Anti-pressing wrist-protecting glove

By incorporating a pressure-bearing structure on the glove module and a support structure on the wrist guard module, the pressure-resistant wrist glove solves the problem of wrist injury caused by concentrated pressure during medication preparation, thereby reducing wrist pressure and improving operational comfort.

CN224055407UActive Publication Date: 2026-03-31TAIZHOU ENZE MEDICAL CENT GROUP
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

When preparing medication, the wrist is prone to concentrated pressure, which can lead to injury. Existing gloves cannot effectively reduce this pressure.

Method used

A pressure-resistant wrist glove has been designed, comprising a glove module and a wrist support module. The glove module has a pressure-bearing structure to withstand the pressure of the fingers, and the wrist support module has a support structure to support the wrist. Antibacterial materials and anti-slip structures are used to improve grip stability and comfort.

Benefits of technology

By designing pressure-bearing and support structures, pressure concentration on the wrist is reduced, the probability of wrist injury is lowered, operational comfort and safety are improved, and the risk of occupational diseases is reduced.

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Abstract

The utility model discloses an anti-pressure wrist-protecting glove, which relates to the technical field of gloves, and comprises a glove module, the glove module is used for covering fingers and palm of a human body, the glove module is provided with a pressure-bearing structure at a position corresponding to the inner side of the fingers, and the pressure-bearing structure is used for bearing pressure when the fingers of the human body work; the wrist protection device comprises a glove module and a wrist protection module, the wrist protection module is used for covering the wrist of the human body, the wrist protection module is connected with the glove module, the wrist protection module comprises a supporting structure, and the supporting structure is used for supporting the wrist of the human body. According to the anti-pressing wrist-protecting glove, the pressure of the wrist can be reduced during medicine dispensing operation, and damage to the wrist is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of glove technology, and in particular to a pressure-resistant wrist glove. Background Technology

[0002] In the medical field, gloves are mainly used for aseptic procedures or in low-risk or high-risk environments, and their primary function is to prevent bacterial growth or breakage. However, clinical nurses often need to perform medication preparation, which requires wrist exertion and can easily lead to wrist injuries over time. Utility Model Content

[0003] The purpose of this invention is to provide a pressure-resistant wrist glove to solve the problems existing in the prior art, thereby reducing wrist pressure and wrist injury during medication preparation.

[0004] To achieve the above objectives, this utility model provides the following solution:

[0005] This utility model provides a pressure-resistant wrist glove, comprising:

[0006] A glove module for covering the fingers and palms of a human body, wherein a pressure-bearing structure is provided on the glove module at a position corresponding to the inside of the fingers, the pressure-bearing structure being used to bear pressure when the human fingers are working;

[0007] The wrist guard module covers the wrist of the human body and is connected to the glove module. The wrist guard module includes a support structure for supporting the wrist of the human body.

[0008] In some specific embodiments, the glove module includes an integrally formed finger section and a palm section, the finger section being used to cover the human fingers, the palm section being used to cover the human palm, and the pressure-bearing structure being located in the finger section.

[0009] In some specific embodiments, the finger portion includes a thumb portion, an index finger portion, a middle finger portion, a ring finger portion, and a little finger portion. The thumb portion is used to cover the thumb of the human body, the index finger portion is used to cover the index finger of the human body, the middle finger portion is used to cover the middle finger of the human body, the ring finger portion is used to cover the ring finger of the human body, and the little finger portion is used to cover the little finger of the human body. The thumb portion, the index finger portion, and the middle finger portion are all provided with the pressure-bearing structure.

[0010] In some specific designs, a ring finger anti-slip structure is provided at the corresponding position between the ring finger portion and the inner side of the ring finger, and the ring finger anti-slip structure is located on the outer side of the ring finger portion; a little finger anti-slip structure is provided at the corresponding position between the little finger portion and the inner side of the little finger, and the little finger anti-slip structure is located on the outer side of the little finger portion; a palm anti-slip structure is provided at the corresponding position between the palm portion and the center of the palm, and the palm anti-slip structure is located on the outer side of the palm portion.

[0011] In some specific designs, the anti-slip structure for the ring finger, the anti-slip structure for the little finger, and the anti-slip structure for the palm all include several anti-slip particles.

[0012] In some specific embodiments, the glove module further includes a wrist portion, and the finger portion, the palm portion and the wrist portion are integrally formed. The wrist portion is used to cover the wrist of the human body, and the wrist support module is connected to the wrist portion. When the anti-pressure wrist support glove is in use, the wrist support module is located on the outside of the wrist portion.

[0013] In some specific designs, the glove module is made of antibacterial material; the pressure-bearing structure is a pressure-bearing layer.

[0014] In some specific embodiments, the wrist support module includes a wrist support body and several supporting structures. The wrist support body is connected to the glove module. The wrist support body is provided with a first connecting part and a second connecting part that matches the first connecting part. When the anti-pressure wrist glove is in use, the wrist support module covers the wrist through the connection of the first connecting part and the second connecting part. Several supporting structures are arranged along the length direction of the wrist support body, and there are gaps between adjacent supporting structures.

[0015] In some specific designs, the wristband body is an elastic band.

[0016] In some specific designs, the wristband body is provided with heat dissipation holes.

[0017] The present invention achieves the following technical advantages over the prior art:

[0018] This invention improves pressure resistance during medication preparation by incorporating a pressure-bearing structure on the glove module; and by incorporating a support structure on the wrist support module to support the wrist, effectively preventing pressure concentration on critical areas such as the ulnar styloid process and distal radius, thus reducing wrist pressure during medication preparation. Attached Figure Description

[0019] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 This is a schematic diagram of the anti-pressure wrist glove in some embodiments of the present invention;

[0021] In the diagram: 100-Pressure-resistant wrist glove, 1-Glove module, 2-Pressure-bearing structure, 3-Wrist glove module, 4-Support structure, 5-Palm, 6-Thumb, 7-Index finger, 8-Middle finger, 9-Ring finger, 10-Little finger, 11-Ring finger anti-slip structure, 12-Little finger anti-slip structure, 13-Palm anti-slip structure, 14-Wrist glove body, 15-Second connecting part, 16-Elastic fabric, 17-Wrist. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] The purpose of this invention is to provide a pressure-resistant wrist glove to solve the problems existing in the prior art, thereby reducing wrist pressure and wrist injury during medication preparation.

[0024] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0025] Example 1

[0026] like Figure 1As shown, this embodiment provides a pressure-resistant wrist glove 100, including: a glove module 1, which covers the fingers and palm of a human body, and a pressure-bearing structure 2 is provided on the inner side of the fingers (on the same side as the palm) of the glove module 1, which bears pressure when the fingers are working; and a wrist support module 3, which covers the wrist of a human body, and is connected to the glove module 1. The wrist support module 3 includes a support structure 4, which supports the wrist of the human body. This embodiment improves pressure resistance during drug dispensing operations by providing the pressure-bearing structure 2 on the glove module 1; and effectively avoids pressure concentration on key parts of the wrist such as the ulnar styloid process and the distal radius by providing the support structure 4 on the wrist support module 3, thereby reducing pressure on the wrist during drug dispensing operations.

[0027] In some embodiments, the glove module 1 is made of antibacterial material, preferably graphene antibacterial elastic fabric, which is slightly elastic, breathable, and maintains finger dexterity; the pressure-bearing structure 2 is a pressure-bearing layer, which is coated with silicone or polyurethane to enhance grip stability and pressure resistance. The pressure-bearing structure 2 is preferably located on the outside of the glove module 1 (the side that does not come into contact with human skin).

[0028] In some embodiments, the glove module 1 includes an integrally formed finger portion and a palm portion 5. The finger portion covers the fingers of the human body, and the palm portion 5 covers the palm of the human body. A pressure-bearing structure 2 is located on the finger portion. The finger portion includes a thumb portion 6, an index finger portion 7, a middle finger portion 8, a ring finger portion 9, and a little finger portion 10. The thumb portion 6 covers the thumb of the human body, the index finger portion 7 covers the index finger of the human body, the middle finger portion 8 covers the middle finger of the human body, the ring finger portion 9 covers the ring finger of the human body, and the little finger portion 10 covers the little finger of the human body. The thumb portion 6, the index finger portion 7, and the middle finger portion 8 are all provided with a pressure-bearing structure 2 to improve pressure resistance during drug dispensing operations.

[0029] In some embodiments, a ring finger anti-slip structure 11 is provided at a position corresponding to the inner side of the ring finger (on the same side as the palm), and the ring finger anti-slip structure 11 is located on the outer side of the ring finger 9 (the side that does not contact the skin); a little finger anti-slip structure 12 is provided at a position corresponding to the inner side of the little finger (on the same side as the palm), and the little finger anti-slip structure 12 is located on the outer side of the little finger 10 (the side that does not contact the skin); a palm anti-slip structure 13 is provided at a position corresponding to the palm of the hand 5, and the palm anti-slip structure 13 is located on the outer side of the palm of the hand 5 (the side that does not contact the skin). The ring finger anti-slip structure 11, the little finger anti-slip structure 12, and the palm anti-slip structure 13 all include a plurality of anti-slip particles, preferably silicone particles, which can enhance grip stability.

[0030] In some embodiments, the wrist support module 3 includes a wrist support body 14 and several support structures 4; one end of the wrist support body 14 is seamlessly connected to the palm part 5 of the glove module 1 through an elastic fabric 16, ensuring that the wrist support module 3 and the glove module 1 move in tandem and reducing seam friction; the wrist support body 14 is an elastic band made of 0.8mm elastic fiber fabric, which wraps around and applies pressure during use to stabilize the joint ligaments, reasonably limit the range of wrist movement, and reduce injury; the wrist support body 14 is provided with heat dissipation holes to dissipate heat; the wrist support body 14 is provided with a first connecting part and a second connecting part 15 that matches the first connecting part; the first connecting part is located on one side of the wrist support body 14, and the second connecting part 15 is located on the other side of the wrist support body 14, and the second connecting part 15 is located near the other end of the wrist support body 14; the first connecting part and the second connecting part 15 form a Velcro structure. When using the anti-pressure wrist glove 100, tighten the wrist body 14, and the wrist module 3 is set around the wrist. Through the connection of the first connecting part and the second connecting part 15, the wrist module 3 covers the wrist. Several support structures 4 are set along the length of the wrist body 14 on the inner side of the wrist body 14. The inner side of the wrist body 14 refers to the side of the wrist module 3 that is close to the wrist when in use. The support structures 4 are fixed to the wrist body 14 by stitching or heat pressing. There are gaps between adjacent support structures 4. The number of support structures 4 is such that the wrist module 3 can cover the inner side of the wrist (same side as the palm) or the outer side of the wrist (same side as the back of the hand) when in use. The projection of the support structure 4 on the human arm is set parallel to the direction of the human arm. The support structure 4 is arc-shaped and matches the curvature of the human wrist. The support structure 4 is made of carbon fiber material or TPU (Thermoplastic Urethane) material. In this embodiment, the support structure 4 and the wrist guard body 14 form a composite structure of "hard support + soft cushioning". The support structure 4 conforms to the natural curvature of the wrist and provides rigid support.

[0031] The glove module 1 of this embodiment is made of antibacterial material, which can inhibit common pathogens such as Staphylococcus aureus. The glove module 1 of this embodiment is equipped with an anti-slip structure 11 for the ring finger, an anti-slip structure 12 for the little finger, and an anti-slip structure 13 for the palm, achieving an anti-slip function and increasing the coefficient of friction by 40%-50%. The glove module 1 of this embodiment is anti-slip and antibacterial, improving the practicality and safety of the glove. The areas of the glove module 1 with the pressure-bearing structure 2 are pressure-bearing zones, while the areas without the pressure-bearing structure 2 are elastic zones. By dividing the glove module 1 into pressure-bearing and elastic zones, a zoned design is achieved, ensuring flexibility for delicate operations while reducing hand fatigue from prolonged holding of tools (such as syringes) through the pressure-bearing structure 2. This embodiment, by setting a support structure 4 in the wrist support module 3, forms a multi-point dynamic pressure adaptive distribution, effectively avoiding pressure concentration in key areas such as the ulnar styloid process and distal radius of the wrist, reducing wrist pressure during medication dispensing operations.

[0032] In this embodiment, a support structure 4 is provided in the wrist support module 3 to conform to the natural curvature of the wrist and provide rigid support. This reduces the peak local pressure on the wrist by 30%-40% compared to traditional wrist supports, thereby reducing the probability of occupational diseases such as carpal tunnel syndrome and tenosynovitis and preventing chronic strain. The glove module 1 in this embodiment uses antibacterial materials with an antibacterial rate of >99%, meeting medical environmental hygiene standards. Furthermore, the glove module 1 uses graphene antibacterial elastic fabric, reducing bending resistance by 25% and ensuring operational accuracy. Anti-slip particles enhance grip stability during operation, increasing sliding resistance by 50% and reducing the risk of slippage of instruments such as medicine bottles and syringes. In this embodiment, the wrist support module 3 can be steplessly adjusted within a wrist circumference range of 15-22cm through a first connecting part on the wrist support body 14 and a second connecting part 15 that matches the first connecting part, adapting to more than 95% of adult users. The wrist support module 3 in this embodiment has a composite structure of "hard support + soft cushioning," reducing fatigue scores by 50% after 4 hours of continuous wear (data based on Borg scale testing).

[0033] Example 2

[0034] like Figure 1 As shown, the difference between this embodiment and Embodiment 1 is that in some embodiments, the glove module 1 further includes a wrist part 17, and the finger part, palm part 5 and wrist part 17 are integrally formed. The wrist part 17 is used to cover the wrist of the human body. The wrist protection module 3 is connected to the wrist part 17. When the anti-pressure wrist glove 100 is used, the wrist protection module 3 is located on the outside of the wrist part 17.

[0035] This utility model uses specific examples to illustrate its principles and implementation methods. The above description of the embodiments is only for the purpose of helping to understand the method and core idea of ​​this utility model. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the idea of ​​this utility model. In summary, the content of this specification should not be construed as a limitation of this utility model.

Claims

1. A pressure-protective wrist glove, characterized by: The application relates to a pressure-proof wrist-protection glove, which comprises a glove module and a wrist-protection module. The glove module is used for covering fingers and palms of a human body, and is provided with a pressure-bearing structure at a position corresponding to the inner side of the fingers, which is used for bearing pressure when the fingers work. The wrist-protection module is used for covering the wrist of the human body, and is connected with the glove module.

2. The compression guard wrist hand mitt of claim 1, wherein: The glove module comprises an integrally-formed finger part and palm part, the finger part is used for covering the fingers of the human body, the palm part is used for covering the palms of the human body, and the pressure-bearing structure is located in the finger part.

3. The compression guard wrist hand mitt of claim 2, wherein: The finger part comprises a thumb part, an index finger part, a middle finger part, a ring finger part and a little finger part, the thumb part is used for covering the thumb of the human body, the index finger part is used for covering the index finger of the human body, the middle finger part is used for covering the middle finger of the human body, the ring finger part is used for covering the ring finger of the human body, and the little finger part is used for covering the little finger of the human body.

4. The compression guard wristband glove of claim 3, wherein: The ring finger part is provided with a ring finger anti-skid structure at a position corresponding to the inner side of the ring finger, and the ring finger anti-skid structure is located at the outer side of the ring finger part; the little finger part is provided with a little finger anti-skid structure at a position corresponding to the inner side of the little finger, and the little finger anti-skid structure is located at the outer side of the little finger part; and the palm part is provided with a palm anti-skid structure at a position corresponding to the palm center, and the palm anti-skid structure is located at the outer side of the palm part.

5. The compression guard wristband glove of claim 4, wherein: The ring finger anti-skid structure, the little finger anti-skid structure and the palm anti-skid structure all comprise a plurality of anti-skid particles.

6. The compression guard wristband glove of claim 2, wherein: The glove module further comprises a wrist part, the finger part, the palm part and the wrist part are integrally formed, the wrist part is used for covering the wrist of the human body, the wrist-protection module is connected with the wrist part, and the wrist-protection module is located at the outer side of the wrist part when the pressure-proof wrist-protection glove is used.

7. The compression guard wrist hand mitt of claim 1, wherein: The glove module is made of an antibacterial material, and the pressure-bearing structure is a pressure-bearing layer.

8. The compression guard wristband glove of claim 1, wherein: The wrist-protection module comprises a wrist-protection body and a plurality of support structures, the wrist-protection body is connected with the glove module, the wrist-protection body is provided with a first connecting part and a second connecting part matched with the first connecting part, the wrist-protection module covers the wrist through the connection of the first connecting part and the second connecting part when the pressure-proof wrist-protection glove is used, the plurality of support structures are arranged along the length direction of the wrist-protection body, and gaps exist between adjacent support structures.

9. The compression guard wristband glove of claim 8, wherein: The wrist-protection body is an elastic band.

10. The compression guard wristband glove of claim 8, wherein: The wrist-protection body is provided with heat dissipation holes.