3, which is designed to cover at least part of the forearm, in particular the entire forearm, when in use. Fig. 2 is the arm area 3 and the hand area 2, separated by a dashed line.
[0045] Glove 1 has a multi-layered construction and an outer layer 4 that extends over the entire hand area 2 and the arm area 3 of glove 1. Specifically, the outer layer 4 consists of cowhide leather and has a thickness of 1.0 to 1.2 mm.
[0046] As in the Fig. 3 and Fig. As can be seen in Figure 4, the top layer comprises an upper segment 5, which covers the back of the hand when in use, and a lower segment 6, which covers the palm when in use. The two segments 5 and 6 have essentially identical contours, or are symmetrical to each other. An internal seam 7, which is located in the Fig. As can be seen in Figure 3, the two segments are sewn together. Specifically, the inner seam 7 extends around the entire outer contour of both segments 5 and 6, except, of course, for the rear opening for inserting a hand into the glove.
[0047] An additional heat-protective layer 8 made of leather is provided on the underside of the glove 1, which covers the palm of the user's hand during use. This layer covers the outermost layer 4. The exact contour of the heat-protective layer 8 is shown in the Fig. 2. This is formed in one piece and preferably extends over an underside of the hand area 2 of the glove 1, in particular over a metacarpal area and the fingers of the glove 1.
[0048] The heat protection layer 8 is sewn to the underlying cover layer 4. Specifically, a seam 9 is provided along the outer contour of the heat protection layer 8. Furthermore, the heat protection layer 8 is sewn to the cover layer 4 at the transition from the metacarpal area to the fingers with a transverse seam 10. In addition, the heat protection layer 8 is sewn to the underlying cover layer 4 in the metacarpal area with two cross-shaped diagonal seams 11. A fabric-bonded and / or surface-mounted connection between the heat protection layer 8 and the cover layer 4 is not provided, so that an air gap exists between the two layers 4 and 8, which has a thermally insulating effect.
[0049] Furthermore, the glove 1 has an insulating layer 12. This is arranged within the outer layer 4 and extends over the hand area 2 of the glove 1. Like the outer layer 4, the insulating layer 12 comprises an upper segment 13, which covers the back of the hand when in use, and a lower segment 14, which covers the palm when in use. The two segments 13 and 14 are joined by an external seam 15, which is located in the Fig. 3 are recognizable, sewn together.
[0050] Specifically, the insulation layer 12 consists of a Kevlar fabric with a weight per unit area of approximately 170-180 g / m². 2 .
[0051] Glove 1 further comprises an inner textile layer 16, which is arranged within the insulating layer 12 and extends over the hand area 2 of glove 1. The inner textile layer 16 consists of a nonwoven material composed of 65% polyester and 35% cotton. The nonwoven material has a basis weight of approximately 350 g / m². 2 .
[0052] Similar to the insulating layer 12, the inner textile layer 16 also has an upper segment 17, which covers the back of the hand when in use, and a lower segment 18, which covers the palm when in use. The two segments 17 and 18 are sewn together with an external seam 19.
[0053] The arm area 3 of glove 1 is designed differently than the hand area 2. Within the outer layer 4, which extends continuously over the arm area 3, a shaft layer 20 is arranged, which in this case is made of a cotton denim fabric with a weight per unit area of 370 g / m². 2 The shaft layer also comprises an upper segment 21, which covers the upper side of the user's forearm when in use, and a lower segment 22, which also covers the upper side of the user's forearm when in use. The two segments are connected to each other by external seams 23, which are arranged opposite each other. At the transition from the arm area 3 to the hand area 2, the shaft layer 20 is sewn to the insulation layer 12 and / or the inner textile layer 16, particularly around the perimeter.
[0054] The glove 1 further comprises a leather plate 24, which is attached to the outer layer 4 at the rear end of the arm area, specifically riveted to the outer layer 4, and displays the brand or type designation and / or the size of the glove. Furthermore, a fastening tab 25 is provided at the rear end of the arm area 3 for hanging the glove 1. The fastening tab 25 is connected to the outer layer 4.
[0055] Furthermore, the arm area 3 of the glove 1 is designed so that its cross-section widens continuously, particularly during use, to allow for quick removal of the glove in an emergency. For this reason, no cuff is provided on arm area 3 of the glove.
[0056] In particular, the heat-resistant layer 8, located on the underside of the hand area 2, allows the glove to be used for holding objects at high temperatures. It has been shown that the design of the glove 1 allows an object with a temperature of 250 °C to be held for over 25 seconds without it being perceived as uncomfortably hot. Reference symbol list 1 glove 2 Hand area 3 Arm area 4 Top layer 5 upper segment 6 lower segment 7. internal seam 8 Heat protection layer 9th seam 10 Cross seam 11 Diagonal seam 12 Insulation layer 13 upper segment 14 lower segment 15 external seam 16 inner textile layer 17 upper segment 18 lower segment 19 external seam 20 shaft position 21 upper segment 22 lower segment 23 external seam 24 leather plates 25 fastening tab
Claims
[1] Glove (1), in particular a heat-resistant glove, preferably a grilling glove, which is multi-layered and has an outer cover layer (4) made of leather, wherein an additional heat protection layer (8) made of leather is provided on an underside of the glove (1), which covers the palm of the user's hand when in use, and which covers the cover layer (4) made of leather, in particular from the outside. [2] Glove (1) according to claim 1, characterized by , that the heat protection layer (8) extends over an underside of a hand area (2), in particular the metacarpal area and the finger area, of the glove (1). [3] Glove (1) according to claim 1 or 2, characterized by , that the heat protection layer (8) is formed in one piece. [4] Glove (1) according to claim 1 or 2, characterized by, that the heat protection layer (8) has several separate, in particular separate sections, wherein the heat protection layer (8) has in particular a metacarpal section and several finger sections. [5] Glove (1) according to any of the preceding claims, characterized by , that the heat protection layer (8) is sewn to the underlying cover layer (4). [6] Glove (1) according to claim 5 and claim 3, characterized by , that the heat protection layer (8) is sewn along its outer contour to the underlying cover layer (4) and / or is sewn at the transition from the metacarpal area to the fingers with a transverse seam (10) and / or is sewn in the metacarpal area with at least one, in particular with two cross-shaped diagonal seams (11) to the cover layer (4). [7] Glove (1) according to claim 5 and claim 4, characterized by, that the individual sections of the heat protection layer (8) are each sewn to the underlying cover layer (4) by a circumferential seam (9) along the outer contour of the sections. [8] Glove (1) according to any of the preceding claims, characterized by , that the heat protection layer (8) is not bonded to the underlying cover layer (4) over a surface and / or in a materially bonded manner, in particular that it is not glued. [9] Glove (1) according to any of the preceding claims, characterized by that the heat protection layer (8) and / or the top layer (4) are made of leather, in particular cowhide, preferably split cowhide. [10] Glove (1) according to any of the preceding claims, characterized by , that the heat protection layer (8) and / or the cover layer (4) have a thickness of at least 0.5 mm, in particular at least 0.8 mm, preferably at least 1 mm, and / or at most 2 mm, in particular at most 1.6 mm, preferably at most 1.2 mm. [11] Glove (1) according to any of the preceding claims, characterized by , that the top layer (4) extends over the entire length of the glove (1) and / or over the top and bottom of the glove (1). [12] Glove (1) according to any of the preceding claims, characterized by , that the top layer (4) has an upper segment (5) which covers the back of the hand when in use, and a lower segment (6) which covers the palm of the hand when in use, wherein the two segments are sewn together in particular by an internal seam (7). [13] Glove (1) according to any of the preceding claims, characterized by that it has an insulating layer (12) which is arranged within the top layer (4) and extends at least in particular over a hand area (2), preferably over the metacarpal area and the fingers of the glove (1). [14] Glove (1) according to claim 13, characterized by, that the insulation layer (12) has an upper segment (13) which covers the back of the hand when in use, and a lower segment (14) which covers the palm of the hand when in use, wherein the two segments (13, 14) are sewn together by a seam (15) which is particularly on the outside. [15] Glove (1) according to claim 13 or 14, characterized by that the insulation layer (12) consists of or contains Kevlar fabric. [16] Glove (1) according to any one of claims 13 to 15, characterized by , that the insulation layer (12) has an area-related weight of at least 100 g / m² 2 , in particular of at least 140 g / m² 2 , preferably of at least 170 g / m² 2 , and / or of no more than 300 g / m² 2 , in particular of no more than 250 g / m² 2 , preferably of no more than 180 g / m² 2 exhibits. [17] Glove (1) according to any of the preceding claims, characterized bythat it has an inner textile layer (16) which is arranged in particular within the insulation layer (12) and / or extends in particular over a hand area (2), preferably at least over the metacarpal area and the fingers of the glove (1). [18] Glove (1) according to claim 17, characterized by that the inner textile layer (16) consists of or has a nonwoven material. [19] Glove (1) according to claim 17 or 18, characterized by , that the inner textile layer (16) has an upper segment (17) which covers the back of the hand when in use, and a lower segment (18) which covers the palm of the hand when in use, wherein the two segments (17, 18) are sewn together in particular by an external seam (19). [20] Glove (1) according to any one of claims 17 to 19, characterized by , that the inner textile layer (16) consists at least partially of cotton. [21] Glove (1) according to claim 19 or 20, characterized by , that the inner textile layer (16) consists at least partially of polyester. [22] Glove (1) according to claim 20 and claim 21, characterized by , that the inner textile layer (16) consists of at least 50%, in particular at least 55%, preferably at least 60%, and / or at most 80%, in particular at most 75%, preferably at most 70%, of polyester, and / or that the inner textile layer (16) consists of at least 20%, in particular at least 25%, preferably at least 30%, and / or at most 50%, in particular at most 45%, preferably at most 40%, of cotton. [23] Glove (1) according to any one of claims 17 to 22, characterized by that the weight per unit area of the inner textile layer is at least 250 g / m² 2 , in particular at least 300 g / m² 2 , preferably at least 330 g / m² 2 , and / or a maximum of 500 g / m² 2 , in particular a maximum of 430 g / m² 2, preferably no more than 380 g / m² 2 amounts. [24] Glove (1) according to any of the preceding claims, characterized by , that it has an arm area (3) which is designed to cover at least part of the forearm, in particular the entire forearm of a user, when in use. [25] Glove (1) according to claim 24, characterized by , that the top layer (4) extends over the entire hand and arm area (3) of the glove (1). [26] Glove (1) according to claim 24 or 25, characterized by , that the glove (1) has a shaft layer (20) which is arranged in the arm area (3) within the top layer (4). [27] Glove (1) according to claim 26, characterized by, that the shaft position (20) has an upper segment (21) which, when in use, covers the upper side of the forearm, and a lower segment (22) which, when in use, covers the underside of the forearm, wherein the two segments (21, 22) are connected to each other by seams, in particular on the outside. [28] Glove (1) according to claim 26 or 27, characterized by , that the shaft layer (20) consists of a cotton fabric, in particular a cotton denim fabric, and / or that the shaft layer (20) has a weight per unit area of at least 250 g / m² 2 , in particular of at least 300 g / m² 2 , preferably of at least 350 g / m² 2 , and / or of no more than 500 g / m² 2 , in particular of no more than 450 g / m² 2 , preferably of no more than 400 g / m² 2 , particularly preferably a weight per unit area of 370 g / m² 2 exhibits. [29] Glove (1) according to any one of claims 24 to 28, characterized by, that no cuff is formed in the arm area (3) of the glove (1). [30] Glove (1) according to any of the preceding claims, characterized by that it is designed as a five-fingered glove.
Citation Information
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