Combat casualty care equipment with positioning and vital sign monitoring functions and its usage methods
By integrating monitoring and storage components into combat casualty care equipment, the problem of traditional equipment being unable to monitor vital signs has been solved, enabling real-time vital sign detection and convenient equipment use, thereby improving the effectiveness and safety of individual soldier self-rescue.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- THE SIXTH MEDICAL CENT OF THE CHINESE PEOPLES LIBERATION ARMY GENERAL HOSPITAL
- Filing Date
- 2026-04-10
- Publication Date
- 2026-05-26
AI Technical Summary
Traditional combat casualty care equipment lacks vital sign monitoring capabilities, making it impossible to monitor the physical condition of users in real time, resulting in potential hazards not being addressed in a timely manner.
A combat casualty care device with positioning and vital sign monitoring functions has been designed. It includes a monitoring component, a storage component, and a connection component. It detects vital signs by contacting the skin with a patch and is fixed to the body by straps and Velcro. It is equipped with an air cushion and magnetic strip to ensure the stability and portability of the device.
It enables real-time monitoring of the wearer's vital signs, ensuring timely handling of potential hazards, improving rescue effectiveness, and simplifies the process of replacing the storage bag and retrieving items, thus enhancing the wearing experience.
Smart Images

Figure CN122075149A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of medical equipment technology, and in particular relates to combat casualty medical equipment and its usage method that has positioning and vital sign monitoring functions. Background Technology
[0002] Battle wound care equipment is carried by soldiers for self-rescue or mutual aid. Common rescue devices include portable rescue supplies such as individual first aid kits and tourniquets. When injured, these can be used to provide simple first aid to the injured, quickly save the lives of the wounded, prevent the condition from worsening, and safely transport them for treatment, thereby reducing the dangers caused by the injury.
[0003] In the use of traditional combat casualty care equipment, because it does not have vital sign monitoring devices, it is impossible to monitor the vital signs of the user and thus the user's physical condition. This can easily lead to the inability to make timely judgments when potential dangers occur, which in turn can result in the inability to deal with individual soldiers in danger in a timely manner, thus affecting the rescue effect. Summary of the Invention
[0004] The purpose of this invention is to solve the problem that traditional combat injury relief equipment lacks vital sign monitoring functions and therefore cannot provide real-time data on vital signs, making it difficult to assess the patient's condition. The invention proposes a combat injury relief device and method with positioning and vital sign monitoring functions.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: a combat casualty treatment device with positioning and vital sign monitoring functions, comprising a first connecting strip, with second connecting strips hinged to both sides of the first connecting strip, and multiple first and second connecting strips arranged alternately, with Velcro attached to the surface of the first connecting strips at both ends, a limit strip installed on one side of the first connecting strip, a placement groove opened on the other side of the first connecting strip, and a strap provided on the other side of the first connecting strips at both ends, further comprising:
[0006] The monitoring component includes a monitoring module disposed at the top of the first connecting strip, and the monitoring module is composed of three parts, which are interconnected with each other.
[0007] The patch is placed inside the placement slot and is inserted into the socket inside the first connecting strip through the insert at the bottom. A connecting wire is installed at the top of the patch and the other end of the connecting wire is connected to the monitoring module.
[0008] As a further description of the above technical solution:
[0009] The monitoring component further includes: a limiting frame, which is slidably installed inside the placement slot, and the bottom end of the limiting frame is provided with a slot corresponding to the patch, and one end of the patch is inserted into the slot;
[0010] The first spring is installed on one side of the limiting frame, and the other end of the first spring is fixedly connected to the first connecting strip. The limiting frame is pushed by the first spring to squeeze and limit the patch.
[0011] As a further description of the above technical solution:
[0012] The monitoring component further includes: a limiting block, which is installed on both sides of the limiting frame and is slidably connected to the first connecting strip through a groove opened inside the first connecting strip;
[0013] The wire feeding groove is formed on the surface of the limiting frame, and the connecting line is located inside the wire feeding groove. The inner side of the first connecting strip is provided with a groove corresponding to the wire feeding groove.
[0014] As a further description of the above technical solution:
[0015] It also includes: a storage component, the storage component including a storage bag disposed on one side of the first connecting strip, and a Velcro fastener corresponding to the Velcro fastener is provided on one side of the storage bag, and a top cover is provided at the top of the storage bag;
[0016] An air cushion is placed inside a storage bag. A connecting tube is installed on one side of the air cushion, and the other end of the connecting tube is connected to an air pump installed inside the monitoring component.
[0017] As a further description of the above technical solution:
[0018] The storage component also includes a magnetic strip, which is installed at the top of the storage bag, and a metal strip that attracts the magnetic strip is provided on the inside of the top cover;
[0019] Fixing pins are installed on the surface of the storage bag and are distributed on both sides of the storage bag;
[0020] A fixing buckle is installed at the bottom end of the top cover and is engaged with a fixing nail.
[0021] As a further description of the above technical solution:
[0022] It also includes: a connecting component, the connecting component including a snap-fit strip installed on one side of the storage bag, and the snap-fit strip being slidably connected to a limiting strip through a groove opened inside;
[0023] The pressing block is slidably installed in the groove starting at one end of the snap-fit strip, and a squeezing block is installed at one end of the pressing block.
[0024] As a further description of the above technical solution:
[0025] The connecting assembly further includes: a sliding frame, which is slidably installed in a groove inside the snap-fit strip, and the sliding frame is provided with an inclined block corresponding to the extrusion block;
[0026] The second spring is installed at one end of the sliding frame, and the other end of the second spring is fixedly connected to the snap-fit strip.
[0027] As a further description of the above technical solution:
[0028] The connecting component further includes: a slider, which is disposed on one side of the sliding frame and the slider side is in contact with the sliding frame side;
[0029] A connecting column is installed on the side where the slider and the sliding frame are in contact, and the connecting column is slidably connected through an inclined groove provided inside the sliding frame.
[0030] As a further description of the above technical solution:
[0031] The connecting component further includes a plug block, which is installed on one side of the slider and is plugged into the limiting strip through a slot opened in the limiting strip.
[0032] This invention also discloses a method for using a combat casualty treatment device with positioning and vital sign monitoring functions, comprising the following steps:
[0033] S1. Before wearing the device, sufficient space can be left in the placement slot by sliding the limiting frame, and then the patch can be inserted into the placement slot on one side of the first connecting strip, so that the bottom end of the patch is inserted into the slot opened in the first connecting strip, and the other end of the patch is aligned with the slot at the bottom of the limiting frame. The connecting wire is placed in the wire placement slot, and then the patch is connected to the limiting frame. The first spring pushes the limiting frame to squeeze the patch and limit the patch. At the same time, the limiting frame can cause the patch to bend a certain amount after being squeezed by the first spring, so that the patch can better fit the skin surface. The patch can also be attached to the chest or other skin surfaces through the gaps in clothing such as the collar, so as to further ensure that the monitoring module can perform more accurate detection.
[0034] S2. During the use of the device, the slot in the snap-fit strip can be aligned with the limiting strip, and the snap-fit strip can be inserted into the outer wall of the limiting strip to connect the storage bag with the first connecting strip. The storage bag can then be tied to the arm with a strap, and the Velcro on both sides of the storage bag can be used to attach it to the Velcro to further ensure the stability of the storage bag. When the snap-fit strip is connected to the limiting strip, it can be connected to the limiting strip through a snap-fit block to limit the snap-fit strip.
[0035] S3. During the use of the storage bag, as the items inside the storage bag are taken out, the air pump inside the monitoring module inflates the air cushion, causing the air cushion to gradually expand. This compresses the remaining items inside the storage bag, preventing them from sliding during movement and affecting wear. The top cover can be closed by fastening the buckle and pin, and the top cover can be further sealed by magnetic strips.
[0036] S4. When replacing the storage bag, the pressing block can be pressed to squeeze the sliding frame through the squeezing block. The sliding frame moves after being squeezed. Since the connecting post is located in the inclined groove opened inside the sliding frame, the sliding frame can squeeze the connecting post as it moves, causing the connecting post to move and simultaneously driving the slider to slide, so that the insertion block and the limiting strip can be separated. In this way, the snap-fit strip and the limiting strip can be separated, and the storage bag can be replaced.
[0037] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:
[0038] 1. In this invention, by incorporating a detection component, the device enables the monitoring module to detect the wearer's vital signs when the patch comes into contact with the skin. This ensures that changes in the wearer's vital signs are detected promptly, providing an alert and allowing the wearer to take timely self-rescue measures to prevent further injury and worsening of the condition, thus ensuring the wearer's safety. Furthermore, during patch installation, a first spring pushes a limiting frame to compress the patch, causing it to bend and adhere to the skin surface. The patch can also be inserted into clothing from the collar or other locations to ensure accurate monitoring on the chest surface.
[0039] 2. In this invention, a storage component is provided. Through this design, the storage bag can be connected to the first connecting strip via a snap-fit strip and a limiting strip. The storage bag can then be worn on the arm via a strap. When the storage bag needs to be replaced, the pressing block can be pressed to squeeze the sliding frame, causing the sliding frame to slide. The squeezing of the connecting column by the sliding frame can move the slider, causing the snap-fit strip and the limiting strip to separate. This allows the snap-fit strip and the limiting strip to be separated, thus enabling the replacement of the storage bag and reducing the time required for replacement.
[0040] 3. In this invention, by incorporating a storage component, the remaining items inside the storage bag can be compressed and secured by the expansion of the air cushion after some items have been removed. This ensures that the items inside the storage bag will not shake during movement, thus preventing any impact on the wearing experience. It also avoids the effects of shaking caused by the items inside the storage bag, making it more convenient for the wearer and improving the wearing experience. Furthermore, when it is necessary to retrieve items from the storage bag, the air can be quickly deflated through the air valve on the air cushion, making it easier for the wearer to access the items inside the storage bag. Attached Figure Description
[0041] Figure 1 A three-dimensional structural diagram of a combat casualty treatment device with positioning and vital sign monitoring functions.
[0042] Figure 2 A schematic diagram of the exploded structure of a combat casualty care device with positioning and vital sign monitoring functions.
[0043] Figure 3 A schematic diagram of the combined structure of the first and second connecting strips in a combat casualty treatment device with positioning and vital sign monitoring functions.
[0044] Figure 4 A schematic diagram of the back structure of the first and second connecting strips in a combat casualty treatment device with positioning and vital sign monitoring functions.
[0045] Figure 5 A schematic diagram of the exploded structure of the storage components in a combat casualty treatment device with positioning and vital sign monitoring functions.
[0046] Figure 6 An exploded view of the connecting components in a combat casualty care device with positioning and vital sign monitoring capabilities.
[0047] Figure 7 for Figure 6 A magnified structural diagram of point A in the middle.
[0048] Figure 8 An exploded view of the monitoring components in a combat casualty care device that has positioning and vital sign monitoring functions.
[0049] Figure 9 for Figure 8 A magnified structural diagram at point B in the middle.
[0050] Legend:
[0051] 1. Strap; 2. First connecting strip; 3. Velcro; 4. Storage component; 401. Top cover; 402. Fixing buckle; 403. Connecting tube; 404. Air cushion; 405. Magnetic strip; 406. Storage bag; 407. Fixing nail; 5. Monitoring component; 501. Monitoring module; 502. Connecting wire; 503. First spring; 504. Limiting frame; 505. Patch; 506. Limiting block; 507. Wire placement groove; 6. Second connecting strip; 7. Connecting component; 701. Snap-fit strip; 702. Extrusion block; 703. Pressing block; 704. Slider; 705. Connecting post; 706. Insertion block; 707. Sliding frame; 708. Second spring; 8. Limiting strip; 9. Placement groove. Detailed Implementation
[0052] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0053] Please see Figures 1-9 This invention provides a technical solution: a battlefield wound care device with positioning and vital sign monitoring functions, comprising a first connecting strip 2, with second connecting strips 6 hinged to both sides of the first connecting strip 2, and multiple first connecting strips 2 and second connecting strips 6 arranged alternately, with Velcro 3 installed on the surface of the first connecting strip 2 at both ends, a limiting strip 8 installed on one side of the first connecting strip 2, a placement groove 9 opened on the other side of the first connecting strip 2, and a strap 1 on the other side of the first connecting strip 2 at both ends, and further comprising:
[0054] The monitoring component 5 includes a monitoring module 501 disposed at the top of the first connecting bar 2, and the monitoring module 501 is composed of three parts, which are interconnected with each other.
[0055] The patch 505 is disposed inside the placement slot 9, and the patch 505 is inserted into the insertion hole opened inside the first connecting strip 2 through the insert provided at the bottom end. The patch 505 is equipped with a connecting wire 502 at the top end, and the other end of the connecting wire 502 is connected to the monitoring module 501.
[0056] The monitoring component 5 also includes: a limiting frame 504, which is slidably installed inside the placement slot 9, and the bottom end of the limiting frame 504 is provided with a slot corresponding to the patch 505, and one end of the patch 505 is inserted into the slot;
[0057] The first spring 503 is installed on one side of the limiting frame 504, and the other end of the first spring 503 is fixedly connected to the first connecting strip 2. The first spring 503 pushes the limiting frame 504 to squeeze, so as to limit the patch 505.
[0058] The monitoring component 5 also includes: a limiting block 506, which is installed on both sides of the limiting frame 504, and the limiting block 506 is slidably connected to the first connecting strip 2 through a groove opened inside the first connecting strip 2;
[0059] The wire feeding groove 507 is formed on the surface of the limiting frame 504, and the connecting line 502 is located inside the wire feeding groove 507. The inner side of the first connecting strip 2 is provided with a groove corresponding to the wire feeding groove 507.
[0060] The specific implementation is as follows: Before wearing the device, sufficient space can be left in the placement slot 9 by sliding the limiting frame 504, and then the patch 505 can be inserted into the placement slot 9 provided on one side of the first connecting strip 2, so that the bottom end of the patch 505 is inserted into the slot opened in the first connecting strip 2, while the other end of the patch 505 corresponds to the slot provided at the bottom end of the limiting frame 504, and the connecting wire 502 is placed in the wire placement slot 507. Then the patch 505 is connected to the limiting frame 504, thereby... The first spring 503 pushes the limiting frame 504 to compress the patch 505, thereby limiting the patch 505. At the same time, under the push of the first spring 503, the limiting frame 504 can cause the patch 505 to bend after being compressed, so that the patch 505 can better adhere to the skin surface. The patch 505 can also be attached to the skin surface such as the chest through the gap of clothing such as the collar, so as to further ensure that the monitoring module 501 can perform more accurate detection.
[0061] The connecting component 7 includes a snap-fit strip 701 installed on one side of the storage bag 406, and the snap-fit strip 701 is slidably connected to the limiting strip 8 through a groove opened inside it.
[0062] Pressing block 703 is slidably installed in the groove starting at one end of snap-fit strip 701, and pressing block 702 is installed at one end of pressing block 703;
[0063] The connecting component 7 also includes: a sliding frame 707, which is slidably installed in a groove inside the snap-fit strip 701, and the sliding frame 707 is provided with an inclined block corresponding to the pressing block 702;
[0064] The second spring 708 is installed at one end of the sliding frame 707, and the other end of the second spring 708 is fixedly connected to the snap-fit strip 701.
[0065] The connecting component 7 also includes: a slider 704, which is disposed on one side of the sliding frame 707 and the side of the slider 704 is in contact with the side of the sliding frame 707;
[0066] The connecting post 705 is installed on the side where the slider 704 and the sliding frame 707 are in contact, and the connecting post 705 is slidably connected through the inclined groove provided inside the sliding frame 707.
[0067] The connecting component 7 also includes a plug block 706, which is installed on one side of the slider 704 and is plugged into the limiting strip 8 through a slot opened in the limiting strip 8.
[0068] The specific implementation is as follows: During the use of the device, the slot in the snap-fit strip 701 can be aligned with the limiting strip 8, and the snap-fit strip 701 can be inserted into the outer wall of the limiting strip 8 to connect the storage bag 406 to the first connecting strip 2. The storage bag 406 can then be tied to the arm using the strap 1. Simultaneously, the Velcro and Velcro 3 on both sides of the storage bag 406 can be used to further ensure the stability of the storage bag 406. Furthermore, when the snap-fit strip 701 is connected to the limiting strip 8, the snap-fit block 706 can be connected to the limiting strip 8 to limit the snap-fit strip 701. When replacing the storage bag 406, the pressing block 703 can be pressed to squeeze the sliding frame 707 through the squeezing block 702, causing the sliding frame 707 to move after being squeezed. Since the connecting post 705 is located in the inclined groove opened inside the sliding frame 707, the movement of the sliding frame 707 can squeeze the connecting post 705, causing the connecting post 705 to move and simultaneously driving the slider 704 to slide, so that the insertion block 706 can be separated from the limiting strip 8, thereby separating the snap-fit strip 701 from the limiting strip 8, and thus replacing the storage bag 406.
[0069] The storage component 4 includes a storage bag 406 disposed on one side of the first connecting strip 2, and a Velcro patch corresponding to the Velcro 3 is provided on one side of the storage bag 406. The top of the storage bag 406 is provided with a top cover 401.
[0070] Air cushion 404 is disposed inside storage bag 406. A connecting pipe 403 is installed on one side of the air cushion 404, and the other end of the connecting pipe 403 is connected to the air pump installed inside the monitoring component 501.
[0071] The storage component 4 also includes a magnetic strip 405, which is installed on the top of the storage bag 406, and the inner side of the top cover 401 is provided with a metal strip that attracts the magnetic strip 405.
[0072] Fixing nail 407 is installed on the surface of storage bag 406 and the fixing nail 407 is distributed on both sides of storage bag 406;
[0073] A fixing buckle 402 is installed at the bottom of the top cover 401 and is engaged with a fixing nail 407.
[0074] The specific implementation is as follows: During the use of the storage bag 406, as the items inside the storage bag 406 are taken out for use, the air pump inside the monitoring module 501 can inflate the air cushion 404, thereby causing the air cushion 404 to gradually expand, which can compress the remaining items inside the storage bag 406 to a certain extent, thereby preventing the items inside the storage bag 406 from sliding during the movement and affecting the wearing. At the same time, the top cover 401 can be closed to the top of the storage bag 406 by fastening the fixing buckle 402 and the fixing nail 407. The top cover 401 can be further attracted and sealed by the magnetic strip 405.
[0075] This invention also discloses a method for using a combat casualty treatment device with positioning and vital sign monitoring functions, comprising the following steps:
[0076] S1. Before wearing the device, sufficient space can be left in the placement slot 9 by sliding the limiting bracket 504, so that the patch 505 can be inserted into the placement slot 9 on one side of the first connecting strip 2, so that the bottom end of the patch 505 is inserted into the slot opened in the first connecting strip 2, and the other end of the patch 505 is aligned with the slot provided at the bottom end of the limiting bracket 504, and the connecting wire 502 is placed in the wire placement slot 507. Then the patch 505 is connected to the limiting bracket 504, thereby passing through the first... Spring 503 pushes limit frame 504 to squeeze patch 505 and limit patch 505. At the same time, under the push of the first spring 503, limit frame 504 can make patch 505 bend after being squeezed, so that patch 505 can better fit the skin surface. Patch 505 can also be attached to the skin surface such as chest through the gap of clothing such as collar, so as to further ensure that the monitoring module 501 can perform more accurate detection.
[0077] S2. During the use of the device, the slot in the snap-fit strip 701 can be aligned with the limiting strip 8, and the snap-fit strip 701 can be inserted into the outer wall of the limiting strip 8 to connect the storage bag 406 with the first connecting strip 2. The storage bag 406 can be tied to the arm with the strap 1. At the same time, the Velcro and Velcro 3 on both sides of the storage bag 406 can be attached to further ensure the stability of the storage bag 406. When the snap-fit strip 701 is connected to the limiting strip 8, the snap-fit strip 701 can be limited by connecting the snap-fit block 706 to the limiting strip 8.
[0078] S3. During the use of the storage bag 406, as the items inside the storage bag 406 are taken out, the air pump inside the monitoring module 501 can inflate the air cushion 404, thereby causing the air cushion 404 to gradually expand. This can compress the remaining items inside the storage bag 406 to a certain extent, thus preventing the items inside the storage bag 406 from slipping during movement and affecting the wearing. At the same time, the top cover 401 can be closed to the top of the storage bag 406 by fastening the fixing buckle 402 and the fixing nail 407. The top cover 401 can be further attracted and sealed by the magnetic strip 405.
[0079] S4. When replacing the storage bag 406, the pressing block 703 can be pressed to squeeze the sliding frame 707 through the squeezing block 702, causing the sliding frame 707 to move after being squeezed. Since the connecting post 705 is located in the inclined groove opened inside the sliding frame 707, the movement of the sliding frame 707 can squeeze the connecting post 705, causing the connecting post 705 to move and simultaneously driving the slider 704 to slide, so that the insertion block 706 can be separated from the limiting strip 8, thereby separating the snap-fit strip 701 from the limiting strip 8, and thus replacing the storage bag 406.
[0080] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. A combat casualty treatment device with positioning and vital sign monitoring functions, comprising a first connecting strip (2), with second connecting strips (6) hinged to both sides of the first connecting strip (2), and multiple first connecting strips (2) and second connecting strips (6) arranged alternately, with Velcro (3) installed on the surface of the first connecting strips (2) at both ends, a limiting strip (8) installed on one side of the first connecting strip (2), and a placement groove (9) opened on the other side of the first connecting strip (2), and a strap (1) provided on the other side of the first connecting strips (2) at both ends, characterized in that, Also includes: The monitoring component (5) includes a monitoring module (501) disposed at the top of the first connecting bar (2), and the monitoring module (501) is composed of three parts, and the parts are interconnected. The patch (505) is placed inside the placement slot (9) and is inserted into the socket of the first connecting strip (2) through the insert at the bottom. A connecting wire (502) is installed at the top of the patch (505) and the other end of the connecting wire (502) is connected to the monitoring module (501).
2. The combat casualty treatment equipment with positioning and vital sign monitoring functions according to claim 1, characterized in that, The monitoring component (5) also includes: The limiting frame (504) is slidably installed inside the placement groove (9), and the bottom end of the limiting frame (504) is provided with a slot corresponding to the patch (505), and one end of the patch (505) is inserted into the slot; The first spring (503) is installed on one side of the limiting frame (504), and the other end of the first spring (503) is fixedly connected to the first connecting strip (2). The first spring (503) pushes the limiting frame (504) to squeeze, so as to limit the patch (505).
3. The combat casualty treatment equipment with positioning and vital sign monitoring functions according to claim 2, characterized in that, The monitoring component (5) also includes: Limiting block (506), the limiting block (506) is installed on both sides of the limiting frame (504), and the limiting block (506) is slidably connected to the first connecting strip (2) through the groove opened inside the first connecting strip (2); The wire feeding groove (507) is formed on the surface of the limiting frame (504), and the connecting line (502) is located inside the wire feeding groove (507), and the inner side of the first connecting strip (2) is provided with a groove corresponding to the wire feeding groove (507).
4. The combat casualty treatment equipment with positioning and vital sign monitoring functions according to claim 1, characterized in that, Also includes: Storage component (4), the storage component (4) includes a storage bag (406) disposed on one side of the first connecting strip (2), and the storage bag (406) is provided with a Velcro strip corresponding to the Velcro strip (3) on one side, and the top of the storage bag (406) is provided with a top cover (401). An air cushion (404) is placed inside a storage bag (406). A connecting pipe (403) is installed on one side of the air cushion (404), and the other end of the connecting pipe (403) is connected to an air pump installed inside the monitoring component (501).
5. The combat casualty treatment equipment with positioning and vital sign monitoring functions according to claim 4, characterized in that, The storage component (4) also includes: A magnetic strip (405) is installed on the top of the storage bag (406), and a metal strip that attracts the magnetic strip (405) is provided on the inner side of the top cover (401); Fixing pins (407) are installed on the surface of the storage bag (406) and the fixing pins (407) are distributed on both sides of the storage bag (406); A fixing buckle (402) is installed at the bottom of the top cover (401) and the fixing buckle (402) is engaged with the fixing nail (407).
6. The combat casualty treatment equipment with positioning and vital sign monitoring functions according to claim 4, characterized in that, Also includes: The connecting component (7) includes a snap-fit strip (701) installed on one side of the storage bag (406), and the snap-fit strip (701) is slidably connected to the limiting strip (8) through a groove opened inside; Pressing block (703), which is slidably installed in the groove starting at one end of the snap-fit strip (701), and a squeezing block (702) is installed at one end of the pressing block (703).
7. The combat casualty treatment equipment with positioning and vital sign monitoring functions according to claim 6, characterized in that, The connection component (7) further includes: A sliding frame (707) is slidably installed in a groove opened inside the snap-fit strip (701), and the sliding frame (707) is provided with an inclined block corresponding to the extrusion block (702); The second spring (708) is installed at one end of the sliding frame (707), and the other end of the second spring (708) is fixedly connected to the snap-fit strip (701).
8. The combat casualty treatment equipment with positioning and vital sign monitoring functions according to claim 7, characterized in that... The connection component (7) further includes: A slider (704) is disposed on one side of a sliding frame (707), and one side of the slider (704) is in contact with one side of the sliding frame (707); The connecting column (705) is installed on the side of the slider (704) that is in contact with the sliding frame (707), and the connecting column (705) is slidably connected through the inclined groove provided inside the sliding frame (707).
9. The combat casualty treatment equipment with positioning and vital sign monitoring functions according to claim 8, characterized in that... The connection component (7) further includes: The plug-in block (706) is installed on one side of the slider (704) and is plugged into the limiting strip (8) through a slot opened in the limiting strip (8).
10. The method of using the combat casualty treatment equipment with positioning and vital sign monitoring functions according to any one of claims 1-9, characterized in that, Includes the following steps: S1. Before wearing the device, sufficient space can be left in the placement slot (9) by sliding the limiting bracket (504), and then the patch (505) can be inserted into the placement slot (9) provided on one side of the first connecting strip (2), so that the bottom end of the patch (505) is inserted into the slot opened in the first connecting strip (2), and the other end of the patch (505) is aligned with the slot provided at the bottom end of the limiting bracket (504), and the connecting wire (502) is placed in the wire placement slot (507), and then the patch (505) is connected to the limiting bracket (504), thereby... The first spring (503) pushes the limiting frame (504) to squeeze the patch (505) and limit the patch (505). At the same time, the limiting frame (504) can cause the patch (505) to bend after being squeezed under the push of the first spring (503), so that the patch (505) can better fit the skin surface. The patch (505) can also be attached to the skin surface such as the chest through the gap of the collar or other clothing, so as to further ensure that the monitoring module (501) can perform more accurate detection. S2. During the use of the device, the slot in the snap-fit strip (701) can be aligned with the limiting strip (8), and the snap-fit strip (701) can be inserted into the outer wall of the limiting strip (8) to connect the storage bag (406) with the first connecting strip (2). The storage bag (406) can be tied to the arm with the strap (1), and the Velcro and Velcro (3) on both sides of the storage bag (406) can be attached to further ensure the stability of the storage bag (406). When the snap-fit strip (701) is connected to the limiting strip (8), the snap-fit strip (701) can be connected to the limiting strip (8) through the plug-in block (706) to limit the snap-fit strip (701). S3. During the use of the storage bag (406), as the items inside the storage bag (406) are taken out for use, the air pump inside the monitoring module (501) can be used to inflate the air cushion (404), thereby causing the air cushion (404) to gradually expand, which can compress the remaining items inside the storage bag (406) to a certain extent, thereby preventing the items inside the storage bag (406) from sliding during the movement and affecting the wearing. At the same time, the top cover (401) can be closed to the top of the storage bag (406) by fastening the fixing buckle (402) and the fixing nail (407), and the top cover (401) can be further attracted and sealed by the magnetic strip. S4. When replacing the storage bag (406), the pressing block (703) can be pressed to squeeze the sliding frame (707) through the squeezing block (702), causing the sliding frame (707) to move after being squeezed. Since the connecting post (705) is located in the inclined groove opened inside the sliding frame (707), the sliding frame (707) can squeeze the connecting post (705) as it moves, causing the connecting post (705) to move and simultaneously causing the slider (704) to slide, so that the plug-in block (706) can be separated from the limiting strip (8), and then the snap-fit strip (701) can be separated from the limiting strip (8), thereby replacing the storage bag (406).