Cable descending glove

By incorporating a uniquely shaped abrasion-resistant reinforcing layer, anti-slip unit, and quick-release design into the rappelling gloves, the problem of imbalance between flexibility, abrasion resistance, and thermal insulation in existing rappelling gloves has been solved, enabling quick removal and efficient protection in emergency situations.

CN223667330UActive Publication Date: 2025-12-16CHINESE PEOPLES LIBERATION ARMY UNIT 32181
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Patent Information

Application Number
CN202422755630.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-12-16
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

Existing rappelling gloves struggle to balance flexibility and grip strength, as well as abrasion resistance and insulation, and are not easy to remove quickly in emergencies, posing a safety hazard.

Method used

A rappelling glove was designed, which uses a shaped abrasion-resistant reinforcing layer, anti-slip unit, elastic material and quick-release structure. It combines abrasion-resistant material and heat insulation material to improve abrasion resistance, heat insulation and flexibility, and has a quick-release design at the wrist.

Benefits of technology

It improves rappelling efficiency, enhances durability and protection, improves heat insulation and anti-slip properties, ensures quick glove removal in emergencies, reduces preparation time, and enhances safety and comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of gloves, and relates to a rope descending glove. Comprising a glove body, and the glove body comprises a thumb part, a four-finger part, a palm part, a hand back part and a wrist part; a special-shaped wear-resistant reinforcing layer is arranged on the palm part, and a thumb wear-resistant reinforcing layer is arranged on the thumb part; and the wrist part is provided with a wrist elastic structure. The gloves are allowed to be quickly taken off after the cable is dropped, so that a combat state is quickly entered. According to the design, compared with traditional closed gloves, the preparation time before the weapon is operated on the ground is remarkably shortened.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to glove technical field relates to a rope descending glove. BACKGROUND

[0002] The rope descending glove is mainly used for machine descending and climbing scene, and its core function is to provide protection for the hand, which requires the glove to ensure the safety of the hand under various complex conditions. Therefore, the rope descending glove needs to have key characteristics such as flame retardance and wear resistance to cope with the damage to the hand caused by high-speed rope friction, high-temperature environment, etc.

[0003] However, the current existing rope descending glove products have obvious performance imbalance problems. On the one hand, some gloves have good temperature insulation effect and wear resistance, but the flexibility and gripping force are poor, which limits the operation precision of the user during machine descending and climbing and reduces the convenience. On the other hand, some gloves perform well in flexibility and gripping force, but the temperature insulation effect and wear resistance are insufficient, and the hand cannot be continuously and stably protected, and the temperature change and rope friction in the complex high-altitude environment may cause damage to the hand at any time. This insufficient protection may cause serious safety hazards. That is to say, the existing rope descending glove pays too much attention to protection, which may make the glove heavy and affect the portability and flexibility; and too much pursuit of portability and flexibility may weaken the protection performance. In addition, in an emergency, the existing rope descending glove is not convenient to quickly remove from the wrist, which may delay the action opportunity and may bring danger to the user. SUMMARY

[0004] The utility model aims at overcoming the above-mentioned prior art shortcoming, proposes a rope descending glove.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme:

[0006] A rope descending glove, comprising a glove body, the glove body comprising a thumb part, a four-finger part, a palm part, a back part and a wrist part; a special-shaped wear-resistant reinforcing layer is arranged on the palm part, and a thumb wear-resistant reinforcing layer is arranged on the thumb part.

[0007] Further, the special-shaped wear-resistant reinforcing layer comprises a proximal finger end palm area reinforcing layer and a proximal wrist end palm area reinforcing layer, the proximal wrist end palm area reinforcing layer comprises a first reinforcing unit and a second reinforcing unit, one end of the first reinforcing unit and the second reinforcing unit is connected with the lower end of the proximal finger end palm area reinforcing layer, the other end of the first reinforcing unit and the second reinforcing unit is connected with the wrist part, and the first reinforcing unit and the second reinforcing unit have a triangular interval therebetween.

[0008] The thumb wear-resistant reinforcing layer comprises a third reinforcing unit and a fourth reinforcing unit, the third reinforcing unit is arranged at the first joint of the thumb part, the fourth reinforcing unit is arranged at the second joint of the thumb part, one end of the third reinforcing unit and the fourth reinforcing unit is connected to the joint of the palm part and the back part, the other end of the third reinforcing unit is connected to the proximal end of the palm area reinforcing layer, and the other end of the fourth reinforcing unit is connected to the joint of the inner side and the outer side of the thumb part.

[0009] Further, the proximal end of the palm area reinforcing layer comprises a fifth reinforcing unit and a sixth reinforcing unit, the upper end of the fifth reinforcing unit is located at the base of the four-finger part, and the left and right ends of the fifth reinforcing unit are connected to the back part; one end of the sixth reinforcing unit is connected to the upper end of the fifth reinforcing unit, the upper end of the sixth reinforcing unit extends to the second joint of the index finger part, and the side close to the wrist joint of the sixth reinforcing unit extends to the back part of the index finger.

[0010] Further, the upper end of the fifth reinforcing unit is stacked with a slip stop unit, the shape of the slip stop unit is "V" shape, the opening end of the "V" shape is located below the little finger part, and the tip of the "V" shape is located below the index finger part; the surface of the slip stop unit has anti-slip texture.

[0011] Further, the second joints of the middle finger part, the ring finger part and the little finger part in the four-finger part are provided with elastic materials.

[0012] Further, the glove body is a half-finger glove or a full-finger glove.

[0013] Further, each finger of the four-finger part is provided with a finger wear-resistant reinforcing layer, the special-shaped wear-resistant reinforcing layer comprises a first palm area and a second palm area, the first palm area is located below the index finger part, the middle finger part and the ring finger part, the upper end of the first palm area is connected to the middle finger part and the ring finger part, the edge line of the first palm area is a first joint edge, and the first joint edge extends obliquely from the ring finger part to below the wrist joint; the wrist joint wear-resistant reinforcing layer is connected to the first palm area, and the wrist joint wear-resistant reinforcing layer is arranged on the inner side of the thumb part.

[0014] Further, the upper end of the second palm area is connected to the little finger part, the second joint edge of the second palm area is parallel to the first joint edge, the second joint edge extends to below the joint of the index finger part and the middle finger part, the third joint edge of the second palm area extends obliquely to the midpoint of the upper edge of the wrist part, and the fourth joint edge of the second palm area extends obliquely to the palm side; a first reinforcing layer gap is arranged below the little finger part, and the first reinforcing layer gap is parallel to the first joint edge.

[0015] Further, a palm center shock-absorbing pad is arranged at a position close to the wrist in the second palm center area, the palm center shock-absorbing pad is parallel to the first seam edge, and a triangular shock-absorbing pad is arranged on the seam edge close to the wrist of the palm center shock-absorbing pad; the back of the hand is provided with a fist protection shell, and the knuckles are provided with knuckle protection shells.

[0016] Further, the right index finger part of the glove body is provided with a right index finger cutout.

[0017] Compared with the prior art, the utility model has the following beneficial effects:

[0018] 1. Improve the efficiency of rope descent: allow the gloves to be quickly removed after rope descent, so as to quickly enter the combat state, significantly reduce the preparation time before operating weapons on the ground.

[0019] 2. Enhance durability and protection performance: the material selection and structural design of the rope descent gloves focus on improving wear resistance and protection performance. Combined with wear-resistant materials, it can resist the wear of the rope during high-speed sliding descent and protect the hands from high-temperature injury.

[0020] 3. Improve heat insulation and anti-slip performance: the rope descent gloves also improve heat insulation and anti-slip performance. By setting up a special-shaped wear-resistant reinforcing layer, heat transfer during rope descent can be reduced and holding stability can be improved, thereby improving safety and comfort.

[0021] 4. Quick on-off design: in order to meet the quick response needs in emergency situations, the design of the rope descent gloves considers the convenience of quick on-off, which can be easily taken off and hung on the wrist, without affecting the operation of weapons, and reducing the risk of losing gloves in a tense environment. BRIEF DESCRIPTION OF DRAWINGS

[0022] The drawings incorporated into the specification and forming part of the specification, together with the specification, serve to explain the principles of the utility model.

[0023] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced below, and obviously, other drawings can also be obtained by those skilled in the art without creative labor.

[0024] Figure 1 It is a front view of the full-finger rope descent glove of the utility model embodiment 1.

[0025] Figure 2 It is a rear view of the full-finger rope descent glove of the utility model embodiment 1.

[0026] Figure 3This is a front view of the half-finger rappelling glove of Embodiment 1 of this utility model;

[0027] Figure 4 This is a rear view of the half-finger rappelling glove of Embodiment 1 of this utility model;

[0028] Figure 5 This is a front view of the rappelling glove of Embodiment 2 of this utility model;

[0029] Figure 6 This is a front view of the rappelling glove of Embodiment 2 of this utility model.

[0030] Wherein: 1 is the four-finger part; 1-1 is the finger wear-resistant reinforcement layer; 1-11 is the right index finger cutout; 2 is the palm part; 3 is the wrist part; 4 is the elastic material; 5 is the anti-slip unit; 6 is the irregular wear-resistant reinforcement layer; 6-1 is the palm area reinforcement layer near the wrist; 6-11 is the first reinforcement unit; 6-12 is the second reinforcement unit; 6-2 is the palm area reinforcement layer near the fingertips; 6-21 is the sixth reinforcement unit; 6-22 is the fifth reinforcement unit; 6-3 is the first palm area; 6-31 is the first seam edge; 6-4 is the second palm area; 6-41 is the palm shock-absorbing pad; 6-42 is the triangular shock-absorbing pad; 6-43 is the second seam edge; 6-5 is the wear-resistant reinforcement layer at the base of the thumb; 9 is the back of the hand part; 10 is the wrist elastic structure; 11-1 is the third reinforcement unit; 11-2 is the fourth reinforcement unit. 12 is the breathable layer on the back of the hand; 13 is the protective shell for the fist; 14 is the protective shell for the finger joints; 15 is the protective layer for the palm. Detailed Implementation

[0031] Exemplary embodiments will now be described in detail. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this invention. Rather, they are merely examples of apparatuses consistent with some aspects of this invention as detailed in the appended claims.

[0032] Example 1

[0033] like Figures 1-4 As shown, a rappelling glove includes a glove body comprising a thumb portion, four-finger portions 1, a palm portion 2, a back of hand portion 9, and a wrist portion 3. The palm portion 2 is provided with a shaped abrasion-resistant reinforcing layer 6, and the thumb portion is provided with a thumb abrasion-resistant reinforcing layer 11. The wrist portion 3 is provided with a wrist elastic structure 10. Utilizing ergonomic principles, areas with high wear are specifically reinforced for enhanced abrasion resistance, thereby improving protection.

[0034] The irregular wear-resistant reinforcing layer 6 includes a palmar reinforcing layer 6-2 near the fingertips and a palmar reinforcing layer 6-1 near the wrist.

[0035] The palm part uses a heat insulation material, the palm part 2 is provided with a special-shaped wear-resistant reinforcing layer 6, the surface of the special-shaped wear-resistant reinforcing layer 6 is in a patterned appearance or uneven granular shape, wear-resistant leather (real leather) is used at the location of the thumb joint of the palm part 2, the real leather glove leather is in a patterned appearance or uneven granular shape, a protective pad is arranged on the outside of the connection between the palm and the back of the hand, the back of the hand uses breathable and elastic fabric, such as superfine fiber; the wrist part is provided with an adjusting loop, the adjusting loop is a fastening belt adjusting loop, designed with a nylon buckle, and the adjusting loop is made of meta-aramid elastic knitted fabric.

[0036] Wear-resistant material is used at the location of the thumb joint to enhance durability; the side of the palm part 2 is provided with a palmar protective pad 8, and the back of the hand part 9 uses elastic and breathable superfine fiber, and the back of the hand part 9 is provided with a back of the hand breathable layer 12 to ensure comfortable flexibility in use.

[0037] The design goal of the rope descending glove is to provide necessary hand protection when performing high-altitude rope descending tasks. The glove must be able to resist the wear and tear of the rope on the hand during high-speed descent, while protecting the hand from high-temperature environments. Balancing the lightness, flexibility and sufficient protection performance of the glove, and ensuring that the glove can be quickly removed from the wrist in an emergency to facilitate rapid action are the focus and difficulty of product design.

[0038] Through the arrangement of the special-shaped wear-resistant reinforcing layer 6, good heat insulation effect and friction resistance are achieved, and flexibility and gripping force are also achieved. The palm and finger positions are the key contact surfaces for holding the rope and are prone to wear and tear, so wear-resistant material is added for reinforcement during design, such as using real cow leather to strengthen. The palm wear-resistant area (special-shaped wear-resistant reinforcing layer 6) is reinforced with cow leather, and the middle lining is reinforced with aramid heat insulation paste to prevent heat burns caused by friction. The palm and finger parts of the glove are designed with uneven textures or particles to improve slip resistance. The palm part 2 is provided with a palm protective layer.

[0039] Further, the special-shaped wear-resistant reinforcing layer 6 includes a proximal finger end palm area reinforcing layer 6-2 and a proximal wrist end palm area reinforcing layer 6-1, the proximal wrist end palm area reinforcing layer 6-1 includes a first reinforcing unit 6-11 and a second reinforcing unit 6-12, one end of the first reinforcing unit 6-11 and the second reinforcing unit 6-12 is connected to the lower end of the proximal finger end palm area reinforcing layer 6-2, the other end of the first reinforcing unit 6-11 and the second reinforcing unit 6-12 is connected to the wrist part 3, and the first reinforcing unit 6-11 and the second reinforcing unit 6-12 have a triangular space therebetween. The special-shaped wear-resistant reinforcing layer 6 can use aramid heat insulation felt cloth; it can also be made of double-layer cow leather, which is very strong and can withstand various friction and impact during rope descending. The double-layer cow leather can increase softness to better grip the rope, while effectively insulating the heat generated during rope descending.

[0040] Further, the near-end palm area reinforcing layer 6-2 comprises a fifth reinforcing unit 6-22 and a sixth reinforcing unit 6-21, the upper end of the fifth reinforcing unit 6-22 is located at the base of the four-finger part 1, and the left and right ends of the fifth reinforcing unit 6-22 are connected to the back part 9; one end of the sixth reinforcing unit 6-21 is connected to the upper end of the fifth reinforcing unit 6-22, and the upper end of the sixth reinforcing unit 6-21 extends to the second joint of the index finger part, and the side near the wrist of the sixth reinforcing unit 6-21 extends to the dorsal part of the index finger.

[0041] Further, the upper layer of the fifth reinforcing unit 6-22 is laminated with a slip-stop unit 5, the shape of the slip-stop unit 5 is “V” shape, the open end of the “V” shape is located below the little finger part, and the tip of the “V” shape is located below the index finger part. The surface of the slip-stop unit 5 has anti-slip texture, and the slip-stop unit 5 can also absorb and disperse these vibrations, reducing the impact on the joints and muscles of the hand, thereby reducing fatigue and discomfort. The slip-stop unit 5 can help maintain the stability of the hand, especially when handling rough or uneven surfaces, avoiding slipping or losing grip due to vibrations.

[0042] Further, the material of the slip-stop unit 5 comprises 1414 para-aramid woven cloth and flame-retardant wear-resistant slip-stop leather.

[0043] The slip-stop unit 5 at the palm and finger connection of the four-finger part 1 uses 1414 para-aramid woven cloth and flame-retardant wear-resistant slip-stop leather, the 1414 para-aramid woven cloth is below, and the flame-retardant wear-resistant slip-stop leather is above, which are sewn on the special-shaped wear-resistant reinforcing layer 6, improving durability and protection, and at the same time, the surface is treated with embossing process, increasing the water-resistant anti-slip function, preventing the hand from slipping off the contacted object.

[0044] Further, the thumb wear-resistant reinforcing layer 11 comprises a third reinforcing unit 11-1 and a fourth reinforcing unit 11-2, the third reinforcing unit 11-1 is arranged at the first joint of the thumb part, the fourth reinforcing unit 11-2 is arranged at the second joint of the thumb part, one end of the third reinforcing unit 11-1 and the fourth reinforcing unit 11-2 is connected to the sewn part of the palm part 2 and the back part 9, the other end of the third reinforcing unit 11-1 is connected to the near-end palm area reinforcing layer 6-2, and the other end of the fourth reinforcing unit 11-2 is connected to the sewn part of the inner side and the outer side of the thumb part.

[0045] Further, the second joints of the middle finger part, the ring finger part and the little finger part in the four-finger part 1 are made of elastic material 4. Elastic material is used at the joints of the middle finger, the ring finger and the little finger of the four-finger part 1 to ensure that the glove provides protection while not limiting the natural movement of the hand. The elastic material at the joint part uses thermoplastic elastomer (TPE) spandex, spandex, lycra, and silicone to provide flexible freedom.

[0046] Further, the glove body is a half-finger glove or a full-finger glove.

[0047] Further, the material of the special-shaped wear-resistant reinforcing layer 6 is aramid thermal insulation felt cloth.

[0048] The palm part 2 is provided with a special-shaped wear-resistant reinforcing layer 6, which is made of aramid thermal insulation felt cloth, which improves the heat resistance and protection, and the surface is treated by embossing process, which increases the water-resistant anti-skid function, prevents the hand from slipping with the contacted object, and improves the holding force.

[0049] Further, the adjusting loop is designed as a magic tape. The wrist part 3 is provided with an adjusting loop designed as a magic tape, and the buckle is located on the inner side of the arm. The tightness can be adjusted according to the use requirement, and the wrist opening cloth uses interval aramid elastic knitted cloth.

[0050] Embodiment 2

[0051] The difference between this embodiment and embodiment 1 is that, as shown in Figures 5-6 A rope descent protective glove, comprising a glove body, the glove body comprising a thumb part, a four-finger part 1, a palm part 2, a back part 9 and a wrist part 3; the palm part 2 is provided with a special-shaped wear-resistant reinforcing layer 6, and the web of the thumb part is provided with a web wear-resistant reinforcing layer 6-5; the special-shaped wear-resistant reinforcing layer 6 comprises a first palm center area 6-3 and a second palm center area 6-4. According to the human-machine efficiency principle, the wear-resistant reinforcing layer is strengthened in the area with high wear degree, and the protection is improved; the first palm center area 6-3 and the second palm center area 6-4 increase aramid thermal insulation felt cloth, which plays a protective role in the heat generated by friction during rope descent.

[0052] The four-finger part 1 is provided with a finger wear-resistant reinforcing layer 1 on each finger, the special-shaped wear-resistant reinforcing layer 6 comprises a first palm center area 6-3 and a second palm center area 6-4, the first palm center area 6-3 is located below the index finger part, the middle finger part and the ring finger part, the upper end of the first palm center area 6-3 is connected with the middle finger part and the ring finger part, the edge line of the first palm center area 6-3 is a first sewing edge 6-31, the first sewing edge 6-31 extends obliquely from the ring finger part to below the web, the web wear-resistant reinforcing layer is connected with the first palm center area 6-3, and the web wear-resistant reinforcing layer is located on the inner side of the thumb part.

[0053] A kind of wear-resistant heat-insulating type rope descent gloves, glove wear resistance and heat insulation function are given by multilayer structure;The gripping performance of glove is improved by palm and finger uneven texture;Rope descent gloves mainly have wrist elastic structure 10, back breathable layer 12, finger joint protective shell 14 and fist protective shell 13, palm shock pad 6-41, special-shaped wear-resistant reinforcing layer 6, palm protective layer 15, finger wear-resistant reinforcing layer 1-1.

[0054] In addition, the back breathable layer 12 adopts 1414 aramid elastic mesh structure knitted fabric, which has flame resistance and air permeability, so that the heat generated during rope descent can be quickly dissipated, keeping the hands dry and comfortable.

[0055] Design features: the structural features of rope descent gloves mainly include finger-to-finger arc-shaped tight hand design, material selection, reinforcing pad setting and elastic adjustment, etc.

[0056] Finger-to-finger arc-shaped tight hand design: this design makes the glove match the three-dimensional shape and structure of the human hand, facilitating quick putting on and taking off, and avoiding interference with the inner glove.

[0057] Material selection: the first palm area 6-3 and the second palm area 6-4 of the glove body usually adopt superfine fiber glove suede as the base, which has good wear resistance and comfort. The side strip on the thumb side of the glove body is sewn with high-wear-resistant non-slip cloth, which is made of nylon, para-aramid or spandex blended fabric coated with black PU glue on the surface, and has excellent wear resistance and non-slip property.

[0058] Reinforcing pad setting: a fingertip reinforcing pad will be sewn at the fingertip part of the back of the palm body to enhance the protection performance of the glove. At the same time, the fingertip reinforcing pad is made of high-wear-resistant non-slip cloth and aramid fireproof felt composite material, which gives the glove excellent wear resistance, non-slip and heat insulation functions.

[0059] Elastic adjustment: a non-slip elastic wrist elastic structure 10 is sewn on the back of the wrist part 3, which facilitates the adjustment of the tightness of the glove, making the glove wear more reliable. In addition, a carrying strap is provided at the outer end of the wrist part, which is hooked by a quick hook to carry and store the rope descent combat gloves.

[0060] Further, the finger wear-resistant reinforcing layer 1-1 is provided on each finger of the four-finger part 1.

[0061] Further, the first palm area 6-3 is located below the index finger part, the middle finger part and the ring finger part, the upper end of the first palm area 6-3 is connected with the middle finger part and the ring finger part, and the edge line of the first palm area 6-3 is a first sewing edge 6-31 which is obliquely extended from the ring finger part to below the chin.

[0062] Further, the first palm area 6-3 is located below the index finger part, the middle finger part and the ring finger part, the upper end of the first palm area 6-3 is connected with the middle finger part and the ring finger part, and the edge line of the first palm area 6-3 is a first sewing edge 6-31 which is obliquely extended from the ring finger part to below the chin.

[0063] Further, the upper end of the second palm area 6-4 is connected with the little finger part, the second sewing edge 6-43 of the second palm area 6-4 is parallel to the first sewing edge 6-31, the second sewing edge 6-43 is extended to below the finger gap of the index finger part and the middle finger part, the third sewing edge of the second palm area 6-4 is obliquely extended to the midpoint of the upper edge of the wrist part 3, and the fourth sewing edge of the second palm area 6-4 is obliquely extended to the palm side.

[0064] Further, the first palm area 6-3 is located below the index finger part, the middle finger part and the ring finger part, the upper end of the first palm area 6-3 is connected with the middle finger part and the ring finger part, and the edge line of the first palm area 6-3 is a first sewing edge 6-31 which is obliquely extended from the ring finger part to below the chin.

[0065] Further, the palm shock-absorbing pad 6-41 is arranged in the second palm area 6-4 and close to the wrist, the palm shock-absorbing pad 6-41 is parallel to the first sewing edge 6-31, the triangular shock-absorbing pad 6-42 is arranged on the sewing edge close to the wrist of the palm shock-absorbing pad 6-41, the back of the hand part 9 is provided with a fist protection shell, and the knuckles are provided with knuckle protection shells. The shock-absorbing pad 6-41 can absorb and disperse the vibration from the rope, equipment and environment, reduce the impact on the joints and muscles of the hand, and thus reduce fatigue and discomfort.

[0066] The sewing lines used in the first sewing edge 6-31 and the second sewing edge 6-43 are Kevlar fireproof lines which have high melting point, are not broken, and provide more safety (28D).

[0067] Further, the right index finger cutout 1-11 is arranged on the right index finger part of the glove body.

[0068] Further, the back of the hand part 9 is provided with a fist protection shell 13 and a knuckle protection shell 14. The fist protection shell 13 and the knuckle protection shell 14 are combined by four layers of materials, and the materials are wear-resistant knitted fabric, 0.5mm-thick flame-retardant polycarbonate sheet, 0.25mm-thick carbon fiber plate and 0.25mm-thick polycarbonate sheet from outside to inside. The outside wear-resistant knitted fabric improves the overall wear resistance of the glove, prolongs the service life of the glove and improves the durability. The flame-retardant polycarbonate sheet has excellent impact resistance and dimensional stability; it also has good performance guarantee at high temperature; it is not affected by the environment such as sunlight and rain; and it has a certain flame-retardant effect, and the flame-retardant can reach V-2 level. The carbon fiber plate has a higher elastic modulus than steel, and the mass is only 1 / 5 of that of steel, which is the best choice for improving the tensile strength and absorbing and dispersing impact force of the wear-resistant and heat-insulating single soldier rope descending glove.

[0069] Further, the material of the special-shaped wear-resistant reinforcing layer 6 adopts 1414 para-aramid dense woven fabric and flame-retardant wear-resistant non-slip leather. The special-shaped wear-resistant reinforcing layer 6 adopts 1414 para-aramid dense woven fabric and flame-retardant wear-resistant non-slip leather, has a high temperature resistance of 500℃ and good heat insulation performance; the reinforcing part adopts a genuine leather glove, which has excellent wear resistance. The palm and finger parts of the glove should be designed with anti-skid texture to increase the holding force of the rope and reduce the sliding.

[0070] Weight design: para-aramid knitted fabric 300g / m 2 , meta-aramid elastic knitted fabric (wrist opening cloth of the wrist part 3) 170g / m 2 , genuine leather glove thickness 1.0mm, flame-retardant wear-resistant non-slip leather thickness 0.07mm, high-strength sewing thread 500D, aramid heat-insulating felt cloth 100g / m 2 , the protection shell is combined by four layers of materials, and the materials are wear-resistant knitted fabric, 0.5mm-thick flame-retardant polycarbonate sheet, 0.25mm-thick carbon fiber plate and 0.25mm-thick polycarbonate sheet from outside to inside. The weight of all materials is ≤150g per pair. It is light and flexible, and increases the attack in combat.

[0071] The above only describes the specific implementation of the present application, so that those skilled in the art can understand or implement the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application.

[0072] It should be understood that the present application is not limited to the above described and can be variously modified and changed without departing from the scope thereof. The scope of the present application is only limited by the appended claims.

Claims

1. A corded glove characterized in that, The glove body comprises a thumb part, a four-finger part (1), a palm part (2), a backhand part (9) and a wrist part (3); a special-shaped wear-resistant reinforcing layer (6) is arranged on the palm part (2), and a wear-resistant reinforcing layer (11) is arranged on the thumb part; The special-shaped wear-resistant reinforcing layer (6) comprises a proximal finger end palm area reinforcing layer (6-2) and a proximal wrist end palm area reinforcing layer (6-1), the proximal wrist end palm area reinforcing layer (6-1) comprises a first reinforcing unit (6-11) and a second reinforcing unit (6-12), one end of the first reinforcing unit (6-11) and the second reinforcing unit (6-12) is connected to the lower end of the proximal finger end palm area reinforcing layer (6-2), the other end of the first reinforcing unit (6-11) and the second reinforcing unit (6-12) is connected to the wrist part (3), and a triangular space is formed between the first reinforcing unit (6-11) and the second reinforcing unit (6-12); The wear-resistant reinforcing layer (11) on the thumb part comprises a third reinforcing unit (11-1) and a fourth reinforcing unit (11-2), the third reinforcing unit (11-1) is arranged at the first joint of the thumb part, the fourth reinforcing unit (11-2) is arranged at the second joint of the thumb part, one end of the third reinforcing unit (11-1) and the fourth reinforcing unit (11-2) is connected to the joint of the palm part (2) and the backhand part (9), the other end of the third reinforcing unit (11-1) is connected to the proximal finger end palm area reinforcing layer (6-2), and the other end of the fourth reinforcing unit (11-2) is connected to the joint of the inner side and the outer side of the thumb part. The proximal finger end palm area reinforcing layer (6-2) comprises a fifth reinforcing unit (6-22) and a sixth reinforcing unit (6-21), the upper end of the fifth reinforcing unit (6-22) is located at the root of the four-finger part (1), and the left and right ends of the fifth reinforcing unit (6-22) are connected to the backhand part (9); one end of the sixth reinforcing unit (6-21) is connected to the upper end of the fifth reinforcing unit (6-22), the upper end of the sixth reinforcing unit (6-21) extends to the second joint of the index finger part, and the side of the sixth reinforcing unit (6-21) near the hypothenar extends to the back part of the index finger.

2. A cord glove according to claim 1, wherein A slip stop unit is stacked above the fifth reinforcing unit (6-22), the slip stop unit is in the shape of a "V", the opening end of the "V" is located below the little finger part, and the tip of the "V" is located below the index finger part; the surface of the slip stop unit (5) has an anti-slip texture.

3. A cord glove according to claim 1, wherein Elastic materials (4) are arranged at the second joints of the middle finger part, the ring finger part and the little finger part in the four-finger part (1).

4. A cord glove according to claim 1, wherein The glove body is a half-finger glove or a full-finger glove.