Emergency rescue glove
By adopting elastic cuffs and double-layer touch screen design in emergency rescue gloves, combined with shock-absorbing anti-collision blocks and reflective cloth and other structures, the problems of cumbersome wearing and poor touch screen effect in the existing technology are solved, and the effect of convenient wearing and stable touch screen is achieved.
Patent Information
- Application Number
- CN202422221715.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-09-10
AI Technical Summary
The cuffs of existing emergency rescue gloves are mainly tightened by Velcro, which makes them cumbersome and inconvenient to wear, and the touch screen effect is poor in complex environments.
It adopts elastic glove cuff and double-layer touch screen design, combined with shock-absorbing anti-collision blocks, reflective cloth and protective layer structures to improve wearing convenience and touch screen stability.
It achieves a simple and quick donning process, enhances the stability of hand protection and touch screen functions, reduces the risk of joint injuries, and improves the flexibility and visibility of rescue operations.
Smart Images

Figure CN223349680U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of gloves, in particular to a pair of emergency rescue gloves. Background Art
[0002] Emergency rescue gloves are designed to protect the hands of rescuers. They are primarily used in firefighting, forestry, and water environments. They require quick donning and doffing to save time, provide comprehensive protection for all hand joints, and allow the operator to operate various touchscreen rescue equipment.
[0003] Recently, the cuffs of emergency rescue gloves are mainly tightened with Velcro, which requires the wearer to stick them on themselves, making it cumbersome and inconvenient to wear the gloves; and in various complex environments, the touch screen effect is poor for using touch screen equipment. Utility Model Content
[0004] The purpose of the utility model is to provide an emergency rescue glove to solve the problems existing in the above-mentioned prior art, make it easier and more convenient to wear, improve the wearing efficiency, and ensure the touch screen usage effect in various complex environments.
[0005] To achieve the above purpose, the present invention provides the following solutions:
[0006] The utility model provides an emergency rescue glove, comprising a glove body; an elastic glove cuff is provided at the wearing opening of the glove body; the elastic glove cuff can be elastically deformed, and the inner side wall of the elastic glove cuff can be tightly attached to the outer surface of the wearer's arm after being worn; the glove body has a thumb cuff, an index finger cuff, a middle finger cuff, a ring finger cuff and a little finger cuff; on the palm side, the thumb cuff and the index finger cuff are fixedly provided with a touch screen layer at the position corresponding to the distal phalanges of the hand; the touch screen layer comprises an inner touch screen microfiber layer and an outer touch screen thread layer; both the touch screen microfiber layer and the touch screen thread layer can be operated by touch screen.
[0007] Preferably, on the back of the hand, the index finger cuff, the middle finger cuff, the ring finger cuff and the little finger cuff are fixedly provided with shock-absorbing and anti-collision blocks at positions corresponding to the proximal interphalangeal joints of the hand, and the outer side of the shock-absorbing and anti-collision blocks is wrapped with joint reflective cloth.
[0008] Preferably, a triangular reflective cloth is fixedly provided on the back of the glove body near the wrist.
[0009] Preferably, the top angle of the triangular reflective cloth points to the direction of the wrist, and the bottom side of the triangular reflective cloth corresponds to the direction of the index finger sleeve, the middle finger sleeve, the ring finger sleeve and the little finger sleeve.
[0010] Preferably, on the palm side, the index finger cuff, the middle finger cuff, the ring finger cuff and the little finger cuff corresponding to the positions of the middle phalanges of the hand, the thumb cuff corresponding to the position of the proximal phalanges of the hand, and the position of the glove body corresponding to the base of the hand are all provided with anti-slip rubber spots.
[0011] Preferably, on the palm side, a protective layer is fixedly provided on the glove body at a position corresponding to the palm of the hand, and a separation gap is provided on the protective layer at a position corresponding to the palm print of the hand.
[0012] Preferably, a tightening portion is provided on a side of the wearing opening of the glove body away from the elastic glove cuff, and the tightening portion is elastically deformable.
[0013] Preferably, the flexibility of the elastic glove cuff is greater than the flexibility of the position of the wearing opening of the glove body, and the elastic glove cuff can be stuffed into the glove body.
[0014] Preferably, on the palm side, the glove body is provided with a thickened portion at a position corresponding to the hypothenar eminence of the hand close to the wrist.
[0015] Preferably, a waterproof layer, a fireproof layer, a thermal insulation layer, a flexible and comfortable layer or a sweat-absorbing layer can be provided inside the glove body.
[0016] Compared with the prior art, the utility model has achieved the following technical effects:
[0017] The emergency rescue gloves provided by the present invention are provided with elastic glove cuffs at the wearing opening of the glove body, which can realize self-expansion under external force and self-contraction after the external force is released based on the elastic characteristics, so that the gloves can be automatically attached to the wearer's wrist after being put on, thereby making it easier and more convenient to put on and improving the putting on efficiency; and the elastic glove cuffs can be attached to the wearer's wrist, which can effectively prevent external dust, debris, etc. from entering the inside of the gloves. Given the complexity of the emergency rescue environment, the gloves can effectively protect the hands of rescuers from injury; and the elastic glove cuffs can extend the protective length of the wrist part, thereby increasing the overall protection range. The elasticity of the elastic glove cuff will not cause too much restriction on the movement of the wrist, so that the rescue personnel can move their wrists freely when performing various rescue operations without affecting the flexibility and operation accuracy of the hands; and the double-layer touch screen structure formed by the touch screen micro-fiber layer and the touch screen line layer can provide touch screen operation by the touch screen line layer under normal circumstances. Under the influence of complex environments, the touch screen micro-fiber layer can also provide auxiliary touch screen effect by increasing the pressure under the touch screen, thereby enhancing the stability of the touch screen function; after the touch screen line layer fails, the touch screen micro-fiber layer can continue to provide touch screen function in time, thereby coping with touch screen operations in various complex environments.
[0018] Furthermore, the shock-absorbing and anti-collision blocks can protect the joints from external impacts, provide effective cushioning for the joints, and reduce the risk of joint injuries; the joint reflective cloth can enhance visibility and reflect surrounding light, making the hands of rescuers easier to see in low-light environments; and the joint reflective cloth can help commanders more easily identify and locate the position of the rescuers' hands, so as to better command and dispatch; the joint reflective cloth can also fix and protect the shock-absorbing and anti-collision blocks.
[0019] Furthermore, the triangular reflective cloth can strongly reflect the surrounding light, making the hands of rescuers easily visible from a distance; and the unique shape and eye-catching reflective effect of the triangular reflective cloth make it easier for commanders to identify and locate specific rescuers, thereby better conducting command, dispatch and resource allocation.
[0020] Furthermore, the directional setting of the triangular reflective cloth can clearly indicate the direction, which helps rescuers quickly determine the position and direction of their hands and avoid misjudgment during the operation.
[0021] Furthermore, the setting of the anti-slip glue points can cooperate with each finger, improve the finger grip, enhance the thumb grip assistance, ensure the tiger's mouth grip is firm, assist in fine operation, and reduce misoperation.
[0022] Furthermore, the setting of the protective layer can improve the protection level of the palm position, forming targeted protection, and the setting of the separation gap has little effect on the operational flexibility of the hand, which can ensure hand flexibility and operational accuracy.
[0023] Furthermore, the tightening portion cooperates with the elastic glove cuff to form a double-layer closure for the wearing opening of the glove body, thereby preventing the glove from falling off the hand, improving the fit, enhancing the ability to prevent foreign matter from entering, and ensuring flexible operation of the hand.
[0024] Furthermore, the elastic glove cuff can be stuffed into the glove body, which is convenient for storage when not in use, thus reducing space occupied.
[0025] Furthermore, the thickened portion can enhance the ability of the position to resist external force impact, reduce wear and tear on the position, enhance gripping ability, provide better support for the position, and relieve hand fatigue.
[0026] Furthermore, a corresponding protective layer can be provided inside the glove body according to actual needs to enhance safety protection and comfort of use. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0028] Figure 1 This is a schematic diagram of the structure of the palm side of the emergency rescue gloves provided by this invention;
[0029] Figure 2 This is a schematic diagram of the structure of the back of the hand side of the emergency rescue gloves provided by this invention.
[0030] In the picture:
[0031] 100-Emergency rescue gloves;
[0032] 10- Glove body; 11- Thumb finger sleeve; 12- Index finger sleeve; 13- Middle finger sleeve; 14- Ring finger sleeve; 15- Little finger sleeve; 16- Protective layer; 161- Separation gap; 17- Tightening part; 18- Thickening part; 19- Protective thickening layer;
[0033] 20-Elastic glove cuffs;
[0034] 30-touch screen layer;
[0035] 40-reflective fabric on joints;
[0036] 50-triangular reflective fabric; 51-top corner; 52-bottom edge;
[0037] 60-anti-slip glue dots;
[0038] 70-Protective hard shell;
[0039] 80-hook. DETAILED DESCRIPTION
[0040] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0041] The purpose of the utility model is to provide an emergency rescue glove to solve the problems existing in the prior art, make it easier and more convenient to wear, improve the wearing efficiency, and ensure the touch screen usage effect in various complex environments.
[0042] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the present invention is further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0043] Example 1
[0044] This embodiment provides a rescue glove 100, such as Figure 1 and Figure 2 As shown, it includes a glove body 10; an elastic glove cuff 20 is provided at the wearing opening of the glove body 10; the elastic glove cuff 20 can be elastically deformed, and the inner side wall of the elastic glove cuff 20 can be tightly attached to the outer surface of the wearer's arm after being worn; the glove body 10 has a thumb cuff 11, an index finger cuff 12, a middle finger cuff 13, a ring finger cuff 14 and a little finger cuff 15; on the palm side, the thumb cuff 11 and the index finger cuff 12 are fixedly provided with a touch screen layer 30 at the position corresponding to the distal phalanges of the hand; the touch screen layer 30 includes an inner touch screen microfiber layer and an outer touch screen wire layer; the touch screen microfiber layer and the touch screen wire layer can both be operated by touch screen.
[0045] By arranging the elastic glove cuff 20 at the wearing opening of the glove body 10, it can realize self-expansion under external force and self-contraction after the external force is released based on its elastic characteristics, so that the glove cuff 20 can automatically fit the wearer's wrist after the wearer puts it on, making it easier and more convenient to wear and improving the wearing efficiency; and the elastic glove cuff 20 can fit the wearer's wrist tightly, which can effectively prevent external dust, debris, etc. from entering the inside of the glove. Given the complexity of the rescue environment, it can effectively protect the hands of rescuers from injury; and the elastic glove cuff 20 can extend the protection length of the wrist part and increase the overall protection range; the elastic glove cuff 20 can extend the protection length of the wrist part and increase the overall protection range; The elasticity of the cuff 20 will not impose too many restrictions on the movement of the wrist, so that the rescue personnel can move their wrists freely when performing various rescue operations without affecting the flexibility and operation accuracy of the hands; and the double-layer touch screen structure formed by the touch screen micro-fiber layer and the touch screen wire layer can provide touch screen operation by the touch screen wire layer under normal circumstances. Under the influence of complex environments, the touch screen micro-fiber layer can also provide auxiliary touch screen effect by increasing the pressure under the touch screen, thereby enhancing the stability of the touch screen function; after the touch screen wire layer fails, the touch screen micro-fiber layer can continue to provide the touch screen function in time, thereby coping with touch screen operations in various complex environments.
[0046] Among them, for the relevant structures outside the glove body 10:
[0047] First, regarding the relevant settings at the wearing opening of the glove body 10:
[0048] Specifically, the elastic glove cuff 20 may be in the shape of an elastic thread or other shapes.
[0049] Among the optional solutions of this embodiment, it is more preferred that Figure 1 and Figure 2 As shown, a constricting portion 17 is provided on the side of the glove body 10 away from the elastic cuff 20. The constricting portion 17 is elastically deformable. The constricting portion 17 cooperates with the elastic cuff 20 to form a double-layer seal around the glove body 10, preventing it from falling off the hand, improving the fit, and enhancing the ability to prevent foreign matter from entering, thereby ensuring flexible operation.
[0050] Specifically, the tightening portion 17 may be formed by a built-in elastic cord or other structures capable of supporting elastic contraction.
[0051] In an alternative solution of this embodiment, it is preferred that the elastic glove cuff 20 is more flexible than the location of the wearing opening of the glove body 10, and the elastic glove cuff 20 can be stuffed into the glove body 10. The elastic glove cuff 20 can be stuffed into the glove body 10, which is convenient for storage when not in use, reducing space occupation.
[0052] Specifically, the elastic deformation ability of the wearing opening of the glove body 10 itself is very small or non-existent, so as to facilitate its support in the open state and facilitate the wearer to wear it during use.
[0053] Second, regarding the settings of the positions of the glove body 10 corresponding to the fingers:
[0054] Specifically, the touch screen line is sewn on the touch screen microfiber layer.
[0055] Among the optional solutions of this embodiment, it is more preferred that Figure 1 As shown, on the palm side, the index finger cuff 12, middle finger cuff 13, ring finger cuff 14, and pinky finger cuff 15 correspond to the middle phalanges of the hand, the thumb cuff 11 corresponds to the proximal phalanges of the hand, and the glove body 10 corresponds to the base of the thumb. The anti-slip adhesive dots 60 are designed to fit the fingers, improve grip, enhance thumb grip, ensure a secure base of the thumb, assist in delicate manipulation, and reduce misoperation.
[0056] Specifically, the anti-slip glue dots 60 are flame-retardant silicone dots, which can be provided by spraying.
[0057] Among the optional solutions of this embodiment, it is more preferred that Figure 1 and Figure 2As shown, on the back of the hand, shock-absorbing and anti-collision blocks are fixedly installed on the index finger cuff 12, middle finger cuff 13, ring finger cuff 14, and little finger cuff 15, corresponding to the positions of the proximal interphalangeal joints of the hand. The shock-absorbing and anti-collision blocks are wrapped with joint reflective cloth 40. The shock-absorbing and anti-collision blocks can protect the joints from external impact, provide effective cushioning for the joints, and reduce the risk of joint injury. The joint reflective cloth 40 can enhance visibility and reflect ambient light, making the rescuer's hands more visible in low-light environments. The joint reflective cloth 40 can also help command personnel more easily identify and locate the rescuer's hands, thereby better conducting command and dispatch. The joint reflective cloth 40 also fixes and protects the shock-absorbing and anti-collision blocks.
[0058] Specifically, the material of the shock-absorbing and anti-collision block is 5mm TPR material.
[0059] Specifically, necessary protective thickening layers 19 may be provided at the fingertips corresponding to the thumb, index finger, middle finger, ring finger and little finger, wherein the outer side of the protective thickening layers 19 of the thumb and index finger is covered with a touch screen layer 30 .
[0060] Third, regarding the settings of the position of the glove body 10 corresponding to the palm of the hand:
[0061] Among the optional solutions of this embodiment, it is more preferred that Figure 1 As shown, on the palm side, the glove body 10 is fixedly provided with a protective layer 16 corresponding to the palm center. Protective layer 16 is provided with a separation gap 161 corresponding to the palm lines (e.g., corresponding to the "heart line" and "wisdom line," while avoiding the "life line"). The provision of protective layer 16 enhances the protection level of the palm area, providing targeted protection. Furthermore, the provision of separation gap 161 minimizes the impact on hand dexterity, ensuring both hand flexibility and operational precision.
[0062] Among the optional solutions of this embodiment, it is more preferred that Figure 1 As shown, on the palm side, the glove body 10 is provided with a thickened portion 18 corresponding to the hypothenar eminence near the wrist. The thickened portion 18 can enhance the ability of this area to resist external impact, reduce wear and tear in this area, enhance grip, provide better support for this area, and relieve hand fatigue.
[0063] Fourth, regarding the settings of the glove body 10 corresponding to the back of the hand:
[0064] Among the optional solutions of this embodiment, it is more preferred that Figure 2As shown, a triangular reflective fabric 50 is fixedly mounted on the back of the glove body 10 near the wrist. The triangular reflective fabric 50 strongly reflects ambient light, making the rescuer's hands easily visible from a distance. Furthermore, the unique shape and eye-catching reflective effect of the triangular reflective fabric 50 make it easier for command personnel to identify and locate specific rescuers, thereby improving command, dispatch, and resource allocation.
[0065] Among the optional solutions of this embodiment, it is more preferred that Figure 2 As shown, the top corner 51 of the triangular reflective fabric 50 points in the direction of the wrist, and the bottom edge 52 of the triangular reflective fabric 50 corresponds to the direction of the index finger cuff 12, the middle finger cuff 13, the ring finger cuff 14, and the little finger cuff 15. The directional setting of the triangular reflective fabric 50 can provide clear directional indication, which helps rescuers quickly determine the position and direction of their hands and avoid misjudgment during operation.
[0066] Specifically, the triangular reflective cloth 50 can be in the shape of a triangle or an arrow, such as Figure 2 shown.
[0067] Specifically, a protective hard shell 70 may be provided on the glove body 10 at a position corresponding to the back of the hand.
[0068] Among them, the relevant settings inside the glove body 10 are:
[0069] In an alternative embodiment of the present invention, a waterproof layer, a fireproof layer, a thermal insulation layer, a flexible comfort layer, or a sweat-absorbing layer can be preferably provided inside the glove body 10. A corresponding protective layer 16 can also be provided inside the glove body 10 as needed to enhance safety and comfort.
[0070] Specifically, the glove body 10 can be made of Kevlar material.
[0071] Specifically, the composition colors of the glove body 10 can be selected according to actual effects.
[0072] Specifically, the corresponding protective layer provided inside the glove body 10 can be set according to actual needs, and the positions of the inner and outer layers can also be set according to different usage scenarios and other conditions.
[0073] Among them, other relevant settings of the glove body 10 are as follows:
[0074] Specifically, a hook 80 may be provided on the outside of the glove body 10 for easy carrying and placement.
[0075] The present invention uses specific examples to illustrate the principles and implementation methods of the present invention. The above examples are only intended to help understand the method and core concept of the present invention. At the same time, those skilled in the art will find that the specific implementation methods and application scopes may vary based on the concept of the present invention. In summary, the contents of this specification should not be construed as limiting the present invention.
Claims
1. A rescue glove, characterized by: Including glove body; The wearing opening of the glove body is provided with an elastic glove cuff; the elastic glove cuff is elastically deformable, and the inner side wall of the elastic glove cuff can be closely attached to the outer surface of the wearer's arm after being worn; The glove body comprises a thumb cuff, an index finger cuff, a middle finger cuff, a ring finger cuff and a little finger cuff; on the palm side, the thumb cuff and the index finger cuff are fixedly provided with a touch screen layer at positions corresponding to the distal phalanges of the hand; The touch screen layer includes an inner touch screen microfiber layer and an outer touch screen wire layer; both the touch screen microfiber layer and the touch screen wire layer can be operated by touch screen; A triangular reflective cloth is fixedly provided on the back of the glove body near the wrist, and the top angle of the triangular reflective cloth points to the direction of the wrist.
2. The emergency rescue gloves according to claim 1, characterized in that: On the back of the hand, the index finger cuff, the middle finger cuff, the ring finger cuff and the little finger cuff are fixedly provided with shock-absorbing and anti-collision blocks at positions corresponding to the proximal interphalangeal joints of the hand, and the outer side of the shock-absorbing and anti-collision blocks is wrapped with joint reflective cloth.
3. The emergency rescue gloves according to claim 1, characterized in that: The bottom side of the triangular reflective cloth corresponds to the directions of the index finger sleeve, the middle finger sleeve, the ring finger sleeve and the little finger sleeve.
4. The emergency rescue gloves according to claim 1, characterized in that: On the palm side, the index finger cuff, the middle finger cuff, the ring finger cuff and the little finger cuff are arranged at positions corresponding to the middle phalanges of the hand, the thumb cuff is arranged at a position corresponding to the proximal phalanges of the hand, and the glove body is arranged at a position corresponding to the base of the hand. Anti-slip rubber spots are provided.
5. The emergency rescue gloves according to claim 1, characterized in that: On the palm side, a protective layer is fixedly provided on the glove body at a position corresponding to the palm of the hand, and a separation gap is provided on the protective layer at a position corresponding to the palm print of the hand.
6. The emergency rescue gloves according to claim 1, characterized in that: A tightening portion is provided on a side of the wearing opening of the glove body away from the elastic glove cuff, and the tightening portion can be elastically deformed.
7. The emergency rescue gloves according to claim 1, characterized in that: The flexibility of the elastic glove cuff is greater than the flexibility of the position of the glove body having the wearing opening, and the elastic glove cuff can be stuffed into the glove body.
8. The emergency rescue gloves according to claim 1, characterized in that: On the palm side, the glove body is provided with a thickened portion at a position corresponding to the hypothenar eminence of the hand close to the wrist.
9. The emergency rescue gloves according to claim 1, characterized in that: The interior of the glove body can be provided with a waterproof layer, a fireproof layer, a heat-insulating layer, a flexible and comfortable layer or a sweat-absorbing layer.