Intelligent refrigeration and heating temperature regulating special clothing

CN122515530APending Publication Date: 2026-08-07SHENZHEN USMART POWER TECH CO LTD
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Patent Information

Application Number
CN202610430940.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-04-02
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0005]本发明的目的在于提供智能制冷制热调温特种服装,旨在解决现有技术中,特种服装调温效果较差的问题

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Abstract

The present application relates to the technical field of clothes, and discloses a special clothes for intelligent refrigeration and heating temperature adjustment, which comprises a clothes body, a flexible water tank arranged on the clothes body, and a tank cavity in the flexible water tank; the tank cavity is connected with a temperature guide pipe, a water pump is arranged on the temperature guide pipe, and a one-way circulation flow channel is formed between the flexible water tank and the temperature guide pipe; a plurality of semiconductor refrigeration units are arranged on the flexible water tank, and a temperature measuring element and a control panel are arranged on the clothes body; the semiconductor refrigeration unit has a cold end part and a hot end part, and the cold end part is embedded in the tank cavity; the tank cavity is provided with an elastic layer, the elastic layer is provided with notched grooves, the groove openings of the notched grooves face the water outlet, and the adjacent notched grooves have barb sections; in the process of flowing of fluid from the water inlet to the water outlet, the cold end part adjusts the temperature of the fluid, and the barb sections synchronously apply elastic driving force to the fluid flowing to the water outlet; the refrigeration and heating are carried out by using the fluid after temperature adjustment, the temperature adjustment capacity is greatly improved, and the temperature adjustment effect is better.
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Description

Technical Field

[0001] This invention patent relates to the technical field of clothing, and more specifically, to special clothing with intelligent cooling, heating, and temperature regulation. Background Technology

[0002] Some specific working environments may involve extreme temperatures, such as extreme heat or cold, i.e., high-temperature and low-temperature environments. For example, high-temperature or low-temperature environments may exist in working environments such as aviation, navigation, exploration, and outdoor sports.

[0003] For workers in specific work environments, it is often desirable to wear temperature-regulating special clothing to ensure work comfort. This clothing can intelligently adjust the temperature according to the specific working environment, allowing workers to work in a comfortable temperature.

[0004] In the existing technology, in order to achieve the temperature regulation function of special clothing, special clothing is often made of specific materials. This not only results in high cost but also poor temperature regulation effect. Alternatively, ventilation structures, such as ventilation ducts, are arranged inside the special clothing to blow in hot or cold air to achieve temperature regulation. However, the temperature regulation capability of ventilation is limited and the temperature regulation effect is poor. Summary of the Invention

[0005] The purpose of this invention is to provide intelligent cooling and heating temperature-regulating special clothing, aiming to solve the problem of poor temperature regulation effect of special clothing in the prior art.

[0006] This invention is implemented as follows: Intelligent cooling and heating temperature-regulating special clothing includes an integrated garment body, which comprises a top and trousers. A waistband surrounds the waist area between the top and trousers. A flexible water tank is mounted on the waistband. The flexible water tank is flat and arranged circumferentially around the waistband. The flexible water tank has a cavity for storing fluid. One end of the flexible water tank has an inlet, and the other end has an outlet. A temperature-conducting pipe is connected between the water inlet and the water outlet. The temperature-conducting pipe has an internal section built into the body of the garment, which is arranged in a multi-segmented, meandering manner. One end of the temperature-conducting pipe has a water inlet section connected to the water inlet, and the other end has a water outlet section connected to the water outlet. The water inlet section and the water outlet section are located on the outside of the garment. A water pump is installed on the water inlet section, and a unidirectional circulation channel for unidirectional fluid circulation is formed between the flexible water tank and the temperature-conducting pipe. The flexible water tank is equipped with multiple semiconductor cooling units, which are electrically connected to a battery. The clothing body is equipped with a temperature measuring element for monitoring the external temperature and a control board. The battery and the temperature measuring element are electrically connected to the control board. The multiple semiconductor cooling units are arranged sequentially at intervals along the length of the waist. Each semiconductor cooling unit has a cold end and a hot end. The cold end is embedded in the tank cavity, and the hot end is exposed outside the flexible water tank. The top and bottom of the tank cavity each have end walls, which are arranged facing each other at intervals. Each end wall has an elastic layer that extends along the length of the flexible water tank. The elastic layer has multiple notches and grooves, which are arranged sequentially at intervals along the length of the elastic layer. Each notch and groove has an opening that faces the water outlet. Between adjacent notches and grooves, there are inclined barbed sections. The outer ends of the barbed sections are abutted against the elastic layer, and the inner ends of the barbed sections are inclined towards the water outlet and are arranged in a free manner. As the fluid in the chamber flows from the inlet to the outlet, the cold end adjusts the temperature of the fluid. The adjusted fluid then enters the temperature-conducting pipe through the outlet. The fluid-driven barbed section reciprocates and elastically deforms between the inlet and outlet, and the barbed section simultaneously applies an elastic driving force to the fluid as it flows toward the outlet.

[0007] Furthermore, the garment body is provided with a sealable inner pocket, in which the battery is placed. The battery is electrically connected to a semiconductor cooling unit via wires, which are embedded in the garment body.

[0008] Furthermore, the inner pocket is provided with elastic clips on both sides, each elastic clip having a clamping channel. The bottom of the inner pocket has a plug, which is connected to a wire and plugged into a battery. Both ends of the battery pass through the clamping channels of the elastic clips, and the two elastic clips clamp and fix the battery in place, so that the battery is relatively fixed in the inner pocket.

[0009] Furthermore, along the height direction of the flexible water tank, the outlet is flat, the outlet section has an outlet flat section connected to the outlet, the outlet flat section has an outlet flat cavity inside, and the width of the outlet flat cavity gradually decreases along the flow direction of the fluid.

[0010] Furthermore, the top and bottom of the water outlet flat cavity are respectively provided with elastic curved plates, the outer end of the curved plate is connected to the water outlet flat section, the outer end of the curved plate is bent away from the water outlet and is freely arranged. During the flow of the fluid in the outlet flat cavity, the fluid drives multiple curved plates to reciprocate elastically and deform, and the curved plates simultaneously apply pressure to the fluid flowing away from the outlet.

[0011] Furthermore, along the height direction of the flexible water tank, the inlet is flat, the inlet section has an inlet flat section connected to the inlet, the interior of the inlet flat section has an inlet flat cavity, and the width of the inlet flat cavity gradually increases along the flow direction of the fluid.

[0012] Furthermore, the top and bottom of the water outlet flat cavity are respectively covered with airbag layers, the airbag layers are arranged to extend along the flow direction of the fluid, and the thickness of the airbag layers gradually decreases; the interior of the airbag layer has strip-shaped airbag cavities, the airbag cavities are arranged to extend along the length direction of the airbag layer. During the flow of the fluid into the flat cavity, the airbag layer guides and buffers the flow of the fluid, and elastically restricts the reverse impact of the fluid.

[0013] Furthermore, the flexible water tank has an outwardly arranged outer wall and an inwardly arranged inner wall, the outer wall and the inner wall being arranged at intervals facing each other; a plurality of the semiconductor cooling units are disposed on the outer wall, the cold end passing through the outer wall and exposed in the tank cavity; The cavity is provided with multiple temperature-conducting plates, which are respectively aligned with multiple semiconductor refrigeration units. The temperature-conducting plates are fixed on the inner wall, and a temperature-conducting shaft is protruding on the temperature-conducting plate. The temperature-conducting shaft extends toward the cold end and is connected to the cold end.

[0014] Furthermore, a rotating cylinder is sleeved on the temperature-conducting shaft, the rotating cylinder is rotatably connected to the temperature-conducting shaft, and multiple radial plates extend from the outer periphery of the rotating cylinder. The multiple radial plates are arranged at intervals along the circumference of the rotating cylinder, and the heights of adjacent radial plates are different. Multiple through holes are provided in the radial plates, and the through holes transversely penetrate the radial plates. During the flow of the fluid in the chamber, the fluid drives the radial plate to rotate around the temperature-conducting axis, and the fluid simultaneously passes through multiple through holes in the radial plate.

[0015] Furthermore, the radial plate is provided with multiple driving holes, which are arranged between adjacent through holes and extend laterally through the radial plate. Each driving hole is covered with an elastic thin film layer. During the flow of fluid within the chamber, the fluid impacts the radial plate, compressing the thin film layer and causing it to elastically deform, thus synchronously driving the radial plate to rotate.

[0016] Compared with the prior art, the intelligent cooling and heating temperature-regulating special clothing provided by the present invention monitors the external temperature through a temperature sensing element, and then the control board controls the battery to power the semiconductor cooling unit so that the cold end works to regulate the temperature of the fluid in the chamber. The regulated fluid is driven by a water pump to flow into the temperature-conducting pipe and then into the clothing body, so as to achieve the intelligent cooling and heating temperature regulation effect of the clothing body. Secondly, the flexible water tank is located in the waist section, which is convenient for installation. It also uses the temperature-controlled fluid for cooling and heating, which greatly improves the temperature control capability and has a better temperature control effect. In addition, an elastic layer is arranged in the cavity, and the elastic layer forms notches and barbs, which can guide the flow of fluid in the cavity. Furthermore, during the flow of fluid, the barbs can reverse the flow of fluid and disturb the fluid, so as to better regulate the temperature between the fluid and the cold end. Attached Figure Description

[0017] Figure 1 This is a front view schematic diagram of the intelligent cooling and heating temperature-regulating special clothing provided by the present invention; Figure 2 This is a schematic diagram illustrating the cooling and heating principle of the intelligent cooling and heating temperature-regulating special clothing provided by the present invention. Figure 3 This is a partial internal schematic diagram of the flexible water tank provided by the present invention; Figure 4 This is a front view schematic diagram of the built-in bag and the storage battery provided by the present invention; Figure 5 This is a schematic diagram of the internal structure of the flat inlet section provided by the present invention; Figure 6 This is a schematic diagram of the internal structure of the flat water outlet section provided by the present invention; Figure 7 This is a cross-sectional schematic diagram of the semiconductor cooling unit and the flexible water tank provided by the present invention. Detailed Implementation

[0018] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.

[0019] The implementation of the present invention will be described in detail below with reference to specific embodiments.

[0020] In the accompanying drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components. In the description of this invention, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, they are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the accompanying drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.

[0021] Reference Figure 1-7 The image shown is a preferred embodiment of the present invention.

[0022] Intelligent cooling and heating temperature-regulating special clothing includes an integrated garment body 100, which includes a top and trousers. Between the top and trousers is a waistband 103 that surrounds the waist. A flexible water tank 200 is provided on the waistband 103. The flexible water tank 200 is flat and arranged around the circumference of the waistband 103. The flexible water tank 200 has a chamber 201 for storing fluid. One end of the flexible water tank 200 has a water inlet and the other end has a water outlet.

[0023] The clothing body 100 can be a one-piece suit, with the top and pants molded as one piece. The flexible water tank 200 can be made of a transparent material, so that the situation inside the tank cavity 201 can be directly observed. External fluid enters the tank cavity 201 through the inlet, and the fluid inside the tank cavity 201 is discharged through the outlet.

[0024] A temperature-conducting pipe 500 is connected between the inlet and outlet. The temperature-conducting pipe 500 has an internal section 505 built into the garment body 100. The internal section 505 is arranged in a multi-segmented, meandering manner. One end of the temperature-conducting pipe 500 has an inlet section 501 connected to the inlet, and the other end has an outlet section 503 connected to the outlet. The inlet section 501 and the outlet section 503 are located outside the garment body 100, respectively. A water pump 508 is installed on the inlet section 501. A unidirectional circulation channel for unidirectional fluid circulation is formed between the flexible water tank 200 and the temperature-conducting pipe 500.

[0025] The fluid in the temperature-conducting pipe 500 enters the chamber 201 through the inlet, and the fluid in the chamber 201 enters the temperature-conducting pipe 500 through the outlet, forming a unidirectional circulating flow.

[0026] The flexible water tank 200 is equipped with multiple semiconductor cooling units 300, which are electrically connected to the battery 603. The clothing body 100 is equipped with a temperature measuring element for monitoring the external temperature and a control board. The battery 603 and the temperature measuring element are electrically connected to the control board. The multiple semiconductor cooling units 300 are arranged sequentially and at intervals along the length of the waist circumference 103. Each semiconductor cooling unit 300 has a cold end 301 and a hot end 302. The cold end 301 is embedded in the cavity 201 and exposed, while the hot end 302 is exposed outside the flexible water tank 200.

[0027] The semiconductor cooling unit 300 is a common electronic component. When energized, it absorbs and releases heat at the two ends of the thermocouple, respectively, thus achieving the purpose of cooling and heating. By adjusting the direction of the current, the cold end 301 and the hot end 302 are interchanged accordingly.

[0028] The top and bottom of the tank cavity 201 each have end walls, which are arranged facing each other at intervals. Each end wall is provided with an elastic layer 202, which extends along the length of the flexible water tank 200. The elastic layer 202 is provided with multiple notches and grooves 203, which are arranged sequentially at intervals along the length of the elastic layer 202. Each notch and groove 203 has a groove opening, which faces the water outlet. There are inclined barbed sections 204 between adjacent notches and grooves 203. The outer end of the barbed section 204 is connected to the elastic layer 202, and the inner end of the barbed section 204 is inclined towards the water outlet and is arranged in a free manner. During the process of the fluid in the chamber 201 flowing from the inlet to the outlet, the cold end 301 adjusts the temperature of the fluid. The adjusted fluid enters the temperature-conducting pipe 500 through the outlet. The fluid drives the barbed section 204 to reciprocate elastically and deform between the inlet and the outlet. The barbed section 204 simultaneously applies an elastic driving force to the fluid flowing towards the outlet.

[0029] The aforementioned intelligent cooling and heating temperature-regulating special clothing monitors the external temperature through a temperature sensing element. The control board then controls the battery 603 to power the semiconductor cooling unit 300, causing the cold end 301 to operate and regulate the temperature of the fluid in the chamber 201. The regulated fluid is then driven by a water pump 508 to flow into the temperature-conducting pipe 500 and into the clothing body 100, thus achieving an intelligent cooling and heating temperature-regulating effect on the clothing body 100.

[0030] Secondly, the flexible water tank 200 is arranged in the waist section 103, which is convenient for installation. It also uses the temperature-controlled fluid for cooling and heating, which greatly improves the temperature control capability and has a better temperature control effect.

[0031] In addition, an elastic layer 202 is arranged in the box cavity 201, and the elastic layer 202 forms a notch 203 and a barb section 204, which can guide the flow of fluid in the box cavity 201. Furthermore, during the flow of fluid, the barb section 204 can reverse the flow of fluid and disturb the fluid, so as to better regulate the temperature between the fluid and the cold end 301.

[0032] In this embodiment, the garment body 100 is provided with a sealable inner pocket 600, and the battery 603 is placed in the inner pocket 600. The battery 603 is electrically connected to the semiconductor cooling unit 300 through wires, which are embedded in the garment body 100. This facilitates the placement and replacement of the battery 603 and also provides waterproofing for the battery 603.

[0033] In this embodiment, the inner bag 600 is provided with elastic clips 601 on both sides, and the elastic clips 601 have clamping channels. The bottom of the inner bag 600 has a plug, which is connected to a wire and plugged into a storage battery 603. The two ends of the storage battery 603 pass through the clamping channels of the elastic clips 601 respectively. The two elastic clips 601 clamp and fix the storage battery 603 so that the storage battery 603 is relatively fixed in the inner bag 600.

[0034] By clamping and fixing the battery 603 with two elastic clips 601, the battery 603 can be relatively fixed in the inner pocket 600, so that the connection between the battery 603 and the plug is stable, and the replacement operation of the battery 603 is convenient.

[0035] In this embodiment, the outlet is flat along the height direction of the flexible water tank 200. The outlet section 503 has an outlet flat section 504 connected to the outlet. The outlet flat section 504 has an outlet flat cavity 5043 inside. The width of the outlet flat cavity 5043 gradually decreases along the flow direction of the fluid.

[0036] In this way, as the fluid flows through the outlet flat cavity 5043, its flow velocity increases accordingly as the width gradually decreases, enabling rapid fluid flow. Furthermore, the outlet flat cavity 5043, as a buffer zone, facilitates longer temperature regulation of the fluid in the chamber 201.

[0037] In this embodiment, the top and bottom of the water outlet flat cavity 5043 are respectively provided with elastic curved plates 5041. The outer end of the curved plate 5041 is connected to the water outlet flat section 504. The outer end of the curved plate 5041 is bent away from the water outlet and is freely arranged. During the flow of fluid in the water outlet flat cavity 5043, the fluid drives multiple curved plates 5041 to reciprocate elastically swing and deform. The curved plates 5041 simultaneously apply pressure to the fluid flowing away from the water outlet.

[0038] In this way, during the flow of fluid in the flat cavity 5043, multiple curved plates 5041 are used for flow guidance, and the elastically oscillating curved plates 5041 can drive the flow of fluid in the opposite direction to achieve a smoother flow of fluid.

[0039] In this embodiment, the inlet is flat along the height direction of the flexible water tank 200. The inlet section 501 has an inlet flat section 502 connected to the inlet. The inlet flat section 502 has an inlet flat cavity 5023 inside. The width of the inlet flat cavity 5023 gradually increases along the flow direction of the fluid.

[0040] In this way, the arrangement of the inlet flat cavity 5023 can serve as a buffer zone, accelerating the flow rate of the fluid in the temperature-conducting pipe 500, and ensuring that the fluid has sufficient time in the chamber 201 to achieve better temperature regulation.

[0041] In this embodiment, the top and bottom of the water outlet flat cavity 5043 are respectively covered with airbag layers 5021. The airbag layers 5021 extend along the flow direction of the fluid, and the thickness of the airbag layers 5021 gradually decreases. The interior of the airbag layers 5021 has strip-shaped airbag cavities 5022, which extend along the length of the airbag layers 5021. During the flow of the fluid into the water inlet flat cavity 5023, the airbag layers 5021 guide and buffer the flow of the fluid, and elastically limit the reverse impact of the fluid.

[0042] The elastic deformation of the airbag layer 5021 restricts the reverse impact of the fluid and simultaneously drives the fluid into the chamber 201. The entire process changes dynamically with the flow of the fluid.

[0043] In this embodiment, the flexible water tank 200 has an outwardly arranged outer wall 206 and an inwardly arranged inner wall 207, with the outer wall 206 and the inner wall 207 arranged facing each other at intervals; a plurality of semiconductor cooling units 300 are disposed on the outer wall 206, with the cold end 301 passing through the outer wall 206 and exposed in the tank cavity 201. The cavity 201 is provided with a plurality of temperature-conducting plates 700, which are respectively aligned with a plurality of semiconductor cooling units 300. The temperature-conducting plates 700 are fixed on the inner wall 207, and a temperature-conducting shaft 701 protrudes from the temperature-conducting plate 700. The temperature-conducting shaft 701 extends toward the cold end 301 and is connected to the cold end 301.

[0044] By arranging temperature-conducting plates 700, which are connected to the cold end 301 via temperature-conducting shaft 701, the cavity 201 can maintain sufficient thickness under the support of the temperature-conducting shaft 701, preventing the cavity 201 from collapsing or deforming. Furthermore, this allows for a wider range of temperature regulation for the fluid in the cavity 201, improving the fluid's temperature regulation efficiency and achieving uniform temperature control.

[0045] In this embodiment, a rotating cylinder 702 is sleeved on the temperature-conducting shaft 701. The rotating cylinder 702 is rotatably connected to the temperature-conducting shaft 701. Multiple radial plates 703 extend from the outer periphery of the rotating cylinder 702. The multiple radial plates 703 are arranged at intervals along the circumference of the rotating cylinder 702, and the heights of adjacent radial plates 703 are different. Multiple through holes 704 are provided in the radial plates 703, and the through holes 704 transversely penetrate the radial plates 703. During the flow of fluid in the chamber 201, the fluid drives the radial plate 703 to rotate around the temperature-conducting shaft 701, and the fluid simultaneously passes through multiple through holes 704 of the radial plate 703.

[0046] Since the temperature-conducting shaft 701 is connected to the cold end 301, the cold end 301, the temperature-conducting shaft 701, the temperature-conducting plate 700, the rotating cylinder 702, and the radial plate 703 form a temperature-conducting whole, which increases the temperature conduction of the fluid over a wider range. In addition, the rotating cylinder 702 drives multiple radial plates 703 to rotate, which can simultaneously disturb the fluid, further increasing the temperature conduction area of ​​the fluid, etc., so as to achieve efficient and uniform temperature conduction.

[0047] In this embodiment, the radial plate 703 is provided with a plurality of driving holes 705, which are arranged between adjacent through holes 704. The driving holes 705 transversely penetrate the radial plate 703, and the driving holes 705 are covered with an elastic thin film layer. During the flow of fluid in the box cavity 201, the fluid impacts the radial plate 703, compresses the thin film layer to deform elastically, and synchronously drives the radial plate 703 to rotate.

[0048] By arranging a thin film layer, the thin film layer is subjected to compressive elastic deformation during the process of the fluid driving the radial plate 703, which facilitates the driving of the radial plate 703 by the fluid.

[0049] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. Intelligent cooling, heating, and temperature-regulating special clothing, characterized in that: The garment includes a one-piece garment body comprising a top and trousers. A waistband surrounds the waist between the top and trousers. A flexible water tank is provided on the waistband. The flexible water tank is flat and arranged around the circumference of the waistband. The flexible water tank has a cavity for storing fluid. One end of the flexible water tank has a water inlet, and the other end of the flexible water tank has a water outlet. A temperature-conducting pipe is connected between the water inlet and the water outlet. The temperature-conducting pipe has an internal section built into the body of the garment, which is arranged in a multi-segmented, meandering manner. One end of the temperature-conducting pipe has a water inlet section connected to the water inlet, and the other end has a water outlet section connected to the water outlet. The water inlet section and the water outlet section are located on the outside of the garment. A water pump is installed on the water inlet section, and a unidirectional circulation channel for unidirectional fluid circulation is formed between the flexible water tank and the temperature-conducting pipe. The flexible water tank is equipped with multiple semiconductor cooling units, which are electrically connected to a battery. The clothing body is equipped with a temperature measuring element for monitoring the external temperature and a control board. The battery and the temperature measuring element are electrically connected to the control board. The multiple semiconductor cooling units are arranged sequentially at intervals along the length of the waist. Each semiconductor cooling unit has a cold end and a hot end. The cold end is embedded in the tank cavity, and the hot end is exposed outside the flexible water tank. The top and bottom of the tank cavity each have end walls, which are arranged facing each other at intervals. Each end wall has an elastic layer that extends along the length of the flexible water tank. The elastic layer has multiple notches and grooves, which are arranged sequentially at intervals along the length of the elastic layer. Each notch and groove has an opening that faces the water outlet. Between adjacent notches and grooves, there are inclined barbed sections. The outer ends of the barbed sections are abutted against the elastic layer, and the inner ends of the barbed sections are inclined towards the water outlet and are arranged in a free manner. As the fluid in the chamber flows from the inlet to the outlet, the cold end adjusts the temperature of the fluid. The adjusted fluid then enters the temperature-conducting pipe through the outlet. The fluid-driven barbed section reciprocates and elastically deforms between the inlet and outlet, and the barbed section simultaneously applies an elastic driving force to the fluid as it flows toward the outlet.

2. The intelligent cooling and heating temperature-regulating special clothing as described in claim 1, characterized in that, The garment has a sealable inner pocket, in which the battery is placed. The battery is electrically connected to a semiconductor cooling unit via wires, which are embedded in the garment.

3. The intelligent cooling and heating temperature-regulating special clothing as described in claim 2, characterized in that, The inner pocket has elastic clips on both sides, each with a clamping channel. The bottom of the inner pocket has a plug connected to a wire and inserted into a battery. Both ends of the battery pass through the clamping channels of the elastic clips, and the two elastic clips clamp and fix the battery in place, thus securing the battery relatively within the inner pocket.

4. The intelligent cooling and heating temperature-regulating special clothing as described in any one of claims 1 to 3, characterized in that, Along the height direction of the flexible water tank, the outlet is flat, the outlet section has an outlet flat section connected to the outlet, the outlet flat section has an outlet flat cavity inside, and the width of the outlet flat cavity gradually decreases along the flow direction of the fluid.

5. The intelligent cooling and heating temperature-regulating special garment as described in claim 4, characterized in that, The top and bottom of the water outlet flat cavity are respectively provided with elastic curved plates. The outer end of the curved plate is connected to the water outlet flat section. The outer end of the curved plate is bent away from the water outlet and is freely arranged. During the flow of the fluid in the outlet flat cavity, the fluid drives multiple curved plates to reciprocate elastically and deform, and the curved plates simultaneously apply pressure to the fluid flowing away from the outlet.

6. The intelligent cooling and heating temperature-regulating special garment as described in any one of claims 1 to 3, characterized in that, Along the height direction of the flexible water tank, the inlet is flat, the inlet section has an inlet flat section connected to the inlet, the inlet flat section has an inlet flat cavity inside, and the width of the inlet flat cavity gradually increases along the flow direction of the fluid.

7. The intelligent cooling and heating temperature-regulating special clothing as described in claim 6, characterized in that, The top and bottom of the water outlet flat cavity are respectively covered with airbag layers, which extend along the flow direction of the fluid and gradually decrease in thickness; the interior of the airbag layer has strip-shaped airbag cavities that extend along the length of the airbag layer. During the flow of the fluid into the flat cavity, the airbag layer guides and buffers the flow of the fluid, and elastically restricts the reverse impact of the fluid.

8. The intelligent cooling and heating temperature-regulating special clothing as described in any one of claims 1 to 3, characterized in that, The flexible water tank has an outwardly facing wall and an inwardly facing wall, with the outwardly facing wall and the inwardly facing wall spaced apart from each other; a plurality of semiconductor cooling units are disposed on the outwardly facing wall, and the cold end passes through the outwardly facing wall and is exposed in the tank cavity; The cavity is provided with multiple temperature-conducting plates, which are respectively aligned with multiple semiconductor refrigeration units. The temperature-conducting plates are fixed on the inner wall, and a temperature-conducting shaft is protruding on the temperature-conducting plate. The temperature-conducting shaft extends toward the cold end and is connected to the cold end.

9. The intelligent cooling and heating temperature-regulating special clothing as described in claim 8, characterized in that, A rotating cylinder is sleeved on the temperature-conducting shaft. The rotating cylinder is rotatably connected to the temperature-conducting shaft. Multiple radial plates extend from the outer periphery of the rotating cylinder. The multiple radial plates are arranged at intervals along the circumference of the rotating cylinder, and the heights of adjacent radial plates are different. Multiple through holes are provided in the radial plates, and the through holes penetrate the radial plates laterally. During the flow of the fluid in the chamber, the fluid drives the radial plate to rotate around the temperature-conducting axis, and the fluid simultaneously passes through multiple through holes in the radial plate.

10. The intelligent cooling and heating temperature-regulating special garment as described in claim 9, characterized in that, The radial plate has multiple driving holes arranged between adjacent through holes. The driving holes transversely penetrate the radial plate and are covered with an elastic thin film layer. During the flow of fluid in the box cavity, the fluid impacts the radial plate, compresses the thin film layer to deform elastically, and synchronously drives the radial plate to rotate.