A sports four-finger glove

By designing the anti-slip layer and buffer layer of the honeycomb point array structure on the sporty four-finger gloves, the problems of low utilization of anti-slip layer materials and poor anti-slip effect under wet and slippery conditions in the prior art are solved, better anti-slip performance and stress uniformity are achieved, and key parts of the fingers and palms are protected.

CN115530464BActive Publication Date: 2025-08-01YANGZHOU AOLIKES SPORTS GOODS CO LTD
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Patent Information

Application Number
CN202211410912.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-11
Publication Date
2025-08-01
Estimated Expiration
2042-11-11

AI Technical Summary

Technical Problem

The anti-slip layer material of existing sports four-finger gloves is low in utilization and has a reduced anti-slip effect under wet and slippery conditions, making it impossible to effectively protect key parts of fingers and palms.

Method used

A sports four-finger glove is designed, using a honeycomb dot array structure, and anti-slip layers of different heights are set at the base of the finger, cocoon and palm, and combined with elastic rubber material and buffer layer to enhance anti-slip performance and provide cushion protection.

Benefits of technology

It improves the anti-slip performance and material utilization of gloves in different parts, evenly distributes the stress, reduces fatigue, prevents slippage and protects key parts of the hand.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides a sports four-finger glove, which relates to the field of gloves. It includes four finger sheaths and a palm sheath. Each finger sheath is integrally connected or sewn to the palm sheath. A first anti-slip layer is connected to the front of each finger sheath, and four second anti-slip layers and a third anti-slip layer are connected to the front of the palm sheath. The structures of the first anti-slip layer, the second anti-slip layer, and the third anti-slip layer are honeycomb lattices; the second anti-slip layer is located in the upper-middle part of the palm sheath; the third anti-slip layer is located in the lower-middle part of the palm sheath; the honeycomb point height of the first anti-slip layer is greater than the honeycomb point height of the second anti-slip layer; the honeycomb point height of the third anti-slip layer is greater than the honeycomb point height of the first anti-slip layer. Through the setting of the honeycomb point heights of the anti-slip layers, during the process of grasping and climbing, the forces on the finger roots, calluses, and the palms are more evenly distributed, which helps to avoid excessive local force on the fingers or palms causing fatigue, and also avoids insufficient local force on the fingers or palms and thus being unable to effectively provide friction for grasping and climbing.
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Description

Technical Field

[0001] This application relates to the technical field of gloves, and particularly to a sports four-finger glove. Background Art

[0002] Sports gloves are usually used in climbing situations and have good wear resistance and anti-slip performance. Since the thumb has a relatively low participation rate during climbing, the gloves are usually designed as four-finger types, that is, four-finger gloves.

[0003] In the existing sports four-finger gloves, a layer of anti-slip layer (rubber dots or rubber layer) is usually provided on the front side (the front side refers to the side close to the palm, and the back side refers to the side close to the back of the hand). However, during the climbing process, the main stress points on the front side of the hand are concentrated at the roots of the four fingers and the top of the palm. The anti-slip layer covers the front side of the sports four-finger glove, not only resulting in low effective utilization rate of materials, but also a water film will form on the surface after the anti-slip layer gets wet, reducing the anti-slip effect. Summary of the Invention

[0004] This application provides a sports four-finger glove to improve the effective utilization rate of materials and enhance the anti-slip effect.

[0005] In an embodiment of this application, a sports four-finger glove is provided, which includes four finger sheaths and one palm sheath. Each of the finger sheaths is integrally connected or sewn to the palm sheath. A first anti-slip layer is connected to the front side of each finger sheath, and four second anti-slip layers and one third anti-slip layer are connected to the front side of the palm sheath. The structures of the first anti-slip layer, the second anti-slip layer, and the third anti-slip layer are honeycomb dot matrices; the second anti-slip layer is located in the upper-middle part of the palm sheath; each of the second anti-slip layers is aligned with each of the first anti-slip layers in the up-down direction; the third anti-slip layer is located in the lower-middle part of the palm sheath, and the third anti-slip layer is arranged to cover the lower-middle part of the front side of the finger sheaths; the width of the honeycomb dots of the first anti-slip layer is greater than the width of the honeycomb dots of the second anti-slip layer; the height of the honeycomb dots of the first anti-slip layer is greater than the height of the honeycomb dots of the second anti-slip layer; the width of the honeycomb dots of the third anti-slip layer is greater than the width of the honeycomb dots of the first anti-slip layer; the height of the honeycomb dots of the third anti-slip layer is greater than the height of the honeycomb dots of the first anti-slip layer; the honeycomb dots are made of elastic rubber material.

[0006] In some embodiments of this application, the height of the honeycomb dots of the first anti-slip layer gradually increases from the center line of the finger sheath to both sides.

[0007] In some embodiments of this application, among the four second anti-slip layers, the height of the honeycomb dots of the middle two second anti-slip layers is greater than the height of the honeycomb dots of the other two second anti-slip layers.

[0008] In some embodiments of the embodiments of the present application, a sealed cavity is provided inside the root of the honeycomb point.

[0009] In some embodiments of the embodiments of the present application, the shapes of the first anti-slip layer, the second anti-slip layer, and the third anti-slip layer are all rectangular. One side of the first anti-slip layer, one side of the second anti-slip layer, and one side of the third anti-slip layer are all parallel to the center line of the finger sleeve; the sides of each first anti-slip layer close to the palm sleeve are located on the same straight line, the sides of each second anti-slip layer close to the finger sleeve are located on the same straight line, and the sides of each second anti-slip layer close to the third anti-slip layer are located on the same straight line.

[0010] In some embodiments of the embodiments of the present application, four buffer layers are connected to the back of the palm sleeve. Each buffer layer is correspondingly arranged with each second anti-slip layer, and the buffer layer is made of elastic rubber material.

[0011] In some embodiments of the embodiments of the present application, a traction piece is integrally connected to the back of the palm sleeve. The shape of the traction piece is rectangular. The traction piece is located at the central position of the side of the palm sleeve away from the finger sleeve. The width of the traction piece is smaller than the width of the palm sleeve. One side of the traction piece away from the palm sleeve is integrally connected with a lace. The lace is arranged along the direction perpendicular to the center line of the finger sleeve described in the specification

[0012] The length of the lace is greater than the width of the traction piece, and the side of the traction piece away from the finger sleeve is located at the central position of the lace.

[0013] In some embodiments of the embodiments of the present application, a male magic tape is connected to the front of one end of the lace, and a female magic tape is connected to the back of the other end of the lace.

[0014] In some embodiments of the embodiments of the present application, a fluorescent strip is connected to the back of the lace, and the length of the fluorescent strip is equal to the length of the lace.

[0015] In some embodiments of the embodiments of the present application, the finger sleeve and the palm sleeve are woven from cotton yarn.

[0016] The present application has the following beneficial effects:

[0017] Through the setting of the honeycomb point heights of each anti-slip layer, during the grasping and climbing process, the force on the root of the fingers, the callus part, and the palm is more uniform, which helps to avoid excessive local force on the fingers or the palm causing fatigue, and helps to avoid insufficient local force on the fingers or the palm and thus being unable to effectively provide frictional force for grasping and climbing. Each anti-slip layer consists of multiple honeycomb points arranged in an array, and the honeycomb points are integrally connected. Each honeycomb point has a hexagonal opening, and can be compressed when a force is applied during the grasping and climbing process, and the internal gas is squeezed out to generate negative pressure. When slipping is about to occur, the negative pressure inside can generate an adsorption force to limit slipping, improving the anti-slip performance. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0019] Figure 1 is a schematic structural diagram of the front of the right hand;

[0020] Figure 2 is a schematic structural diagram of the front of the sports four-finger glove in the embodiment of the present application;

[0021] Figure 3 is a schematic structural diagram of the back of the sports four-finger glove in the embodiment of the present application;

[0022] Figure 4 is a schematic structural diagram of the front of the sports four-finger glove when worn on the right hand in the embodiment of the present application;

[0023] Figure 5 is a schematic structural diagram of the back of the sports four-finger glove when worn on the right hand in the embodiment of the present application;

[0024] Figure 6 is a schematic structural diagram of the force on the front and back when the finger sleeve is on the finger in the embodiment of the present application

[0025] Figure 7 is a schematic structural diagram of the honeycomb point in the embodiment of the present application;

[0026] Figure 8 is along Figure 7 the sectional view taken along line A-A in

[0027] Figure 9 is a schematic diagram of the height distribution of the first anti-slip layer on the finger sleeve in the embodiment of the present application.

[0028] Reference Signs:

[0029] 101. Finger cot; 102. Palm glove; 103. First anti-slip layer; 104. Honeycomb dots; 105. Sealed cavity; 106. Buffer layer; 107. Traction sheet; 108. Lacing; 109. Male Velcro; 110. Female Velcro; 111. Fluorescent strip; 112. Finger; 113. Palm; 114. Wrist; 115. Thumb; 116. Palm center; 117. Callus part; 118. Second anti-slip layer; 119. Third anti-slip layer. Detailed implementation mode

[0030] The following further describes the implementation mode of the present application in detail in combination with the accompanying drawings and embodiments. The terms used in the implementation mode part of the present application are only used to explain the specific embodiments of the present application, rather than aiming to limit the present application.

[0031] As Figure 1 shown, taking the right hand as an example, the right hand includes fingers 112, palm 113 and wrist 114. Each of the four fingers 112 except the thumb 115 has three joints. In the front of the right hand, the joint close to the palm 113 is under the greatest force during the climbing process. The palm 113 includes the palm center 116 and four callus parts 117 (the parts where calluses form). The callus parts 117 have thickened skin that can withstand greater extrusion force, while the skin of the palm center 116 is delicate and cannot withstand greater extrusion force. In view of the force-bearing states of different parts of the hand during the climbing process, the embodiments of the present application propose the following solutions.

[0032] As Figures 2 to 9 shown, in the embodiment of the present application, a sports four-finger glove is provided, which includes four finger cots 101 and one palm glove 102. Each finger cot 101 is integrally connected or sewn to the palm glove 102. The front of each finger cot 101 is connected with a first anti-slip layer 103, and the front of the palm glove 102 is connected with four second anti-slip layers 118 and one third anti-slip layer 119. The structures of the first anti-slip layer 103, the second anti-slip layer 118, and the third anti-slip layer 119 are honeycomb lattices; the second anti-slip layer 118 is located in the upper-middle part of the palm glove 102; each second anti-slip layer 118 is aligned with each first anti-slip layer 103 in the up-down direction; the third anti-slip layer 119 is located in the lower-middle part of the palm glove 102, and the third anti-slip layer 119 is arranged to cover the lower-middle part of the front of the finger cot 101; the width of the honeycomb dots 104 of the first anti-slip layer 103 is greater than the width of the honeycomb dots 104 of the second anti-slip layer 118; the height of the honeycomb dots 104 of the first anti-slip layer 103 is greater than the height of the honeycomb dots 104 of the second anti-slip layer 118; the width of the honeycomb dots 104 of the third anti-slip layer 119 is greater than the width of the honeycomb dots 104 of the first anti-slip layer 103; the height of the honeycomb dots 104 of the third anti-slip layer 119 is greater than the height of the honeycomb dots 104 of the first anti-slip layer 103; the honeycomb dots 104 are made of elastic rubber material.

[0033] Through the above implementation manners of this embodiment, when the sports four-finger glove is worn on the right hand, the first anti-slip layer 103 covers the front of the section of the finger 112 close to the palm 113, the second anti-slip layer 118 covers the callus part 117, and the third anti-slip layer 119 covers the palm center 116. During the climbing and grasping process, the force is concentrated on the first anti-slip layer 103, the second anti-slip layer 118, and the third anti-slip layer 119. The first anti-slip layer 103 provides anti-slip and buffering for the root of the finger 112 (at the section close to the palm 113), avoiding damage or slipping of the root of the finger 112. The second anti-slip layer 118 provides anti-slip and buffering for the callus part 117, avoiding being stabbed or slipping of the callus part 117. The third anti-slip layer 119 provides anti-slip and buffering for the palm center 116, avoiding injury or slipping of the palm center 116. During the grasping and climbing process, the palm center 116 is concave inward, the callus part 117 is convex outward, and the height of the root of the finger 112 basically does not change. Increasing the height of the honeycomb points 104 of the third anti-slip layer 119 can fill the gap at the palm center, increase the force on the palm center, reduce the burden on the finger 112 and the callus part 117, and reducing the height of the honeycomb points 104 of the second anti-slip layer 118 can enable the finger 112 to bend, grasp, and climb better. Through the setting of the heights of the honeycomb points 104 of each anti-slip layer, during the grasping and climbing process, the forces on the root of the finger 112, the callus part 117, and the palm center 116 are more uniform, which helps to avoid fatigue caused by excessive local force on the finger 112 or the palm center 116, and helps to avoid ineffective friction for grasping and climbing due to too little local force on the finger 112 or the palm center 116. Each anti-slip layer is composed of a plurality of honeycomb points 104 arranged in an array. The distance between the outer sides of the honeycomb points 104 can be 0 to 3 millimeters. In this embodiment, it is preferably set to 0 millimeters, and the honeycomb points 104 are integrally connected. The honeycomb points 104 all have hexagonal openings and can be compressed when receiving a force during the grasping and climbing process, and the internal gas is extruded to generate negative pressure. When slipping is about to occur, the internal negative pressure can generate an adsorption force to limit slipping, improving the anti-slip performance.

[0034] As Figure 9 shown, in some implementation manners of this embodiment, the height of the honeycomb points 104 of the first anti-slip layer 103 gradually increases from the center line of the finger sleeve 101 to both sides.

[0035] Through the above implementation manners of this embodiment, it can enable each honeycomb point 104 to participate in the contact with the surface of the object to be grasped, and at the same time enable each honeycomb point 104 to provide buffering and anti-slip for grasping and climbing, improving the anti-slip performance.

[0036] In some implementation manners of this embodiment, among the four second anti-slip layers 118, the height of the honeycomb points 104 of the two middle second anti-slip layers 118 is greater than the height of the honeycomb points 104 of the other two second anti-slip layers 118.

[0037] Through the above implementation manner of this embodiment, since the concave depth at the center of the palm is the largest, by increasing the height of the honeycomb points 104 of the second anti-slip layer 118 at the center of the palm, the force on each part of the palm during the grasping and climbing process is made more uniform.

[0038] In some implementation manners of this embodiment, a sealed cavity 105 is provided inside the root of the honeycomb points 104.

[0039] Through the above implementation manner of this embodiment, during the grasping and climbing process, the sealed cavity 105 can be compressed after being squeezed, achieving a buffering and shock-absorbing effect.

[0040] In some implementation manners of this embodiment, the shapes of the first anti-slip layer 103, the second anti-slip layer 118, and the third anti-slip layer 119 are all rectangles. One side of the first anti-slip layer 103, one side of the second anti-slip layer 118, and one side of the third anti-slip layer 119 are all parallel to the center line of the finger sleeve 101; one side of each first anti-slip layer 103 close to the palm sleeve 102 is on the same straight line, one side of each second anti-slip layer 118 close to the finger sleeve 101 is on the same straight line, and one side of each second anti-slip layer 118 close to the third anti-slip layer 119 is on the same straight line.

[0041] Through the above implementation manner of this embodiment, there is a gap between each anti-slip layer. Compared with the prior art where the entire front of the glove is covered, it not only saves materials and reduces costs, but also can set anti-slip layers for different stress points, achieving better buffering and anti-slip performance.

[0042] In some implementation manners of this embodiment, four buffer layers 106 are connected to the back of the palm sleeve 102. Each buffer layer 106 is correspondingly arranged with each second anti-slip layer 118, and the buffer layer 106 is made of elastic rubber material. There are joint bone protrusions at the corresponding positions of the back of the hand and the callus part 117, and the buffer layer 106 covers each bone protrusion to provide buffer protection for the bone protrusions.

[0043] In some implementation manners of this embodiment, a traction piece 107 is integrally connected to the back of the palm sleeve 102. The shape of the traction piece 107 is a rectangle. The traction piece 107 is located at the center position of the side of the palm sleeve 102 away from the finger sleeve 101. The width of the traction piece 107 is smaller than the width of the palm sleeve 102. A lace 108 is integrally connected to the side of the traction piece 107 away from the palm sleeve 102. The lace 108 is arranged along the direction perpendicular to the center line of the finger sleeve 101. The length of the lace 108 is greater than the width of the traction piece 107. The side of the traction piece 107 away from the finger sleeve 101 is located at the center position of the lace 108.

[0044] Through the above implementation manner of this embodiment, after the sports four-finger glove is worn on the hand, both ends of the lace 108 are bent towards the front of the wrist 114 and tied together, so that the wrist 114 pulls the back of the palm sleeve 102, as Figure 6 shown, under the traction of the traction piece 107 and the lace 108, after the finger sleeve 101 is subjected to an upward frictional pulling force, the finger sleeve 101 undergoes an oblique cut to reduce the inner diameter of the finger sleeve 101 and increase the frictional force between the finger sleeve 101 and the finger 112, preventing the finger sleeve 101 from slipping off the finger 112.

[0045] In some implementation manners of this embodiment, a male magic tape 109 is connected to the front of one end of the lace 108, and a female magic tape 110 is connected to the back of the other end of the lace 108.

[0046] In some implementation manners of this embodiment, a fluorescent strip 111 is connected to the back of the lace 108, and the length of the fluorescent strip 111 is equal to the length of the lace 108.

[0047] Through the above implementation manner of this embodiment, the fluorescent strip 111 can emit light in a dark environment, which helps to find the sports four-finger glove in a dark environment.

[0048] In some implementation manners of this embodiment, the finger sleeve 101 and the palm sleeve 102 are woven from cotton yarn.

[0049] Through the above implementation manner of this embodiment, the cotton yarn has high-temperature deformation resistance, good air permeability and sweat absorption performance, which is convenient for the honeycomb points 104 made of rubber to be hot-stamped and attached to the finger sleeve 101 and the palm sleeve 102.

[0050] The above embodiments are only explanations of this application, and they are not limitations of this application. Those skilled in the art can make modifications to the implementation manners of this application without creative contributions according to their needs after reading this specification, but as long as they are within the scope of the claims of this application, they are protected by the patent law.

Claims

1. A sports four-finger glove, comprising four finger sheaths and a palm sheath, each of the finger sheaths being integrally connected or sewn to the palm sheath respectively, characterized in that, A first anti-slip layer is connected to the front of each finger sleeve. Four second anti-slip layers and a third anti-slip layer are connected to the front of the palm sleeve. The structures of the first anti-slip layer, the second anti-slip layer, and the third anti-slip layer are honeycomb lattices. The second anti-slip layer is located in the upper-middle part of the palm sleeve. Each of the second anti-slip layers is aligned with each of the first anti-slip layers in the vertical direction. The third anti-slip layer is located in the lower-middle part of the palm sleeve, and the third anti-slip layer covers the lower-middle part of the front of the finger sleeve. The width of the honeycomb points of the first anti-slip layer is greater than the width of the honeycomb points of the second anti-slip layer. The height of the honeycomb points of the first anti-slip layer is greater than the height of the honeycomb points of the second anti-slip layer. The width of the honeycomb points of the third anti-slip layer is greater than the width of the honeycomb points of the first anti-slip layer. The height of the honeycomb points of the third anti-slip layer is greater than the height of the honeycomb points of the first anti-slip layer. The honeycomb points are made of elastic rubber material. The height of the honeycomb points of the first anti-slip layer gradually increases from the center line of the finger sleeve towards both sides.

2. The sports four-finger glove according to claim 1, wherein Among the four second anti-slip layers, the height of the honeycomb points of the two middle second anti-slip layers is greater than the height of the honeycomb points of the other two second anti-slip layers.

3. The sports four-finger glove according to claim 1, characterized in that, A sealed cavity is provided inside the root of the honeycomb points.

4. The sports four-finger glove according to claim 1, characterized in that The shapes of the first anti-slip layer, the second anti-slip layer, and the third anti-slip layer are all rectangles. One side of the first anti-slip layer, one side of the second anti-slip layer, and one side of the third anti-slip layer are all parallel to the center line of the finger sleeve. The sides of each first anti-slip layer close to the palm sleeve are located on the same straight line. The sides of each second anti-slip layer close to the finger sleeve are located on the same straight line. The sides of each second anti-slip layer close to the third anti-slip layer are located on the same straight line.

5. The sports four-finger glove according to claim 1, characterized in that Four buffer layers are connected to the back of the palm sleeve. Each buffer layer is correspondingly arranged with each second anti-slip layer. The buffer layers are made of elastic rubber material.

6. The sports four-finger glove according to claim 1, wherein A traction piece is integrally connected to the back of the palm sleeve. The shape of the traction piece is a rectangle. The traction piece is located at the center position of the side of the palm sleeve away from the finger sleeve. The width of the traction piece is smaller than the width of the palm sleeve. A lace is integrally connected to the side of the traction piece away from the palm sleeve. The lace is arranged in a direction perpendicular to the center line of the finger sleeve. The length of the lace is greater than the width of the traction piece. The side of the traction piece away from the finger sleeve is located at the center position of the lace.

7. The sports four-finger glove according to claim 6, wherein A male magic tape is connected to the front of one end of the lace, and a female magic tape is connected to the back of the other end of the lace.

8. The sports four-finger glove according to claim 6, wherein A fluorescent strip is connected to the back of the lace. The length of the fluorescent strip is equal to the length of the lace.

9. The sports four-finger glove according to any one of claims 1 to 8, characterized in that, The finger sleeve and the palm sleeve are woven from cotton yarn.

Citation Information

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