Bulletproof vest with improved snugness

By combining high-strength protective devices, automatic inflation devices, sensing devices, and multi-channel suction pumps, the shortcomings of traditional bulletproof vests in terms of protective performance, intelligent response, and fit have been solved, resulting in an intelligent bulletproof vest that provides all-round safety protection.

CN117537665BActive Publication Date: 2026-02-10DONGGUAN WANLIMA TECH DEV CO LTD
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Patent Information

Application Number
CN202311504915.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-13
Publication Date
2026-02-10
Estimated Expiration
2043-11-13

AI Technical Summary

Technical Problem

Traditional bulletproof vests are inadequate in terms of protective performance, intelligent response, fit, and body coverage, and cannot meet the complex and ever-changing security needs of modern times.

Method used

It adopts a combination design of high-strength protective devices, automatic inflation devices, sensing devices, control devices and multi-channel suction pumps, combined with intelligent technology, to achieve real-time perception and rapid response to external threats. Through the intelligent inflation system of air bags and cushioning bags, and the injection and suction of non-Newtonian liquids, it provides all-round protection and comfort.

Benefits of technology

It improves the protective performance, flexibility, and comfort of bulletproof vests, enabling intelligent and rapid responses to environmental changes and providing more comprehensive safety protection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a bulletproof vest with improved adhesion, comprising: a high-strength protection device, an automatic inflation device, a sensing device, a control device, and a suction pump. The high-strength protection device improves the protection effect through the combination of a front bag, a buffer bag, a breathable cloth, and an air bag. The automatic inflation device achieves intelligent inflation control of the air bag through the synergistic effect of an air pump, a limiting spring, and a sensing element. The sensing device is combined with a camera, and through the contact of an electromagnet and a conductive end, intelligent control of the suction pump is achieved. The control device further regulates the suction pump through the action of a button and a recycling switch. The electrical connection and series configuration between multiple suction pumps ensure the instantaneous injection and suction of non-Newtonian liquid. The bulletproof vest also includes a full-body covering design, including a side bag, a bulletproof layer, a shoulder wrap, a head cover, and gloves, to provide more comprehensive protection, aiming to improve protection performance, flexibility, and the comfort of the wearer.
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Description

TECHNICAL FIELD

[0001] The present invention relates to the field of bulletproof vests, particularly to a bulletproof vest that improves snugness. BACKGROUND

[0002] Traditional bulletproof vests have limitations in terms of protective performance, intelligence level, and comfort, so continuous innovation is needed to meet the evolving safety needs.

[0003] 1. Limitations of traditional bulletproof vests: Traditional bulletproof vests usually use multiple layers of composite materials or hard armor, which can provide some protection, but lack flexibility when facing different threats. In addition, for high-speed flying threat objects, the protective performance of traditional bulletproof vests may not be sufficient to cope with them.

[0004] 2. Lack of intelligent response: Traditional bulletproof vests lack the ability to perceive external threats and respond quickly. The lack of intelligent perception systems and automatic adjustment mechanisms means that bulletproof vests cannot dynamically adjust the state of the protective layer according to real-time threats, reducing their adaptability and comprehensiveness.

[0005] 3. Lack of snugness and comfort: The snugness of a bulletproof vest is crucial to improving the comfort and flexibility of the wearer. Traditional designs may cause discomfort during movement, affecting the wearer's ability to move.

[0006] 4. Lack of body coverage and comprehensive protection: Traditional bulletproof vests may only cover the back, leaving the waist, back, and other parts unprotected, lacking comprehensive coverage.

[0007] 5. The need for improved protective layer structure: The protective layer structure of traditional bulletproof vests needs to be more precise and flexible to adapt to different threats and quickly adjust its state when threatened.

[0008] Therefore, the background of the present invention is to overcome the shortcomings of traditional bulletproof vests and provide a more complex and intelligent protective device that improves protective performance, intelligent response, snugness, and body coverage, thereby better adapting to modern complex and changing safety needs. SUMMARY

[0009] This invention relates to a bulletproof vest that improves snugness, aiming to improve protective performance, flexibility, and comfort through innovative design and intelligent technology. The main content of the invention is as follows:

[0010] 1. High-strength protective device

[0011] The bulletproof vest includes a set of high-strength protective devices, which consists of a front bag, a buffer bag, a breathable cloth, and an air bag. The front bag is located on the outside of the bulletproof vest, and the buffer bag is in close contact with the front bag, forming a buffer structure with an empty cavity inside. The breathable cloth is located between the buffer bag and the air bag, providing ventilation function. The air bag is located between the breathable cloth and the buffer bag, forming an intelligent inflation system.

[0012] 2. Automatic inflation device

[0013] The bulletproof vest further includes an automatic inflation device, which includes a second connecting line, an air pump, a limit spring, a first spring, a second spring, a first sensing piece, and a second sensing piece. The air pump is connected to the air bag through the second connecting line, and the limit spring is connected to the space between the air bag and the breathable cloth to ensure the uniformity of inflation. The first spring is connected to the breathable cloth and the first sensing piece, and the second spring is connected to the air bag and the second sensing piece, so that when the first sensing piece and the second sensing piece are in contact, the start and stop of the air pump are controlled, realizing intelligent inflation control of the air bag.

[0014] 3. Combination of sensing device and camera

[0015] The bulletproof vest also includes a sensing device, which includes an electromagnet and a conductive end. The sensing device is internally provided with a sensor to analyze the speed of the flying object in the camera, and the electromagnet is energized to make it magnetic. The conductive end is connected to the first button to control the suction pump and inject non-Newtonian liquid into the buffer bag to increase the energy absorption capacity of the impact.

[0016] 4. Control device

[0017] The control device of the bulletproof vest includes a first button, a recycling switch, and a sensing block. The first button is electrically connected to the sensing device, and the recycling switch is connected to the sensing block through a spring to control the suction of the suction pump and realize accurate control of the liquid.

[0018] 5. Multi-channel suction pump

[0019] The suction pump includes multiple suction pumps, which are internally provided with a storage cavity for storing non-Newtonian liquid, and are electrically connected and configured in series to ensure the instantaneous injection and suction of the liquid.

[0020] 6. Accessories and body covering design

[0021] The bulletproof vest also includes a side bag, a bulletproof layer, a shoulder strap, a head cover, and gloves to realize comprehensive coverage and protection of the body.

[0022] Through the above innovative design and structural combination, this invention has brought significant technical progress in the field of bulletproof vests in terms of improved tightness, protective performance, intelligent response, and body coverage.

[0023] Preferably, a bulletproof vest with improved fit includes: a high-strength protective device, a suction pump, a control device, a sensing device, an automatic inflation device, a camera, and a bulletproof layer; the high-strength protective device is connected to the suction pump; the automatic inflation device is connected to the high-strength protective device; the control device is electrically connected to the sensing device; the control device is electrically connected to the suction pump; and the sensing device is electrically connected to the camera.

[0024] Preferably, the high-strength protective device includes: a front pack, a cushioning bag, a breathable fabric, and an air bag; the front pack is placed on the outside of the high-strength protective device; the cushioning bag is in close contact with the front pack; the interior of the cushioning bag is hollow; and the air bag is located between the breathable fabric and the cushioning bag.

[0025] Preferably, the control device includes: a first button, a recovery switch, and a sensing block; the first button is electrically connected to the sensing device; a spring is fixedly provided between the recovery switch and the sensing block; when the recovery switch contacts the sensing block, it controls the suction of the suction pump.

[0026] Preferably, the automatic inflation device includes: a second connecting line, an air pump, a limiting spring, a first spring, a second spring, a first sensor, and a second sensor; the air pump is connected to the air bag via the second connecting line; the limiting spring connects the air bag to the breathable fabric; the first spring connects the breathable fabric to the first sensor; the second spring connects the air bag to the second sensor; when the first sensor contacts the second sensor, it controls the air pump to start; the automatic inflation device can adjust the fit between the breathable fabric and the human body, and work with the air bag to improve body comfort.

[0027] Preferably, the sensing device includes: an electromagnet and conductive terminals; the sensing device is equipped with a sensor, which can analyze the speed of a flying object in the camera and energize the electromagnet; the electromagnet is magnetic when energized; a pair of conductive terminals are provided; when the conductive terminals are in contact with the first button, the suction pump is controlled to inject non-Newtonian liquid into the buffer bag.

[0028] Preferably, the material of the first button can be attracted by the electromagnet when it is energized.

[0029] Preferably, multiple suction pumps are provided, each suction pump having an internal receiving chamber for holding non-Newtonian liquids, and the suction pumps are electrically connected and connected in series.

[0030] Preferably, the bulletproof vest with improved fit further includes: side pockets, a bulletproof layer, shoulder circumference, hood, and gloves; the side pockets are located on the sides of the bulletproof vest; the bulletproof layer is located on the outer surface of the bulletproof vest; the shoulder circumference is located on the inner side of the bulletproof layer; the hood is located on the surface of the shoulder circumference; and the gloves are located on the sides of the bulletproof vest.

[0031] Preferably, the bulletproof vest with improved fit further includes: a suction tube; multiple suction tubes are provided; the suction tube connects the cushioning bag and the suction pump.

[0032] Preferably, the bulletproof vest with improved fit further includes: a first connecting wire; the first connecting wire is electrically connected to the sensing device and the suction pump.

[0033] Compared with the prior art, the beneficial effects of the present invention are:

[0034] This improved fit bulletproof vest offers several beneficial technical advantages, including but not limited to:

[0035] 1. High-strength protective design: The combination of a front pack, cushioning bag, breathable fabric, and airbag effectively improves the protective performance of the bulletproof vest. The front pack serves as the outer protective layer, the cushioning bag enhances the cushioning effect of the bulletproof vest, and the airbag, located between the breathable fabric and the cushioning bag, further enhances the protective performance.

[0036] 2. Interlocking of Control and Sensing Devices: Through electrical connection, the control and sensing devices work in coordination. The sensing device analyzes the speed of flying objects in the camera using internal sensors, controls the electromagnet to be energized, thereby adjusting the state of the protective layer and increasing real-time response to threats.

[0037] 3. Intelligent design of automatic inflation device: The contact between the first and second sensors controls the opening of the air pump, and the setting of the limit spring and spring allows the space between the air bag and the breathable cloth to be flexibly adjusted, ensuring the uniformity and adaptability of inflation.

[0038] 4. Multi-channel design of suction pumps: The electrical connection and series configuration between multiple suction pumps enable them to work together, improving the injection efficiency and uniformity of non-Newtonian liquids.

[0039] 5. Integration of sensing devices and cameras: The sensors inside the sensing device monitor flying objects in the camera in real time, enabling the bulletproof vest to respond more intelligently and improve its protective effect.

[0040] 6. Integrated design of side pockets, bulletproof layers, shoulder pads, hoods, and gloves: The addition of these accessories further improves the range of protection and body coverage, increasing overall safety.

[0041] 7. Suction tube configuration: The connection of multiple suction tubes, in conjunction with the cushioning bag and suction pump, improves the fit and comfort of the bulletproof vest.

[0042] 8. Intelligent control system: The control device achieves precise control of the suction pump through components such as the first button and recovery switch, enabling the bulletproof vest to make intelligent adjustments according to the actual situation, thus improving its combat adaptability.

[0043] The combined effect of these technologies enables the bulletproof vest to provide high-strength protection while also responding intelligently, quickly, and comprehensively to changes in the environment, thus improving the wearer's safety. Attached Figure Description

[0044] Figure 1 This is a perspective view of the structure of the present invention;

[0045] Figure 2 This is a front view of the present invention;

[0046] Figure 3 This is a cross-sectional view of the present invention;

[0047] Figure 4 This is a side view of the present invention;

[0048] Figure 5 This is a side sectional view of the high-strength protective device of the present invention;

[0049] Figure 6 This is a cross-sectional view of the automatic inflation device of the present invention;

[0050] Figure 7 This is a schematic diagram of the appearance of the present invention;

[0051] Figure 8 This is a schematic diagram of the control device structure of the present invention;

[0052] Figure 9 This is a schematic diagram of the elevation of the electromagnet of the present invention;

[0053] In the diagram: 1. Side pack; 2. High-strength protective device; 201. Front pack; 202. Breathable fabric; 203. Air bag; 3. Camera; 4. Bulletproof layer; 401. Shoulder circumference; 402. Buffer bag; 5. Suction pump; 6. Control device; 601. First button; 602. Retraction switch; 603. Sensor block; 7. Headgear; 8. First connecting line; 9. Gloves; 10. Suction tube; 11. Second connecting line; 12. Sensing device; 1201. Electromagnet; 1202. Conductive end; 13. Air pump; 14. Limiting spring; 15. First spring; 16. Second spring; 17. First sensor; 18. Second sensor. Detailed Implementation

[0054] This invention relates to a bulletproof vest with improved fit, designed to enhance protection, flexibility, and comfort through innovative design and intelligent technology. The main features of the invention are as follows:

[0055] 1. High-strength protective device 2

[0056] The bulletproof vest includes a high-strength protective device 2, which consists of a front pack 201, a cushioning bag 402, a breathable fabric 202, and an airbag 203. The front pack 201 is located on the outside of the bulletproof vest, and the cushioning bag 402 is in close contact with the front pack 201, forming a cushioning structure with an internal cavity. The breathable fabric 202 is located between the cushioning bag 402 and the airbag 203, providing ventilation. The airbag 203 is positioned between the breathable fabric 202 and the cushioning bag 402, forming an intelligent inflation system.

[0057] 2. Automatic inflation device

[0058] The bulletproof vest further includes an automatic inflation device, comprising a second connecting line 11, an air pump 13, a limiting spring 14, a first spring 15, a second spring 16, a first sensor 17, and a second sensor 19. The air pump 13 is connected to the air bag 203 via the second connecting line 11, while the limiting spring 14 connects to the space between the air bag 203 and the breathable fabric 202, ensuring uniform inflation. The first spring 15 connects to the breathable fabric 202 and the first sensor 17, and the second spring 16 connects to the air bag 203 and the second sensor 19, so that when the first sensor 17 contacts the second sensor 19, the air pump 13 is controlled to start and stop, achieving intelligent inflation control of the air bag 203.

[0059] 3. Combination of sensor 12 and camera 3

[0060] The bulletproof vest also includes a sensing device 12, which includes an electromagnet 1201 and a conductive end 1202. The sensing device 12 contains a sensor that analyzes the speed of a flying object in the camera 3 and energizes the electromagnet 1201, making it magnetic. The conductive end 1202 is connected to a first button 601 to control a suction pump 5, injecting a non-Newtonian liquid into the cushioning bag 402 to increase its energy absorption capacity against impacts.

[0061] 4. Control device 6

[0062] The control device 6 of the bulletproof vest includes a first button 601, a recovery switch 602, and a sensor block 603. The first button 601 is electrically connected to the sensor device 12, and the recovery switch 602 is connected to the sensor block 603 via a spring, controlling the suction pump 5 to achieve precise control of the liquid.

[0063] 5. Multi-channel suction pump

[0064] The suction pump 5 includes multiple suction pumps 5, each with an internal receiving chamber for holding non-Newtonian liquids. The suction pumps 5 are electrically connected and connected in series to ensure instantaneous injection and suction of the liquid.

[0065] 6. Accessories and Body Coverage Design

[0066] The bulletproof vest also includes side pockets 1, bulletproof layers 4, shoulder circumference 401, hood 7, and gloves 9 to achieve comprehensive coverage and protection for the body.

[0067] Specifically, a bulletproof vest with improved fit includes: a high-strength protective device 2, a suction pump 5, a control device 6, a sensing device 12, an automatic inflation device, a camera 3, and a bulletproof layer 4; the high-strength protective device 2 is connected to the suction pump 5; the automatic inflation device is connected to the high-strength protective device 2; the control device 6 is electrically connected to the sensing device 12; the control device 6 is electrically connected to the suction pump 5; and the sensing device 12 is electrically connected to the camera 3.

[0068] Specifically, the high-strength protective device 2 includes: a front pack 201, a cushioning bag 402, a breathable fabric 202, and an air bag 203; the front pack 201 is placed on the outside of the high-strength protective device 2; the cushioning bag 402 is in close contact with the front pack 201; the interior of the cushioning bag 402 is a cavity; and the air bag 203 is located between the breathable fabric 202 and the cushioning bag 402.

[0069] Specifically, the control device 6 includes: a first button 601, a recovery switch 602, and a sensing block 603; the first button 601 is electrically connected to the sensing device 12; a spring is fixedly provided between the recovery switch 602 and the sensing block 603; when the recovery switch 602 contacts the sensing block 603, it controls the suction of the suction pump 5.

[0070] Specifically, the automatic inflation device includes: a second connecting line 11, an air pump 13, a limiting spring 14, a first spring 15, a second spring 16, a first sensor 17, and a second sensor 19; the air pump 13 is connected to the air bag 203 via the second connecting line 11; the limiting spring 14 connects the air bag 203 to the breathable fabric 202; the first spring 15 connects the breathable fabric 202 to the first sensor 17; the second spring 16 connects the air bag 203 to the second sensor; when the first sensor 17 contacts the second sensor 19, it controls the opening of the air pump 13. The automatic inflation device can adjust the fit between the breathable fabric 202 and the human body, and work with the air bag 203 to improve body comfort.

[0071] Specifically, the sensing device 12 includes an electromagnet 1201 and a conductive end 1202; the sensing device 12 is equipped with a sensor, which can analyze the speed of the flying object in the camera 3 and energize the electromagnet 1201; the electromagnet 1201 is magnetic when energized; a pair of conductive ends 1202 are provided; when the conductive ends 1202 are in contact with the first button 601, the suction pump 5 is controlled to inject non-Newtonian liquid into the buffer bag 402.

[0072] Specifically, the material of the first button 601 can be attracted by the electromagnet 1201 when it is energized.

[0073] Specifically, multiple suction pumps 5 are provided, each suction pump 5 has an internal receiving chamber for holding non-Newtonian liquids, and the suction pumps 5 are electrically connected and connected in series.

[0074] Specifically, the bulletproof vest with improved fit further includes: side pockets 1, a bulletproof layer 4, a shoulder circumference 401, a hood 7, and gloves 9; the side pockets 1 are located on the side of the bulletproof vest; the bulletproof layer 4 is located on the outer surface of the bulletproof vest; the shoulder circumference 401 is located on the inner side of the bulletproof layer 4; the hood 7 is located on the surface of the shoulder circumference 401; and the gloves 9 are located on the side of the bulletproof vest.

[0075] Specifically, the bulletproof vest with improved fit further includes: a suction tube 10; multiple suction tubes 10 are provided; the suction tube 10 connects the cushioning bag 402 and the suction pump 5.

[0076] Specifically, the bulletproof vest with improved fit further includes: a first connecting line 8; the first connecting line 8 is electrically connected to the sensing device 12 and the suction pump 5.

[0077] Working principle:

[0078] This invention's bulletproof vest features a complex and intelligent working principle, primarily involving the coordinated action of a high-strength protective device 2, an automatic inflation device 12, a sensing device 6, and a suction pump 5 to achieve a higher level of protection and flexibility. The main steps of its working principle are as follows:

[0079] 1. Initial state of high-strength protective device 2: The high-strength protective device 2 of the bulletproof vest is in its initial state, including the front pack 201, the cushioning bag 402, the breathable fabric 202, and the air bag 203. The cushioning bag 402 has a cavity inside, and the breathable fabric 202 is located between the cushioning bag 402 and the air bag 203.

[0080] 2. Monitoring by sensing device 12 and camera 3: The sensors inside sensing device 12 continuously monitor the flying object in camera 3 and analyze its speed and direction.

[0081] 3. Activation of control device 6: After the sensor detects a threat, the electromagnet 1201 and the first button 601 attract each other, and the control device 6 is activated.

[0082] 4. Inflation of air bag 203: Air pump 13 fills air bag 203 through second connecting line 11. Limiting spring 14 and first spring 15 ensure uniform inflation. The space between breathable fabric 202 and cushioning bag 402 will also be adjusted accordingly, so that the human body fits more closely with the bulletproof vest and improves comfort.

[0083] 5. Linkage between sensing device 12 and first button 601: Through electrical connection, sensing device 12 and first button 601 are linked. When electromagnet 1201 is energized, conductive end 1202 contacts first button 601, activating suction pump 5.

[0084] 6. Injection and absorption of non-Newtonian liquids: The liquid in the suction pump 5 is drawn into the cushioning bag 402 of the vest to form a non-Newtonian liquid protective layer, which increases the energy absorption capacity against impact. After the operation, the recovery switch 602 can be controlled to recover the non-Newtonian liquid to prepare for the next operation.

[0085] 7. Function of control device 6: Control device 6, through components such as the first button 601, achieves precise control of the suction pump 5, ensuring that the injection and suction of non-Newtonian liquids reach the optimal state.

[0086] Through the steps described above, the bulletproof vest achieves real-time perception of external threats and intelligent adjustment of the protective layer status. This highly intelligent working principle allows the bulletproof vest to adapt more flexibly and quickly to different threat scenarios, providing more comprehensive protection and comfort.

Claims

1. A bulletproof vest with improved fit, comprising: High-strength protective equipment, suction pump, control device, sensing device, automatic inflation device, camera and bulletproof layer; The high-strength protective device is connected to the suction pump; the automatic inflation device is connected to the high-strength protective device; the control device is electrically connected to the sensing device; the control device is electrically connected to the suction pump; the sensing device is electrically connected to the camera. The high-strength protective device includes: a front pack, a cushioning bag, a breathable fabric, and an air bag; the front pack is placed on the outside of the high-strength protective device; the cushioning bag is tightly attached to the front pack; the interior of the cushioning bag is hollow; the air bag is located between the breathable fabric and the cushioning bag; The control device includes: a first button, a recovery switch, and a sensing block; the first button is electrically connected to the sensing device; a spring is fixedly provided between the recovery switch and the sensing block; when the recovery switch contacts the sensing block, it controls the suction pump to draw in. The automatic inflation device includes: a second connecting line, an air pump, a limiting spring, a first spring, a second spring, a first sensor, and a second sensor; the air pump is connected to the air bag via the second connecting line; the limiting spring connects the air bag to the breathable fabric; the first spring connects the breathable fabric to the first sensor; the second spring connects the air bag to the second sensor; the air pump is activated when the first sensor contacts the second sensor. The sensing device includes an electromagnet and conductive terminals; a sensor is provided inside the sensing device, which can analyze the speed of a flying object in the camera and energize the electromagnet; the electromagnet is magnetic when energized; a pair of conductive terminals are provided; when the conductive terminals are in contact with the first button, the suction pump is controlled to inject non-Newtonian liquid into the buffer bag. The material of the first button can be attracted when the electromagnet is energized; It also includes: side pockets, a bulletproof layer, shoulder circumference, hood, and gloves; the side pockets are located on the sides of the bulletproof vest; the bulletproof layer is located on the outer surface of the bulletproof vest; the shoulder circumference is located on the inner side of the bulletproof layer; the hood is located on the surface of the shoulder circumference; and the gloves are located on the sides of the bulletproof vest.

2. The bulletproof vest with improved fit according to claim 1, characterized in that: The suction pump is provided in multiple units, and each suction pump has an internal receiving chamber for holding non-Newtonian liquids. The suction pumps are electrically connected and connected in series.

3. A bulletproof vest with improved fit as described in claim 1, characterized in that, Also includes: A suction tube; multiple suction tubes are provided; the suction tubes connect the buffer bag and the suction pump.

4. A bulletproof vest with improved fit as described in claim 1, characterized in that, Also includes: The first connecting line is electrically connected to the sensing device and the suction pump.

Citation Information

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