A single soldier electric and stab-proof suit
By designing a double-layered individual anti-electric shock and anti-stab kit, including a protective vest, protective sleeves, and protective leg wraps, the problem of traditional equipment being unable to withstand high-voltage electric shocks and sharp object strikes has been solved, achieving all-round safety protection and convenient wear.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHINESE PEOPLES LIBERATION ARMY ARMY SPECIAL MEDICAL CENTER
- Filing Date
- 2025-07-16
- Publication Date
- 2026-07-24
Smart Images

Figure CN224552214U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of protective tool technology, specifically to a personal anti-electric shock and anti-stab kit. Background Technology
[0002] In modern military and law enforcement fields, non-lethal weapons are widely used because they can incapacitate personnel or equipment while minimizing collateral damage. These weapons are not intended to kill, but rather to achieve their operational objectives by rendering the target incapable of fighting or functioning properly. Non-lethal weapons are diverse, employing technologies encompassing acoustic, optical, electronic, kinetic, biological, chemical, and multi-technology integration.
[0003] Among these, stun guns are widely used on the front lines of counter-terrorism because they can temporarily render personnel unconscious and unable to resist. For example, the Indian Army's "Vajra" stun baton and "Trident" spear stun gun both possess high-voltage electric shock capabilities, capable of instantly paralyzing a person to the ground, but usually not posing a serious threat to life. In addition, there are other stun guns used for close combat, such as the "Engineering Hammer" stun gloves.
[0004] These non-lethal weapons, especially stun guns, pose new challenges to individual soldier protection. Traditional protective gear may not be effective against high-voltage electric shocks and sharp object strikes. Therefore, a specially designed anti-electric shock and anti-stab gear is needed to ensure the safety of individual soldiers. Utility Model Content
[0005] The purpose of this invention is to provide a personal anti-electric shock and anti-stab kit to solve the problem that traditional protective equipment may not be able to effectively resist high-voltage electric shock and sharp object impacts, as mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides a personal anti-electric shock and anti-stab kit, including a protective vest, protective sleeves, and protective leg wraps. The protective vest includes an upper body area, an abdominal area, and a groin area. The protective vest, protective sleeves, and protective leg wraps are all fixed to the user's body with self-adhesive tape. The protective vest, protective sleeves, and protective leg wraps are all two-layer structures, with an outer anti-electric shock layer and an inner anti-stab layer.
[0007] Preferably, the self-adhesive tape is a strip structure with its ends self-adhesively connected by Velcro to form a closed ring structure, which is then attached to the protective vest, protective sleeve, and protective leg wraps.
[0008] Preferably, the protective vest has two self-adhesive straps located at the chest and waist, the protective sleeves have two self-adhesive straps located at the forearm and upper arm, and the protective leg wraps have two self-adhesive straps located at the thigh and calf.
[0009] Preferably, the anti-electric shock layer includes an insulating layer, and the outer surface of the insulating layer is provided with a wear-resistant surface.
[0010] Preferably, the puncture-resistant layer includes a protective layer, a buffer layer is provided on the outer side of the protective layer, a fiber material layer is installed on the outer side of the buffer layer, and a flexible layer is provided on the inner side of the protective layer.
[0011] Preferably, a plurality of rough-surface hook and loop fasteners are installed on the inner side of the insulating layer, and a plurality of barbed hook and loop fasteners are installed on the outer side of the fiber material layer, wherein the rough-surface hook and loop fasteners and the barbed hook and loop fasteners are bonded and fixed together.
[0012] Preferably, the insulating layer is made of rubber material, and the wear-resistant surface is made of Oxford cloth or polyethylene material.
[0013] Preferably, the protective layer is a mesh structure formed by connecting several elliptical rings in sequence, the buffer layer is made of several arc-shaped pieces connected together, the arc-shaped pieces are made of metal sheet material, the fiber material layer is made of polyethylene fiber or aramid fiber, and the flexible layer is made of polyester fiber or aramid material.
[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: This individual anti-electric shock and anti-stab kit has an outer layer that is designed to resist electric shock. It is made of insulating materials and has a wear-resistant surface, which can effectively resist high-voltage electric shock and protect the user from electric shock injury. The inner layer of the kit is a puncture-resistant layer. Through the design of a multi-layer structure (including a protective layer, a buffer layer, a fiber material layer and a flexible layer), it can effectively block the puncture of sharp objects and provide additional safety protection.
[0015] Each part of the kit (protective vest, protective sleeves, and protective leg wraps) is secured to the user with self-adhesive tape. The self-adhesive tape uses a Velcro design for easy and quick donning and removal, while ensuring a secure and non-detachable fit. The protective vest, protective sleeves, and protective leg wraps all have multiple self-adhesive tapes located on key areas such as the chest, waist, forearms, upper arms, thighs, and calves, ensuring comprehensive fixation and protection.
[0016] The shockproof layer uses rubber as the insulation, offering excellent insulation and abrasion resistance. The abrasion-resistant surface uses Oxford cloth or polyethylene, further enhancing the kit's durability. The puncture-resistant layer employs an elliptical mesh structure, combined with a metal sheet buffer layer, a polyethylene or aramid fiber layer, and a flexible polyester or aramid layer, forming a robust yet flexible protective system.
[0017] The kit's components are secured with Velcro, allowing for easy assembly or disassembly to suit various needs, enabling a modular design. By adjusting the position and quantity of the self-adhesive tape, and selecting different materials for the shock-proof and puncture-proof layers, customized protective kits can be created to meet specific requirements. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the structure of the protective vest in this utility model; Figure 3 This is a schematic diagram of the layered structure of this utility model; Figure 4 This is a schematic diagram of the structure of the anti-electric shock layer in this utility model; Figure 5 This is a schematic diagram of the puncture-resistant layer in this utility model; The meanings of the labels in the diagram are as follows: 1. Protective vest; 11. Upper body area; 12. Abdominal area; 13. Crotch area; 2. Protective sleeves; 3. Protective leg wraps; 4. Self-adhesive tape; 5. Anti-electric shock layer; 51. Abrasion-resistant surface; 52. Insulating layer; 521. Fleece-faced hook and loop fasteners; 6. Puncture-resistant layer; 61. Fiber material layer; 611. Puncture-faced hook and loop fasteners; 62. Cushioning layer; 63. Protective layer; 64. Flexible layer. Detailed Implementation
[0019] 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.
[0020] This utility model provides a personal anti-electric shock and anti-stab kit, such as Figures 1-5 As shown, the device includes a protective vest 1, protective sleeves 2, and protective leg wraps 3. There are two protective sleeves 2 and two protective leg wraps 3. The protective vest 1 includes an upper body area 11, an abdominal area 12, and a crotch area 13. The upper body area 11, abdominal area 12, and crotch area 13 are integrally formed. One end of the crotch area 13 is fixedly connected to the bottom front side of the abdominal area 12, and the other end is fixedly fixed to the bottom back side of the abdominal area 12 by Velcro, so that the crotch area 13 is easy to wear. The protective vest 1, protective sleeves 2, and protective leg wraps 3 are all fixed to the user's body by self-adhesive tape 4. The protective vest 1, protective sleeves 2, and protective leg wraps 3 are all two-layer structures, with an outer layer of anti-electric shock layer 5 and an inner layer of puncture-resistant layer 6.
[0021] This individual soldier's anti-electric shock and anti-stab kit features a scientifically designed structure, comprising a protective vest (1), protective sleeves (2), and protective leggings (3). The vest (1) is further subdivided into an upper body area (11), an abdominal area (12), and a groin area (13), providing comprehensive coverage of all key areas of the user's upper body. All parts of the kit are secured to the user with self-adhesive straps (4), ensuring convenient and secure wear. More importantly, the vest (1), sleeves (2), and leggings (3) all employ a two-layer design: an outer anti-electric shock layer (5) effectively resists the threat of high-voltage electric shock; and an inner anti-puncture layer (6) blocks punctures from sharp objects, ensuring user safety. This dual-layer protective structure significantly enhances the kit's protective performance, providing comprehensive and effective protection for soldiers in complex battlefield environments.
[0022] In this embodiment, the self-adhesive tape 4 is a strip structure with its ends connected by Velcro to form a closed loop structure, which is respectively bound to the protective vest 1, protective sleeve 2, and protective leg wrap 3. This design allows each part of the kit to be easily fixed to the user. The Velcro end design of the self-adhesive tape 4 makes it very convenient to put on and take off, while ensuring a secure fixation and preventing it from falling off.
[0023] Specifically, the protective vest 1 has two self-adhesive straps 4, located at the chest and waist respectively; the protective sleeves 2 have two self-adhesive straps 4, located at the forearms and upper arms respectively; and the protective leg wraps 3 have two self-adhesive straps 4, located at the thighs and calves respectively. The self-adhesive straps 4 at the chest and waist ensure that the protective vest 1 fits snugly against the user's upper body, providing good fixation and wearing comfort. The self-adhesive straps 4 at the forearms and upper arms allow the protective sleeves 2 to be securely fastened to the user's arms, providing effective protection without hindering arm movement. The self-adhesive straps 4 at the thighs and calves ensure that the protective leg wraps 3 fit snugly against the user's legs, providing good fixation and protection.
[0024] Furthermore, the shock protection layer 5 includes an insulating layer 52, the outer surface of which is provided with an abrasion-resistant surface 51. The insulating layer 52 can effectively resist the threat of high-voltage electric shock, while the abrasion-resistant surface 51 enhances the durability of the shock protection layer 5, enabling the kit to maintain good protective performance during long-term use.
[0025] Furthermore, the puncture-resistant layer 6 includes a protective layer 63, a buffer layer 62 on the outer side of the protective layer 63, a fiber material layer 61 on the outer side of the buffer layer 62, and a flexible layer 64 on the inner side of the protective layer 63. This multi-layer structure design gives the puncture-resistant layer 6 excellent puncture resistance, while the design of the buffer layer 62 and the flexible layer 64 also provides good comfort and fit.
[0026] Furthermore, several looped hook and loop fasteners 521 are installed on the inner side of the insulation layer 52, and several barbed hook and loop fasteners 611 are installed on the outer side of the fiber material layer 61. The looped hook and loop fasteners 521 and the barbed hook and loop fasteners 611 are bonded and fixed together. This hook and loop fastener fixing method allows the insulation layer 52 and the fiber material layer 61 to be firmly bonded together, ensuring the overall structural stability and protective performance of the kit.
[0027] Furthermore, the insulation layer 52 is made of rubber, and the abrasion-resistant surface 51 is made of Oxford cloth or polyethylene. This choice of materials ensures that all parts of the kit offer excellent protection, durability, and comfort, while meeting the needs of various usage environments.
[0028] Furthermore, the protective layer 63 is a mesh structure formed by sequentially connecting several elliptical rings; the cushioning layer 62 is composed of several arc-shaped pieces made of metal sheet material; the fiber material layer 61 is made of polyethylene fiber or aramid fiber; and the flexible layer 64 is made of polyester fiber or aramid material. These material choices ensure excellent protective performance, durability, and comfort in all parts of the kit. Rubber materials provide good insulation; Oxford cloth or polyethylene materials enhance abrasion resistance; metal sheet materials provide additional cushioning and support; polyethylene fiber or aramid fiber has excellent puncture resistance; and polyester fiber or aramid material provides good flexibility and fit. These material choices meet the needs of different usage environments, ensuring the kit's comprehensive protective performance.
[0029] This utility model's individual anti-electric shock and anti-stab kit, when in use, first comprises a protective vest 1, protective sleeves 2, and protective leg wraps 3. The protective vest 1 is a pullover style and is subdivided into an upper body area 11, an abdominal area 12, and a groin area 13, achieving comprehensive coverage of all key parts of the user's upper body. All parts of the kit are secured to the user using self-adhesive tape 4. The self-adhesive tape 4 is a strip-shaped structure, with its ends self-adhesive via Velcro, forming a closed loop structure, making it convenient to wear and securely fixed.
[0030] The protective vest 1 has two self-adhesive straps 4, located at the chest and waist respectively, ensuring a tight fit against the user's upper body, providing good support and comfort. The protective sleeves 2 have two self-adhesive straps 4, located at the forearms and upper arms respectively, securing them firmly to the user's arms, providing effective protection without hindering arm movement. The protective leg wraps 3 have two self-adhesive straps 4, located at the thighs and calves respectively, ensuring a tight fit against the user's legs, providing good support and protection.
[0031] The shock protection layer 5 comprises an insulating layer 52 and an abrasion-resistant surface 51. The insulating layer 52 is made of rubber and effectively resists the threat of high-voltage electric shock. The abrasion-resistant surface 51 is made of Oxford cloth or polyethylene, enhancing the durability of the shock protection layer 5 and ensuring that the kit maintains good protective performance during long-term use.
[0032] The puncture-resistant layer 6 comprises a protective layer 63, a buffer layer 62, a fiber material layer 61, and a flexible layer 64. The protective layer 63 is a mesh structure formed by sequentially connecting several elliptical rings, providing excellent puncture resistance. The buffer layer 62 consists of several connected arc-shaped sheets made of metal sheet material, providing additional cushioning and support. The fiber material layer 61 is made of polyethylene fiber or aramid fiber, further enhancing puncture resistance. The flexible layer 64 is made of polyester fiber or aramid material, providing good flexibility and fit.
[0033] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A personal anti-electric shock and anti-stab kit, comprising a protective vest (1), protective sleeves (2), and protective leg wraps (3), characterized in that: The protective vest (1) includes an upper body area (11), an abdominal area (12) and a crotch area (13). The protective vest (1), protective sleeves (2) and protective leg wraps (3) are all fixed to the user's body by self-adhesive tape (4). The protective vest (1), protective sleeves (2) and protective leg wraps (3) are all two-layer structures, with the outer layer being an anti-electric shock layer (5) and the inner layer being an anti-puncture layer (6).
2. The individual anti-electric shock and anti-stab kit according to claim 1, characterized in that: The self-adhesive tape (4) is a strip structure, and its ends are self-adhesively connected by Velcro to form a closed ring structure, which is respectively bound to the protective vest (1), protective sleeve (2) and protective leg wrap (3).
3. The individual anti-electric shock and anti-stab kit according to claim 2, characterized in that: The protective vest (1) is provided with two self-adhesive straps (4), located at the chest and waist respectively. The protective sleeve (2) is provided with two self-adhesive straps (4), located at the forearm and the back arm respectively. The protective leg wrap (3) is provided with two self-adhesive straps (4), located at the thigh and the calf respectively.
4. The individual anti-electric shock and anti-stab kit according to claim 1, characterized in that: The anti-electric shock layer (5) includes an insulating layer (52), and the outer surface of the insulating layer (52) is provided with a wear-resistant surface (51).
5. The individual anti-electric shock and anti-stab kit according to claim 4, characterized in that: The puncture-resistant layer (6) includes a protective layer (63), a buffer layer (62) is provided on the outside of the protective layer (63), a fiber material layer (61) is installed on the outside of the buffer layer (62), and a flexible layer (64) is provided on the inside of the protective layer (63).
6. The individual anti-electric shock and anti-stab kit according to claim 5, characterized in that: A plurality of hook and loop fasteners (521) are installed on the inner side of the insulating layer (52), and a plurality of hook and loop fasteners (611) are installed on the outer side of the fiber material layer (61). The hook and loop fasteners (521) and the hook and loop fasteners (611) are bonded and fixed together.
7. The individual anti-electric shock and anti-stab kit according to claim 4, characterized in that: The insulating layer (52) is made of rubber material, and the wear-resistant surface (51) is made of Oxford cloth or polyethylene material.
8. The individual anti-electric shock and anti-stab kit according to claim 5, characterized in that: The protective layer (63) is a mesh structure formed by connecting several elliptical rings in sequence. The buffer layer (62) is made of several arc-shaped pieces connected together. The arc-shaped pieces are made of metal sheet material. The fiber material layer (61) is made of polyethylene fiber or aramid fiber. The flexible layer (64) is made of polyester fiber or aramid material.