Benchmark aramid fiber driver glove

By designing multi-layer structure gloves, the thermal insulation and heat-resistant outer layer, tear-resistant layer, heat storage layer, antibacterial layer and hygroscopic heating layer, the existing cow scalp gloves are hard and lack heat resistance and antibacterial effects in low-temperature environments, achieving better insulation performance, cutting resistance and use comfort.

CN222967998UActive Publication Date: 2025-06-13NANTONG QIANGSHENG SAFETY PROTECTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422041952.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-06-13
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

The existing cow scalp gloves are hard in low temperature environments, lack heat resistance, anti-cutting and antibacterial effects, and the production process is not environmentally friendly, the price is high, and the service life is short.

Method used

A glove consisting of a heat-resistant outer layer, a heat-resistant inner layer, a tear-resistant layer, a heat-reserving layer, an antibacterial layer and a hygroscopic heating layer were designed, and the layers were knitted tightly by benchmarking aramid fibers, and the layers were connected using a binder made of polyacrylate.

Benefits of technology

It improves the thermal insulation and heat resistance of gloves, enhances anti-cutting performance, extends service life, reduces bacterial growth, improves moisture absorption and heat generation, and enhances the comfort of wearing gloves in cold weather.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222967998U_ABST
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Abstract

The utility model discloses a benchmarking aramid driver glove which comprises a glove body and a wrist area connected to the bottom of the glove body in a sewing mode and communicated with the glove body, anti-skid silica gel is arranged on the front face of the glove body, and the glove body is composed of a heat preservation and heat resistance outer layer, a heat preservation and heat resistance inner layer, an anti-tearing layer, a heat storage layer, an antibacterial layer and a moisture absorption and heating layer. The anti-skid effect of the glove in use is improved by arranging the anti-skid silica gel, the heat preservation and heat resistance effects of the glove are improved by arranging the heat preservation and heat resistance outer layer and the heat preservation and heat resistance inner layer, the glove has a certain anti-cutting effect, the heat storage effect of the glove is improved by arranging the heat storage layer, and the anti-bacterial layer is arranged, so that the anti-skid effect of the glove is improved. The antibacterial glove has the advantages that the antibacterial effect in the glove is improved, bacteria breeding during contact between the interior of the glove and a hand is reduced, the moisture absorption and heating effect of the glove is improved by arranging the moisture absorption and heating layer, and accordingly heat generated when a user wears the glove is increased.
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Description

Technical Field

[0001] The utility model relates to the technical field of gloves, in particular to an aramid driver glove for benchmarking. Background Technique

[0002] Cowhide gloves have the characteristics of good warmth retention and comfort. Such gloves are not only suitable for many labor protections, but also applicable to fields such as driving. At present, the vast majority of leather gloves on the market only have the function of warmth retention, and the warmth retention effect is relatively average. At the same time, they do not have the effects of heat resistance, cut resistance and antibacterial, and the leather gloves will become hard in low-temperature environments, seriously affecting the use effect. Moreover, in the production and processing of leather gloves, irregular leather needs to be cut, die-cut, blanked and sewn, which costs a lot of labor, and there are also deficiencies such as high price, non-environmental production process and falling scraps. Therefore, we provide an aramid driver glove for benchmarking. Content of the Utility Model

[0003] The purpose of the utility model is to provide an aramid driver glove for benchmarking to solve the problems raised in the above background technique.

[0004] To achieve the above purpose, the utility model provides the following technical solution: an aramid driver glove for benchmarking, including a glove body, and a wrist area sewn and connected to the bottom of the glove body and communicating with each other. The front of the glove body is provided with anti-slip silica gel. The glove body is composed of a heat-insulating and heat-resistant outer layer, a heat-insulating and heat-resistant inner layer, a tear-resistant layer, a heat storage layer, an antibacterial layer and a moisture-absorbing and heat-generating layer. The heat-insulating and heat-resistant inner layer is arranged on the inner wall of the heat-insulating and heat-resistant outer layer.

[0005] Preferably, the tear-resistant layer is arranged on the side of the heat-insulating and heat-resistant inner layer away from the heat-insulating and heat-resistant outer layer, the heat storage layer is arranged on the side of the tear-resistant layer away from the heat-insulating and heat-resistant inner layer, the antibacterial layer is arranged on the side of the heat storage layer away from the tear-resistant layer, and the moisture-absorbing and heat-generating layer is arranged on the side of the antibacterial layer away from the heat storage layer.

[0006] Preferably, the heat-insulating and heat-resistant outer layer, the heat-insulating and heat-resistant inner layer, the tear-resistant layer, the heat storage layer, the antibacterial layer and the moisture-absorbing and heat-generating layer are all adhesively connected through an adhesive, and the adhesive is made of polyacrylate.

[0007] Preferably, both the heat-insulating and heat-resistant outer layer and the heat-insulating and heat-resistant inner layer are tightly knitted through aramid fibers for benchmarking.

[0008] Preferably, the tear-resistant layer is made of nylon fiber, and the heat storage layer is made of seaweed fiber.

[0009] Preferably, the antibacterial layer is made of bamboo charcoal fiber, and the moisture-absorbing and heat-generating layer is made of heat-generating fiber.

[0010] Preferably, a restraint strap is sewn and connected to the wrist area, a hook surface of a magic tape is connected to the restraint strap, and a loop surface of a magic tape that is used in cooperation with the hook surface of the magic tape is connected to the wrist area at a position corresponding to the hook surface of the magic tape.

[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0012] By providing anti-slip silica gel, the anti-slip effect during the use of the gloves is improved. By providing a heat-insulating and heat-resistant outer layer and a heat-insulating and heat-resistant inner layer, the heat-insulating and heat-resistant effect of the gloves is improved, and the gloves have a certain anti-cutting effect. By providing an anti-tear layer, the strength of the gloves is improved, and the service life of the gloves is extended. By providing a heat storage layer, the heat storage effect of the gloves is improved, and the heat preservation performance of the gloves is further improved. By providing an antibacterial layer, the antibacterial effect inside the gloves is improved, and the growth of bacteria when the inside of the gloves comes into contact with the hands is reduced. By providing a moisture-absorbing and heat-generating layer, the moisture-absorbing and heat-generating effect of the gloves is improved, thereby increasing the heat generated when the user wears the gloves and improving the comfort of wearing the gloves in cold weather. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 is a schematic structural diagram of the front view of the present utility model;

[0014] Figure 2 is a structural sectional view of the top view of the glove body of the present utility model.

[0015] In the figure: 1 glove body, 2 wrist area, 100 anti-slip silica gel, 101 heat-insulating and heat-resistant outer layer, 102 heat-insulating and heat-resistant inner layer, 103 anti-tear layer, 104 heat storage layer, 105 antibacterial layer, 106 moisture-absorbing and heat-generating layer, 3 restraint strap, 4 hook surface of magic tape, 5 loop surface of magic tape. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0016] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0017] Please refer to Figure 1-2, A pair of aramid driver gloves, including a glove body 1, and a wrist area 2 sewn and connected to the bottom of the glove body 1 and communicating with each other. An anti-slip silicone 100 is provided on the front of the glove body 1. The glove body 1 is composed of a heat-insulating and heat-resistant outer layer 101, a heat-insulating and heat-resistant inner layer 102, a tear-resistant layer 103, a heat storage layer 104, an antibacterial layer 105, and a moisture-absorbing and heat-generating layer 106. The heat-insulating and heat-resistant inner layer 102 is arranged on the inner wall of the heat-insulating and heat-resistant outer layer 101. Both the heat-insulating and heat-resistant outer layer 101 and the heat-insulating and heat-resistant inner layer 102 are tightly knitted by aramid fibers. The tear-resistant layer 103 is arranged on the side of the heat-insulating and heat-resistant inner layer 102 away from the heat-insulating and heat-resistant outer layer 101. The tear-resistant layer 103 is made of nylon fibers. The heat storage layer 104 is arranged on the side of the tear-resistant layer 103 away from the heat-insulating and heat-resistant inner layer 102. The heat storage layer 104 is made of seaweed fibers. The antibacterial layer 105 is arranged on the side of the heat storage layer 104 away from the tear-resistant layer 103. The antibacterial layer 105 is made of bamboo charcoal fibers. The moisture-absorbing and heat-generating layer 106 is arranged on the side of the antibacterial layer 105 away from the heat storage layer 104. The moisture-absorbing and heat-generating layer 106 is made of heat-generating fibers. When the heat-generating fibers absorb moisture to the saturated state, the heat release will stop. After releasing moisture and then absorbing moisture again, heat can be generated repeatedly. The heat-generating fibers have heat generation, moisture retention, moisture regulation and antistatic properties, deodorization, antibacterial properties, and mildew resistance.

[0018] Furthermore, the heat-insulating and heat-resistant inner layer 102 can also be woven and brushed by cotton yarn or acrylic yarn.

[0019] Furthermore, the color of the glove can be one of light gray, light yellow, or yellow.

[0020] The heat-insulating and heat-resistant outer layer 101, the heat-insulating and heat-resistant inner layer 102, the tear-resistant layer 103, the heat storage layer 104, the antibacterial layer 105, and the moisture-absorbing and heat-generating layer 106 are all adhesively connected through an adhesive. The adhesive is made of polyacrylate. The adhesive can also be made of epoxy resin, EVA, and polyvinyl alcohol.

[0021] A restraint band 3 is sewn and connected to the wrist area 2. A hook surface of Velcro 4 is connected to the restraint band 3. A loop surface of Velcro 5 that cooperates with the hook surface of Velcro 4 is connected to the wrist area 2 at a position corresponding to the hook surface of Velcro 4.

[0022] Furthermore, by setting the restraint band 3, the hook surface of Velcro 4, and the loop surface of Velcro 5, the firmness of the user wearing the glove is improved, and the effect of the glove falling off the hand is avoided.

[0023] By setting the anti-slip silica gel 100, the anti-slip effect during glove use is improved. By setting the heat-insulating and heat-resistant outer layer 101 and the heat-insulating and heat-resistant inner layer 102, the heat-insulating and heat-resistant effect of the glove is improved, and the glove has a certain anti-cutting effect. By setting the anti-tear layer 103, the strength of the glove is improved, and the service life of the glove is extended. By setting the heat storage layer 104, the heat storage effect of the glove is improved, and the heat preservation performance of the glove is further improved. By setting the antibacterial layer 105, the antibacterial effect inside the glove is improved, and the growth of bacteria when the glove contacts the hand is reduced. By setting the moisture-absorbing and heat-generating layer 106, the moisture-absorbing and heat-generating effect of the glove is improved, thereby increasing the heat generated when the user wears the glove and improving the comfort of wearing the glove in cold weather.

[0024] During use, the user inserts the hand into the inside of the glove body 1, and then connects the hook surface 4 and the loop surface 5 of the magic tape on the restraint band 3, and the restraint band 3 fixes the wrist area 2.

[0025] In summary: For this benchmark aramid driver glove, by setting the heat-insulating and heat-resistant outer layer 101 and the heat-insulating and heat-resistant inner layer 102, by setting the anti-tear layer 103, by setting the heat storage layer 104, and by setting the moisture-absorbing and heat-generating layer 106, the problems raised in the above-mentioned background technology are solved.

[0026] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A standard aramid driver's glove, characterized by: The glove body (1) comprises a glove body (1), and a wrist area (2) sewn to the bottom of the glove body (1) and interconnected with each other, wherein the front of the glove body (1) is provided with anti-slip silica gel (100), and the glove body (1) comprises a heat-insulating and heat-resistant outer layer (101), a heat-insulating and heat-resistant inner layer (102), an anti-tear layer (103), a heat storage layer (104), an antibacterial layer (105) and a moisture-absorbing and heat-generating layer (106), and the heat-insulating and heat-resistant inner layer (102) is provided on the inner wall of the heat-insulating and heat-resistant outer layer (101).

2. The aramid driver gloves according to claim 1, characterized in that: The tear-resistant layer (103) is arranged on a side of the heat-insulating and heat-resistant inner layer (102) away from the heat-insulating and heat-resistant outer layer (101); the heat storage layer (104) is arranged on a side of the tear-resistant layer (103) away from the heat-insulating and heat-resistant inner layer (102); the antibacterial layer (105) is arranged on a side of the heat storage layer (104) away from the tear-resistant layer (103); and the moisture-absorbing and heat-generating layer (106) is arranged on a side of the antibacterial layer (105) away from the heat storage layer (104).

3. The aramid driver gloves according to claim 1, characterized in that: The heat-insulating and heat-resistant outer layer (101), the heat-insulating and heat-resistant inner layer (102), the tear-resistant layer (103), the heat-storage layer (104), the antibacterial layer (105) and the moisture-absorbing and heat-generating layer (106) are all bonded and connected by an adhesive, and the adhesive is made of polyacrylate.

4. The aramid driver gloves according to claim 1, characterized in that: The heat-insulating and heat-resistant outer layer (101) and the heat-insulating and heat-resistant inner layer (102) are both made by tightly knitting aligned aramid fibers.

5. The aramid driver gloves according to claim 1, characterized in that: The tear-resistant layer (103) is made of nylon fibers, and the heat storage layer (104) is made of seaweed fibers.

6. The aramid driver gloves according to claim 1, characterized in that: The antibacterial layer (105) is made of bamboo charcoal fibers, and the moisture-absorbing and heat-generating layer (106) is made of heat-generating fibers.

7. The aramid driver gloves according to claim 1, characterized in that: A binding belt (3) is sewn and connected to the wrist region (2), a Velcro hook surface (4) is connected to the binding belt (3), and a Velcro fleece surface (5) for use with the Velcro hook surface (4) is connected to the wrist region (2) and at a position corresponding to the Velcro hook surface (4).