Meridian appropriate temperature tracing armor

Through the design of meridian temperature-adapting tracing armor, the use of composite semiconductor material heat source and explosion-proof battery solves the problems of uneven heat dissipation and battery safety of electric heating clothing in extremely cold environments, realizes acupoint thermal stimulation and personnel positioning, and improves the flexibility and safety of field workers.

CN120616211APending Publication Date: 2025-09-12TIANJIN YILONG TIANXIANG TECH CO LTD
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Patent Information

Application Number
CN202510945102.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-09
Publication Date
2025-09-12

AI Technical Summary

Technical Problem

Existing electric heating clothing does not dissipate heat evenly in extremely cold environments, cannot clear the meridians, and the batteries are prone to explosion and ignition, and lack effective positioning methods, affecting the safety and flexibility of field workers.

Method used

A meridian temperature-adaptive tracing armor was designed, which uses a composite semiconductor material heat source to heat along the meridian acupoints. Combined with an explosion-proof battery and the Beidou satellite positioning system, it ensures uniform heat distribution and battery safety, and provides positioning services.

Benefits of technology

It achieves thermal stimulation of meridian acupoints in extremely cold environments, maintains flexibility of limbs, prevents battery explosion, and ensures safe positioning and tracking of field workers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a meridian appropriate temperature tracing armor, which comprises an armor body, a heating source, an anti-deflagration battery and a positioning and tracing system, the armor body comprises a trunk waistcoat, an upper limb T-shaped protection trunk and a lower limb T-shaped protection trunk, the upper limb T-shaped protection trunk is connected with the shoulder of the trunk waistcoat in a breaking joint manner, the lower limb T-shaped protection trunk is connected with the crotch of the trunk waistcoat in a breaking joint manner, and a pocket is arranged on the outer side of the lower limb T-shaped protection trunk; the heating source comprises an abdomen heater, a back heater, an upper arm heater and a thigh heater, the anti-deflagration battery is installed in a pocket and connected with the heating source, and the positioning and tracing system comprises a Beidou satellite positioning and 5G communication module installed in a shell on one side of the anti-deflagration battery. The Beidou satellite positioning and 5G communication module can perform three-point positioning based on a Beidou satellite navigation system and is connected with the terminal management system through the mobile 5G communication base station. The heat preservation effect is good, the activity flexibility of equipment personnel is not affected, and positioning and tracking of the equipment personnel are achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of human body heat preservation and protection devices, and in particular to a meridian temperature-adapting tracing armor. Background Art

[0002] Current protection against extreme cold often relies on heavy outerwear like vests or pants, significantly limiting the wearer's mobility. Vests, on the other hand, fail to keep the limbs warm, causing joints to stiffen in the cold and hindering emergency response to dangerous stimuli. Therefore, a new type of equipment is urgently needed that can maintain flexibility while also providing adequate warmth.

[0003] Existing protective clothing with electric heating features generally uses technologies such as resistance wire and carbon fiber to achieve electrical heat conversion to improve warmth. However, these heating points are simply and haphazardly arranged, resulting in uneven heat dissipation. They lack the targeted thermal stimulation of specific acupuncture points along the body's meridians, nor the heat diffusion effect along the meridians, effectively unblocking meridians and activating blood circulation. Field workers in cold conditions often find themselves in remote areas, and the heating capacity of current electric heating clothing is insufficient to provide effective warmth in these extremely cold regions. Field workers are often located in remote areas, lacking effective visual tracking and location methods. Furthermore, existing electric heating clothing is often powered by ternary lithium or polymer batteries. If damaged by external forces, the batteries could explode or cause harm. Summary of the Invention

[0004] The present invention aims to solve the deficiencies of the prior art and provide a meridian temperature-adapting tracing armor.

[0005] In order to achieve the above-mentioned purpose, the present invention adopts the following technical solutions:

[0006] Meridian temperature tracking armor, including:

[0007] The armor body includes a torso vest, an upper limb T-shaped guard, and a lower limb T-shaped guard. The upper limb T-shaped guard is connected to the torso vest at the shoulder, and the lower limb T-shaped guard is connected to the torso vest at the hip. The lower limb T-shaped guard is provided with a pocket on the outside.

[0008] The heat source includes an abdominal heater, a back heater, an upper arm heater, and a thigh heater. The abdominal heater is arranged inside the abdominal fabric interlayer of the torso vest, several back heaters are arranged inside the back fabric interlayer of the torso vest, the upper arm heaters are arranged inside the T-shaped protective fabric interlayer of the upper limbs, and the thigh heaters are arranged inside the T-shaped protective fabric interlayer of the lower limbs. The heat source fabric of the armor body is arranged in a seven-layer structure from the inside to the outside.

[0009] The explosion-proof battery is installed in the pocket and connected to the heat source. The overall structure is curved, with an explosion-proof deflector installed between the internal battery pack and the outer shell adjacent to the thigh. The inner wall of one side of the shell is equipped with a main control module connected to the battery pack.

[0010] The positioning and tracing system includes a Beidou satellite positioning and 5G communication module installed inside the shell on one side of the explosion-proof battery. The Beidou satellite positioning and 5G communication module is connected to the main control module, and can perform three-point positioning based on the Beidou satellite navigation system and connect to the terminal management system through a mobile 5G communication base station.

[0011] In particular, the front sides of the torso vest are connected by a zipper, and the upper limb T-shaped guards and the lower limb T-shaped guards are fixed by Velcro.

[0012] In particular, there are three back heaters from top to bottom. The upper back heater heats the Dazhui acupoint, the middle back heater heats the Ganshu acupoint and the Gallbladdershu acupoint, the lower back heater heats the Mingmen acupoint, the Shenshu acupoint and the Yaoyangguan acupoint, and there are two abdominal heaters, located on the left and right chest and abdomen, to heat the Qihai acupoint.

[0013] In particular, the heat source includes two connection circuits. The first connection circuit is: the two upper arm heaters are respectively connected to the top back heater, the upper and middle back heaters are connected, and the middle back heater is connected to the explosion-proof battery; the second connection circuit is: the two abdomen heaters are respectively connected to the lower back heater, the two thigh heaters are respectively connected to the lower back heater, and the thigh heater near the pocket is connected to the explosion-proof battery.

[0014] In particular, two power supply connectors are provided in the pocket and are respectively connected to the two connection lines. The power supply connectors are plug-connected to the explosion-proof battery.

[0015] In particular, the heat source fabric of the armor body is composed of an inner surface layer, a heat reflection layer, a conductive layer, an electric heating layer, a heat storage layer, a blocking layer, and an outer surface layer from the inside to the outside. The heat source is set in the electric heating layer and is made of a composite semiconductor material.

[0016] In particular, the outer shell of the explosion-proof battery is arc-shaped, with arc-shaped transitions on both sides. A bottom panel is provided on one side of the shell and a front panel is provided on the other side. The front panel is provided with a switch button, indicator light, and power socket. The Beidou satellite positioning and 5G communication module and the main control module are connected to the inner wall of the front panel. The edges on both sides of the explosion-proof deflector are rolled outward and wrapped around the battery cell group from the inside to the outside. The height of the wrapped battery cell group exceeds half the thickness of the battery cell group.

[0017] The beneficial effects of the present invention are:

[0018] 1. In extremely cold environments, effective thermal (microwave) stimulation of key acupuncture points on the Ren and Du meridians has been shown through experiments and practical applications to achieve improved heat transfer and thermal insulation. Wearing it over ordinary clothing effectively protects the health of field workers and improves blood circulation in the limbs, making it a portable moxibustion or far-infrared physical therapy device. Using a torso vest and T-shaped guards for the upper and lower limbs, it provides a sustainable heat supply to the body and limbs, ensuring the stress resistance of skeletal muscles, the flexibility of the limb joints, and the unimpeded range of motion during strenuous exercise.

[0019] 2. An explosion-proof deflector is installed inside the explosion-proof battery. In the event that the battery is damaged by external force, once the battery cell explodes, the explosion energy can be released to the outside of the human body to the greatest extent, thereby avoiding or reducing direct damage to the human body.

[0020] 3. The setting of the positioning and tracing system can realize the positioning and tracing of field workers while ensuring information security, by using mobile 5G communication base stations and Beidou satellite navigation system for positioning and tracking when there is no stable communication signal in the field. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 It is the front schematic diagram of the present invention;

[0022] Figure 2 It is a schematic diagram of the back side of the present invention;

[0023] Figure 3 This is a schematic diagram of the external structure of the explosion-proof battery junction of the present invention;

[0024] Figure 4 This is a schematic diagram of the internal structure of the explosion-proof battery of the present invention;

[0025] Figure 5 This is a schematic diagram of the positions of the main control module, Beidou satellite positioning and 5G communication module of the present invention;

[0026] Figure 6 This is a schematic diagram of the positions of the explosion-proof guide plate and the battery cell group of the present invention;

[0027] Figure 7 This is a schematic diagram of the trajectory of the explosion flame shock wave of the explosion-proof battery of the present invention;

[0028] Figure 8 This is a schematic diagram of the number of fabric layers at the heat source location of the present invention;

[0029] Figure 9 This is a schematic diagram of two connection lines within the armor body of the present invention;

[0030] Figure 10This is a diagram of acupuncture points on the back;

[0031] Figure 11 This is a schematic diagram of abdominal acupuncture points;

[0032] Figure 12 This is a schematic diagram of the positioning and tracing system module of the present invention;

[0033] In the picture:

[0034] 1-Armor body; 11-Torso vest; 12-Upper limb T-shaped guard; 13-Lower limb T-shaped guard; 14-Pocket;

[0035] 2-heating source; 21-abdomen heater; 22-back heater; 23-upper arm heater; 24-thigh heater;

[0036] 3-explosion-proof battery; 31-battery cell group; 32-explosion-proof deflector; 33-main control module; 34-housing; 341-bottom panel; 342-front panel;

[0037] 4- Positioning and tracing system; 41- Beidou satellite positioning and 5G communication module;

[0038] The following is a detailed description of the embodiments of the present invention with reference to the accompanying drawings. DETAILED DESCRIPTION

[0039] The present invention will be further described below in conjunction with embodiment:

[0040] like Figures 1-12 As shown, the meridian temperature tracing armor includes:

[0041] Reference Figure 1 、 Figure 2 The armor body 1 includes a torso vest 11, an upper limb T-shaped guard 12, and a lower limb T-shaped guard 13. The upper limb T-shaped guard 12 is connected to the torso vest 11 at the shoulder, and the lower limb T-shaped guard 13 is connected to the torso vest 11 at the hip. Pockets 14 are provided on the outer side of the lower limb T-shaped guard 13. The torso vest 11 is connected at the front by a zipper, and the upper and lower limb T-shaped guards 12 and 13 are fixed with Velcro. The limbs are fixed with Velcro to accommodate different body shapes, and the upper and lower limb T-shaped guards 12 and 13 are connected by a slit, which greatly improves the flexibility of the limbs.

[0042] The pocket 14 can be arranged on one side or both sides of the lower limb T-shaped guard trunk 13, such as Figure 1 As shown, the pocket 14 is only provided on the outside of the T-shaped guardrail 13 of the lower limb on one side for holding the explosion-proof battery 3. A pocket 14 can also be provided on the other side for convenient filling of other items or spare batteries.

[0043] Reference Figure 1 、 Figure 2 The heat source 2 includes an abdominal heater 21, a back heater 22, an upper arm heater 23, and a thigh heater 24. The abdominal heater 21 is arranged inside the abdominal fabric interlayer of the torso vest 11, several back heaters 22 are arranged inside the back fabric interlayer of the torso vest 11, the upper arm heater 23 is arranged inside the fabric interlayer of the upper limb T-shaped guard trunk 12, and the thigh heater 24 is arranged inside the fabric interlayer of the lower limb T-shaped guard trunk 13.

[0044] Reference Figure 9 、 Figure 10 、 Figure 11 Three back heaters 22 are provided from top to bottom. The upper back heater 22 heats the Dazhui acupoint, the middle back heater 22 heats the Ganshu acupoint and the Danshu acupoint, and the lower back heater 22 heats the Mingmen acupoint, the Shenshu acupoint, and the Yaoyangguan acupoint. Two abdominal heaters 21 are provided, located on the left and right chest and abdomen, to heat the Qihai acupoint. The heat source 2 includes two connecting lines. The first connecting line is: the two upper arm heaters 23 are respectively connected to the top back heater 22, the upper and middle back heaters 22 are connected, and the middle back heater 22 is connected to the explosion-proof battery 3; the second connecting line is: the two abdominal heaters 21 are respectively connected to the lower back heater 22, the two thigh heaters 24 are respectively connected to the lower back heater 22, and the thigh heater 24 near the pocket 14 is connected to the explosion-proof battery 3. Two power supply connectors connected to the two connecting lines are provided in the pocket 14, and the power supply connectors are plugged into the explosion-proof battery 3.

[0045] Reference Figure 8 The heat source 2 of the armor body 1 has a seven-layer structure from the inside to the outside, which is the inner surface layer, heat reflection layer, conduction layer, electric heating layer, heat storage layer, blocking layer, and outer surface layer. The heat source 2 is set in the electric heating layer and is made of composite semiconductor material.

[0046] Inner surface: Use skin-friendly materials with a high proportion of cotton and nylon to ensure a good touch to the human body;

[0047] Heat reflection layer: Add a metal reflection layer on the surface of the fiber substrate to make the infrared reflectivity ≥95%, preferably ≥98%;

[0048] Conductive layer: Use transition crystal material with thermal conductivity ≥100W / m·K to quickly conduct the heat generated by the electric heating layer;

[0049] Electric heating layer: Use semiconductor materials with high temperature sensitivity to form a heating circuit to achieve rapid heating at low temperatures;

[0050] Heat storage layer: Use flexible nanomaterials with low density and high porosity to suppress air convection and quickly reduce the heat conduction effect;

[0051] Blocking layer: Use nano-scale flexible closed-pore material with a thermal conductivity of ≤0.01W / m·K to fix the air and further reduce heat conduction;

[0052] Outer layer: Use cotton, polyester and other materials with high flatness and good wrinkle resistance to improve appearance and comfort.

[0053] The comprehensive thermal conductivity of the seven-layer structure decreases exponentially, and the thermal conductivity of the innermost layer is several orders of magnitude higher than that of the outermost layer. It can quickly direct the heat generated by the heating element to the human body, so that the heat can be fully utilized and heat loss can be minimized.

[0054] Each heater of the heat source 2 is made of a composite semiconductor material. For example, a semiconductor material that can generate heat quickly at low temperatures by being driven by a low voltage can be selected. The infrared wavelength emitted by the semiconductor material after being energized is similar to that of moxibustion, so as to achieve the therapeutic effects of far-infrared and microwave. Specifically, a semiconductor material is made of barium titanate-based compounds, rare earth compounds, metals such as chromium, nickel, and manganese, graphite, and polymers through a special process as the heat source 2. The resistance value of the semiconductor material is reduced through a special preparation process so that it can quickly achieve electrothermal conversion under low voltage. By adjusting the raw material ratio of the semiconductor material, the peak wavelength of its thermal radiation is stabilized at about 1.36 μm (the radiation spectrum of moxa when burning is between 0.8 and 5.6 μm, with a peak of about 1.5 μm, which belongs to the near-infrared band), so as to achieve similar therapeutic and health-care effects on the human body. The semiconductor material can also automatically control the upper limit of the maximum temperature to prevent overheating (for example, the composite semiconductor material disclosed in the patent "A composite positive temperature coefficient thermistor material and preparation method, CN114678177B" can be used).

[0055] Specifically, citing Traditional Chinese Medicine (TCM) meridian theory, point heat sources are arranged along the Governor Vessel (Governor Vessel) and key acupuncture points on the left and right Foot-Taiyang Bladder Meridians, as well as the Dantian (Qi Hai) point in the lower abdomen. The goal is to manage the microwaves from the point heat sources (control the high temperature to not exceed 60°C) for sustainable acupuncture point stimulation. The point heat sources are arranged in a grid pattern, allowing heat to diffuse evenly along the meridians. The seven-layer structure of the armor reduces heat loss, thereby maintaining a stable temperature at the acupuncture points and sustaining sustainable thermal stimulation of the three Yang meridians and the lower Dantian (Qi Hai). Based on TCM meridian theory and reagent testing, the thermal effect on the three Yang meridians and the lower Dantian can promote the dredging (circulation) of the human meridians, maintaining the body's sensitivity and flexibility to respond to external stimuli in extremely cold environments, and achieving a therapeutic effect of relaxing muscles and activating blood circulation.

[0056] Considering the mutual interaction and promotion of the Ren and Du meridians, we selected the Qihai acupoint (the Ren meridian center) on the ventral side, and simultaneously applied thermal radiation stimulation to the lower Dantian point, along with the dorsal Du meridian system. In actual testing and application, this design has been shown to effectively assist in dredging the Ren and Du meridians.

[0057] Through the meridian circulation pathways, the localized heat effect travels down the back to the heels and upward to the neck and crown of the head. In cold environments, the human body maintains a certain degree of flexibility and the mind remains clear. Therefore, wearing this armor in freezing temperatures (-40°C) maintains flexibility, ensuring controllable movements during various hazardous activities and enabling timely and effective responses to various external stimuli.

[0058] Reference Figure 3-Figure 6 The explosion-proof battery 3 is installed in the pocket 14 and connected to the heat source 2. The overall structure is arc-shaped. An explosion-proof deflector 32 is provided between the internal battery group 31 and the outer shell 34 adjacent to the thigh side. The inner wall of one side of the outer shell 34 is provided with a main control module 33 connected to the battery group 31; the outer shell 34 of the explosion-proof battery 3 is arc-shaped, with arc-shaped transitions on both sides. A bottom panel 341 is provided on one side of the shell body, and a front panel 342 is provided on the other side. The front panel 342 is provided with a switch button, an indicator light, and a power socket. The Beidou satellite positioning and 5G communication module 41 is connected to the main control module 33 and the inner wall of the front panel 342. The edges on both sides of the explosion-proof deflector 32 are rolled outward and wrap the battery group 31 from the inside to the outside. The height of the wrapped battery group 31 exceeds one-half of the thickness of the battery group 31.

[0059] Specifically, the battery as a whole adopts a large arc shape, so that the battery can fit the lower limbs after being placed in the leg battery compartment, avoiding discomfort caused by sliding during exercise. The peak combustion temperature of the ternary lithium battery is about 800℃, and the peak combustion temperature of the polymer battery is 600℃-800℃. Therefore, the anti-explosion guide plate 32 is made of a new composite material that can maintain high structural strength at a high temperature of 1000℃ and has low thermal conductivity. If the battery pack 31 is punctured by external force and causes a deflagration, the pressure of the deflagration flame is guided to the outside through the anti-explosion guide plate 32 to release pressure, which can avoid damage to the human tissue inside the armor. Figure 7 .

[0060] Reference Figure 5 、 Figure 12 The positioning and tracing system 4 includes a Beidou satellite positioning and 5G communication module 41 installed inside the shell on one side of the explosion-proof battery 3. The Beidou satellite positioning and 5G communication module 41 is connected to the main control module 33, and can perform three-point positioning based on the Beidou satellite navigation system and connect to the terminal management system through a mobile 5G communication base station.

[0061] Specifically, the explosion-proof battery 3 and the Beidou satellite positioning and 5G communication module 41 are designed as a single assembly. The Beidou satellite positioning and 5G communication module 41 in the explosion-proof battery 3 performs three-point positioning based on the Beidou satellite navigation system. It connects to a dedicated mobile 5G communication base station and transmits Beidou satellite positioning information to the terminal management system via a dedicated 5G channel at a frequency of once per minute, enabling personnel location and tracking. The combination of Beidou satellite positioning technology and armor enables accurate positioning and tracking of personnel, effectively solving the problem of locating and finding missing persons in outdoor environments with poor communication conditions.

[0062] When putting it on, the person puts on the torso vest 11 and zips it up; puts on the left and right upper limbs and fixes them with Velcro; puts on the left and right lower limbs and fixes them with Velcro; connects the power supply connector to the explosion-proof battery 3, turns on the explosion-proof battery 3, and puts the explosion-proof battery 3 into the pocket 14.

[0063] The armor of the present invention can achieve point-like heating through low voltage and achieve uniform heat diffusion. According to the theory of meridians in traditional Chinese medicine, the armor stimulates key acupuncture points through thermal radiation to achieve research on human body thermal protection. In response to extreme cold climates, the armor can generate point-like heat, control the uniform dissipation of heat, and reduce heat loss to the outside world through certain means. The present invention can ensure the sensitivity of muscles and the flexibility of limb joints in extreme cold conditions. The present invention can reduce damage in the event of a battery explosion, and through the cooperation of mobile base stations and the Beidou satellite positioning system, it can achieve positioning and tracking of equipment personnel.

[0064] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like to indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.

[0065] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In the description of the present invention, "plurality" means at least two, such as two, three, etc., unless otherwise specifically defined.

[0066] In the present invention, unless otherwise specified or limited, the terms "installed," "connected," "connect," "fixed," etc. should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integration; mechanical connection, electrical connection, or communication; direct connection or indirect connection through an intermediate medium; internal communication between two elements or interaction between two elements, unless otherwise specified. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.

[0067] The above is an exemplary description of the present invention. Obviously, the specific implementation of the present invention is not limited to the above-mentioned method. As long as various improvements are made using the method concept and technical solution of the present invention, or they are directly applied to other occasions without improvement, they are all within the scope of protection of the present invention.

Claims

1. Meridian temperature-adaptive tracing armor, characterized by: include: The armor body (1) comprises a torso vest (11), an upper limb T-shaped guard (12), and a lower limb T-shaped guard (13). The upper limb T-shaped guard (12) is connected to the torso vest (11) at the shoulder by a seam, and the lower limb T-shaped guard (13) is connected to the torso vest (11) at the crotch by a seam. A pocket (14) is provided on the outer side of the lower limb T-shaped guard (13). The heat source (2) includes an abdominal heater (21), a back heater (22), an upper arm heater (23), and a thigh heater (24). The abdominal heater (21) is arranged inside the abdominal fabric interlayer of the torso vest (11), a plurality of back heaters (22) are arranged inside the back fabric interlayer of the torso vest (11), the upper arm heater (23) is arranged inside the fabric interlayer of the upper limb T-shaped guard (12), and the thigh heater (24) is arranged inside the fabric interlayer of the lower limb T-shaped guard (13); the fabric of the heat source (2) of the armor body (1) is set to a seven-layer structure from the inside to the outside; An explosion-proof battery (3) is installed in a pocket (14) and connected to a heat source (2). The battery has an overall arc-shaped structure. An explosion-proof deflector (32) is provided between an internal battery pack (31) and a housing (34) adjacent to a thigh. A main control module (33) connected to the battery pack (31) is provided on an inner wall of the housing (34). The positioning and tracing system (4) includes a Beidou satellite positioning and 5G communication module (41) installed inside a shell on one side of the explosion-proof battery (3). The Beidou satellite positioning and 5G communication module (41) is connected to a main control module (33), can perform three-point positioning based on the Beidou satellite navigation system, and is connected to a terminal management system through a mobile 5G communication base station.

2. The meridian temperature-adaptive tracing armor according to claim 1, characterized in that: The front sides of the torso vest (11) are connected by a zipper, and the upper limb T-shaped guard trunk (12) and the lower limb T-shaped guard trunk (13) are fixed by Velcro.

3. The meridian temperature-adaptive tracing armor according to claim 1, characterized in that: Three back heaters (22) are provided from top to bottom. The upper back heater (22) heats the Dazhui acupoint, the middle back heater (22) heats the Ganshu acupoint and the Danshu acupoint, the lower back heater (22) heats the Mingmen acupoint, the Shenshu acupoint and the Yaoyangguan acupoint, and two abdominal heaters (21) are provided, located on the left and right chest and abdomen, to heat the Qihai acupoint.

4. The meridian temperature-adaptive tracing armor according to claim 3, characterized in that: The heat source (2) includes two connection lines. The first connection line is: two upper arm heaters (23) are respectively connected to the top back heater (22), the upper and middle back heaters (22) are connected, and the middle back heater (22) is connected to the explosion-proof battery (3); the second connection line is: two abdomen heaters (21) are respectively connected to the lower back heater (22), two thigh heaters (24) are respectively connected to the lower back heater (22), and the thigh heater (24) near the pocket (14) is connected to the explosion-proof battery (3).

5. The meridian temperature-adaptive tracing armor according to claim 4, characterized in that: Two power supply connectors respectively connected to the two connection lines are provided in the pocket (14), and the power supply connectors are plug-connected to the explosion-proof battery (3).

6. The meridian temperature-adaptive tracing armor according to claim 1, characterized in that: The heat source (2) of the armor body (1) is composed of an inner surface layer, a heat reflection layer, a conductive layer, an electric heating layer, a heat storage layer, a blocking layer, and an outer surface layer from the inside to the outside. The heat source (2) is arranged in the electric heating layer and is made of a composite semiconductor material.

7. The meridian temperature-adaptive tracing armor according to claim 1, characterized in that: The shell (34) of the explosion-proof battery (3) is arc-shaped, with arc-shaped transitions on both sides. A bottom panel (341) is provided on one side of the shell, and a front panel (342) is provided on the other side. A switch button, an indicator light, and a power socket are provided on the front panel (342). The Beidou satellite positioning and 5G communication module (41) and the main control module (33) are connected to the inner wall of the front panel (342). The edges of the explosion-proof guide plate (32) are rolled outward and wrap the battery cell group (31) from the inside to the outside. The height of the wrapped battery cell group (31) exceeds half the thickness of the battery cell group (31).