Intelligent vest with rescue function
By integrating components such as sensor patches, heating modules, and positioning and communication modules into the smart vest, the problem of the smart vest being unable to provide timely rescue after the user is injured is solved. It enables real-time monitoring of body temperature and transmission of location information, thereby improving rescue efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-23
- Publication Date
- 2026-04-10
AI Technical Summary
Existing smart vests cannot provide timely rescue and treatment after the user is injured, delaying the rescue operation of medical personnel.
A smart vest with rescue function has been designed, which includes a front vest protection body, a back vest protection body, shoulder straps and side waist protection bodies. It has built-in components such as sensor stickers, heating modules, power supply modules, sensors and main controllers. It can monitor body temperature in real time and maintain body temperature through the heating module. It can also transmit location information by combining with a camera and positioning communication module.
It enables real-time monitoring and maintenance of the user's body temperature, improving the efficiency of rescue after injury and ensuring timely treatment.
Smart Images

Figure CN224098802U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of intelligent vest, specifically relates to a kind of intelligent vest with rescue function. BACKGROUND
[0002] Intelligent vest is a kind of intelligent wearing device integrated with intelligent technology, which has developed rapidly in recent years and gradually entered people's daily life;It is mainly used for wearers to increase the carrying capacity of various ammunition and equipment.
[0003] In the prior art, when the user uses the intelligent vest, the surrounding environment information can also be transmitted to the command center, so that real-time service and help can be provided to the user, but this type of intelligent vest often does not consider the problem of the wounded;This means that after the user is injured, the intelligent vest cannot provide timely rescue and treatment for them, which will seriously delay the rescue action of medical personnel to the user, thereby affecting the treatment of the user;Therefore, we propose an intelligent vest with rescue function to solve the above problems. UTILITY MODEL CONTENT
[0004] The utility model aims at providing an intelligent vest with rescue function to solve the problems in the background art.
[0005] To achieve the above technical purpose, the utility model adopts the following technical scheme:
[0006] An intelligent vest with rescue function, comprising a front vest protection body, a rear vest protection body, shoulder straps and two side waist protection bodies, the front vest protection body and the rear vest protection body are fixedly connected through the shoulder straps on the left and right sides of the upper end, the two side waist protection bodies are fixedly connected with the left and right lower sides of the rear vest protection body respectively, the front vest protection body and the rear vest protection body are both set as three-layer structure, comprising a first protection layer, a second electronic device layer and a third protection layer, a rescue assembly is arranged inside the second electronic device layer and the third protection layer.
[0007] The rescue assembly comprises two induction patches, the two induction patches are arranged at one ends of the front and rear back protection bodies and face each other, a plurality of heating modules are arranged in the two third protection layers, a power supply module is arranged at lower portions of the two second electronic equipment layers, a main controller is arranged at a middle portion of the front second electronic equipment layer, sensors electrically connected with the corresponding induction patches are arranged at upper portions of the two second electronic equipment layers, the two shoulder straps are provided with through grooves in communication with the two second electronic equipment layers, the two sensors and the power supply modules are electrically connected with the main controller, a plurality of wire through holes are arranged between the second electronic equipment layers and the third protection layers, and the power supply modules are electrically connected with the heating modules through the wire through holes.
[0008] Further limited, the two induction patches are located at right upper corners of the front and rear back protection bodies.
[0009] Further limited, the adjacent heating modules are electrically connected with each other, and the heating modules are arranged in a matrix.
[0010] Further limited, the front first protection layer is provided with a system starting switch at a middle portion thereof, and the system starting switch is electrically connected with the main controller.
[0011] Further limited, the front first protection layer is provided with a through hole between the front first protection layer and the second electronic equipment layer, a camera is arranged in the second electronic equipment layer, the camera is located in the through hole, and the camera is electrically connected with the main controller.
[0012] Further limited, the two side waist protection bodies are provided with magic hook surfaces at distal ends thereof, and the front back protection body is provided with magic loop surfaces at left and right sides of a front end thereof.
[0013] Further limited, the front first protection layer is provided with pockets at upper portions thereof, is provided with a storage bag at a middle portion thereof, is provided with a plurality of elastic clip bags at a lower portion thereof, is provided with a waist bag at a lower portion of the rear first protection layer, is provided with a positioning communication module at a middle portion of the rear first protection layer, and the positioning communication module is provided with an antenna at an upper end thereof.
[0014] The utility model discloses beneficial effects:
[0015] 1. The front back protection body, the rear back protection body, the shoulder strap and the two side waist protection bodies jointly constitute a vest, and a user only needs to put the vest on the head, and then sticks the magic hook surface to the magic loop surface, so that the wearing can be quickly completed.
[0016] 2. The inductive patch will adhere to the surface of the human body and be located at the upper right corner of the vest, and be closer to the heart position after wearing, which can more sensitively monitor the body temperature and heartbeat of the user, realize close temperature induction, and then transmit the signal received by the sensor to the internal main controller, and then let the main controller send a signal to the power supply module, so that the power supply module can power the heating module to heat and radiate heat to maintain the body temperature of the user.
[0017] 3. The first protective layer is made of wear-resistant and waterproof composite material; the second electronic device layer is made of composite heat insulation material, which can isolate the influence of the heating module on other parts; the third protective layer is located in the innermost layer and is made of hollow heat-conducting composite material, which can better transfer the temperature of the heating module and maintain the body temperature of the user. BRIEF DESCRIPTION OF DRAWINGS
[0018] The utility model can be further illustrated by the non-limiting embodiments shown in the drawings.
[0019] Figure 1 Structure diagram of the utility model of the intelligent vest with rescue function Figure One ;
[0020] Figure 2 Right side sectional structure diagram of the utility model of the intelligent vest with rescue function
[0021] Figure 3 Second electronic device layer sectional structure diagram of the utility model of the intelligent vest with rescue function
[0022] Figure 4 Third protective layer sectional structure diagram of the utility model of the intelligent vest with rescue function
[0023] Figure 5 Structure diagram of the utility model of the intelligent vest with rescue function Figure Two ;
[0024] Figure 6 Structure diagram of the utility model of the intelligent vest with rescue function Figure Three ;
[0025] The main component symbols are explained as follows:
[0026] Front chest protection body 100, back chest protection body 101, shoulder strap 102, side waist protection body 103, first protective layer 104, second electronic device layer 105, third protective layer 106, sensing patch 200, heating module 201, power supply module 202, main controller 203, sensor 204, through slot 205, wire hole 206, system start switch 300, camera 301, magic hook face 302, magic plush 303, pocket 304, storage bag 305, clip bag 306, waist bag 307, positioning communication module 308, antenna 309. DETAILED DESCRIPTION
[0027] In order to enable those skilled in the art to better understand the present application, the technical scheme of the present application is further described below in conjunction with the drawings and examples.
[0028] Example one:
[0029] As shown in Figures 1-4 A smart vest with rescue function, comprising front chest protection body 100, back chest protection body 101, shoulder strap 102 and two side waist protection bodies 103, the left and right sides of the upper end of the front chest protection body 100 and the back chest protection body 101 are fixedly connected through the shoulder strap 102, the two side waist protection bodies 103 are respectively fixedly connected with the left and right ends of the lower side of the back chest protection body 101, the front chest protection body 100 and the back chest protection body 101 are all set as three-layer structure, comprising first protective layer 104, second electronic device layer 105 and third protective layer 106, the second electronic device layer 105 and the third protective layer 106 are internally provided with rescue assembly;
[0030] The rescue assembly comprises two sensing patches 200, the two sensing patches 200 are respectively installed at one end of the front chest protection body 100 and the back chest protection body 101 facing each other, a plurality of heating modules 201 are installed in the two third protective layers 106, a power supply module 202 is installed at the lower part of each second electronic device layer 105, a main controller 203 is installed in the middle of the front second electronic device layer 105, a sensor 204 electrically connected with the corresponding sensing patch 200 is installed at the upper part of each second electronic device layer 105, a through slot 205 is formed in each shoulder strap 102 and communicated with the two second electronic device layers 105, the two sensors 204 and each power supply module 202 are electrically connected with the main controller 203, a plurality of wire holes 206 are formed between the second electronic device layer 105 and the third protective layer 106, and each power supply module 202 is electrically connected with each heating module 201 through each wire hole 206.
[0031] The two sensing patches 200 are located at the upper right corner of the front chest protection body 100 and the back chest protection body 101.
[0032] The adjacent heat generating modules 201 are electrically connected to each other, and each heat generating module 201 is arranged in a matrix.
[0033] The middle part of the first protective layer 104 on the front side is provided with a system starting switch 300, and the system starting switch 300 is in electrical signal connection with the main controller 203.
[0034] The front chest protective body 100, the back chest protective body 101, the shoulder strap 102 and the two side waist protective bodies 103 jointly form a complete vest, and when the vest is worn, the user only needs to put the vest on the head to quickly complete the wearing; the front chest protective body 100 and the back chest protective body 101 are both multi-layer structures, which can facilitate the addition of parts inside the first protective layer 104, the second electronic device layer 105 and the third protective layer 106; the sensing patch 200 is attached to the surface of the human body to realize close temperature sensing; the sensor 204 can receive and transmit signals; the main controller 203 is the center of controlling the signal transmission of the whole rescue assembly; the through slot 205 is provided to facilitate the connection of the internal circuits of the front chest protective body 100 and the back chest protective body 101; the power supply module 202 can supply power to the heat generating module 201, so that the heat generating module 201 heats and radiates heat; each power supply module 202 is electrically connected to the heat generating module 201 through the lead wire passing through the wire through hole 206; the system starting switch 300 can start the main controller 203, thereby controlling the opening of the whole rescue assembly.
[0035] Among them, the first protective layer 104 is the surface of the vest, mainly composed of wear-resistant and waterproof composite materials; the second electronic device layer 105 is located in the middle layer and is composed of composite heat insulation materials, which can isolate the influence of the heat generating module 201 on other parts and prevent other parts from being damaged due to the heat generated by the heat generating module 201; the third protective layer 106 is located in the innermost layer and is composed of hollow heat-conducting composite materials, which can make the innermost layer of the vest adhere to the user's body and better transmit the temperature of the heat generating module 201; the lead wire between each wire through hole 206 and the power supply module 202 and the heat generating module 201 is matched with each other to prevent the temperature radiated by the heat generating module 201 from entering the second electronic device layer 105 through each wire through hole 206, thereby causing damage to each part inside the second electronic device layer 105;
[0036] Among them, the sensing patch 200 is located at the upper right corner, and after the user wears the vest, the sensing patch 200 can be closer to the heart position, thereby being more sensitive to monitor the body temperature and heartbeat of the user.
[0037] Among them, each heat generating module 201 is distributed in a rectangular grid shape, so that when a single heat generating module 201 has a problem, it will not affect the normal heating of other heat generating modules 201.
[0038] Initial: open the system start switch 300, the whole rescue component starts and runs normally.
[0039] When the user is injured: the user's body temperature drops rapidly, the sensing patch 200 sends the temperature signal sensed to the sensor 204, and the sensor 204 sends the signal to the main controller 203, which sends a signal to each power supply module 202 to deliver power to the heating module 201, so that each heating module 201 generates heat. Since the power supply module 202 is located inside the third protective layer 106 and is closer to the user's body, it can better maintain the user's body temperature and allow the user to wait for rescue for a longer period of time.
[0040] In this embodiment, the user's body temperature is monitored in real time by the sensing patch 200, and when the user's body temperature drops, the main controller 203 can control the heating module 201 to be powered on to generate heat under the power supply of the power supply module 202, thereby preventing the user's body temperature from dropping and affecting the subsequent rescue and treatment time of the user.
[0041] Example two:
[0042] As shown in Figures 1-6 Based on example one, other components of the intelligent vest with rescue function are further described. The first protective layer 104 on the front side is provided with a through hole between the second electronic device layer 105, and the camera 301 is installed inside the second electronic device layer 105, and the camera 301 is located inside the through hole, and the camera 301 and the main controller 203 are electrically connected.
[0043] The two side waist protective bodies 103 are provided with magic tape hook surfaces 302 at the ends, and the front vest protective body 100 is provided with magic tape fluff surfaces 303 on the left and right sides of the front end, which cooperate with the magic tape hook surfaces 302.
[0044] The first protective layer 104 on the front side is provided with pockets 304 symmetrically on the upper part, a storage bag 305 is arranged in the middle of the first protective layer 104 on the front side, a plurality of elastic clip bags 306 are arranged on the lower part of the first protective layer 104 on the front side, a waist bag 307 is arranged on the lower part of the first protective layer 104 on the back side, a positioning communication module 308 is arranged in the middle of the first protective layer 104 on the back side, and an antenna 309 is arranged on the upper end of the positioning communication module 308.
[0045] In this embodiment, the camera 301 can transmit picture information to the main controller 203 in real time, and transmit the information to the command center through the antenna 309. The information is pushed to the cloud server through the antenna 309, and the command center pulls the stream from the cloud server through the intranet penetration technology, thereby completing the transmission of user environment position information, so as to know the user's position in real time and improve the efficiency of subsequent rescue and treatment of the user.
[0046] The positioning communication module 308 can position the user's location, and complete accurate positioning of the user.
[0047] The pocket 304, the storage bag 305, the magazine bag 306 and the waist bag 307 can facilitate the user to carry more supplies.
[0048] The rear end of the side waist protection body 103 is fixed on the lower side of the back heart protection body 101 by sewing, and the front end of the side waist protection body 103 is provided with a Velcro hook surface 302 connected with a Velcro pile surface 303 on the lower side of the front heart protection body 100, so that the wearer can be dressed more quickly.
[0049] The above examples only illustrate the principles and effects of the utility model, and are not used to limit the utility model. Any person skilled in the art can modify or change the above examples without departing from the spirit and scope of the utility model. Therefore, all equivalent modifications or changes made by those skilled in the art without departing from the spirit and technical thought disclosed by the utility model should be covered by the claims of the utility model.
Claims
1. A smart vest with a rescue function, characterized in that: The utility model relates to a kind of front and back protective body, shoulder strap and two side waist protective body, front and back protective body (100) and rear protective body (101) are fixedly connected by shoulder strap (102) in left and right sides of upper end, two side waist protective body (103) are fixedly connected with the left and right lower sides of rear protective body (101) respectively, and front and back protective body (100) and rear protective body (101) are provided as three-layer structure, including first protective layer (104), second electronic equipment layer (105) and third protective layer (106), rescue assembly is arranged in second electronic equipment layer (105) and third protective layer (106) inside. The rescue assembly includes two sensing stickers (200), two sensing stickers (200) are installed on one end of front and back protective body (100) and rear protective body (101) facing each other, a plurality of heating modules (201) are installed in two third protective layers (106), power supply modules (202) are installed in the lower part of two second electronic equipment layers (105), a main controller (203) is installed in the middle of the front second electronic equipment layer (105), sensors (204) electrically connected with corresponding sensing stickers (200) are installed in the upper part of two second electronic equipment layers (105), two shoulder straps (102) are provided with through grooves (205) communicated with two second electronic equipment layers (105), two sensors (204) and each power supply module (202) are electrically connected with the main controller (203), a plurality of wire holes (206) are provided between second electronic equipment layer (105) and third protective layer (106), and each power supply module (202) is electrically connected with each heating module (201) through each wire hole (206).
2. The intelligent vest with rescue function according to claim 1, characterized in that: Two sensing stickers (200) are located in the upper right corner of front and back protective body (100) and rear protective body (101).
3. The smart vest with rescue function according to claim 1, characterized in that: Adjacent heating modules (201) are electrically connected with each other, and each heating module (201) is arranged in matrix.
4. The smart vest with rescue function according to claim 1, characterized in that: A system start switch (300) is arranged in the middle of the front first protective layer (104), and the system start switch (300) is electrically connected with the main controller (203).
5. The smart vest with rescue function according to claim 1, characterized in that: A through hole is arranged between the front first protective layer (104) and the second electronic equipment layer (105), a camera (301) is installed in the second electronic equipment layer (105), and the camera (301) is located in the through hole, and the camera (301) is electrically connected with the main controller (203).
6. The smart vest with rescue function according to claim 1, characterized in that: Two said side waist protection body (103) end are equipped with magic stick hook face (302), the front chest protection body (100) front end left and right sides are equipped with magic stick hook face (302) with magic stick hook face (302) each other cooperation.
7. The smart vest with rescue function according to claim 1, characterized in that: The first protection layer (104) on the front side is provided with a pocket (304) on the upper part, a storage bag (305) on the middle part, and a plurality of elastic clip bags (306) on the lower part. The first protection layer (104) on the back side is provided with a waist bag (307) on the lower part, a positioning communication module (308) on the middle part, and an antenna (309) on the upper end of the positioning communication module (308).