Thermoregulatory clothing powered by thin-film solar cells

By employing a detachable power supply component and a flexible solar thin-film panel for power supply within the temperature-controlled work suit, the problems of cumbersome replacement and insufficient safety in existing technologies are solved, achieving flexible maintenance and safe control.

CN117223927BActive Publication Date: 2026-03-10HYDROPOWER FIRE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-11
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing thermostatic work clothes based on semiconductor cooling chips are cumbersome to replace when damaged, consume a lot of resources, and lack effective temperature control and safety guarantees.

Method used

The design incorporates detachable power supply components, combined with flexible solar thin-film panels and electronic cooling technology. The body surface and cuff cooling components are powered by flexible solar panels and equipped with temperature sensors and trigger sensors to enable flexible maintenance and safe control.

Benefits of technology

It enables flexible replacement of parts, reduces resource consumption, improves the flexibility and safety of use, and enhances the convenience and safety of temperature regulation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN117223927B_ABST
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Abstract

The application discloses a constant-temperature work clothes powered by a thin-film solar cell, and relates to the technical field of constant-temperature work clothes for fire fighting, which comprises a work clothes body, notches are respectively formed in two shoulder parts of the work clothes body, and a detachable power supply assembly is installed in the notches of the work clothes body. The power supply assembly is detachably installed in the two shoulder parts of the work clothes, body surface cooling components are respectively attached and installed on the front body and the back body inside the work clothes, detachable sleeve opening cooling components are respectively installed in the two sleeves of the work clothes body, and the sleeve opening cooling components and the body surface cooling components are electrically connected with the power supply assembly, so that when the work clothes is maintained, the work clothes can be replaced by replacing individual parts instead of the whole work clothes, resource consumption is reduced to a certain extent, and the flexibility of the work clothes in use is indirectly improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of fire-fighting thermostatic work clothes, in particular to a thermostatic work clothes based on thin-film solar cell power supply. BACKGROUND

[0002] The thermostatic work clothes is a kind of work clothes capable of automatically adjusting temperature, which can keep people comfortable in harsh working environment, improve work efficiency and safety.

[0003] According to the search, the Chinese invention patent with the authorized announcement number "CN102342600B" discloses "a thermostatic work clothes based on thin-film solar cell power supply", which realizes the constant of the body temperature of the person wearing the work clothes in a high-temperature environment by installing a large number of semiconductor refrigeration sheets in the inside of the body of the clothes.

[0004] However, the above-mentioned device is fixed by installing the semiconductor refrigeration sheet in the inside of the clothes in actual use, so when the semiconductor refrigeration sheet is damaged on a large scale, it is very tedious to replace the semiconductor refrigeration sheet by single, and therefore the applicant proposes a new thermostatic work clothes based on thin-film solar cell power supply to solve the above-mentioned problems. SUMMARY

[0005] The present application aims to provide a thermostatic work clothes based on thin-film solar cell power supply to solve the problems proposed in the background.

[0006] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a thermostatic work clothes based on thin-film solar cell power supply, comprising: a work clothes body,

[0007] Two shoulders of the work clothes body are respectively provided with notches, and the work clothes body is provided with removable power supply assemblies at the notches; two sleeve parts of the work clothes body are respectively provided with removable sleeve cooling parts; and the front body and the back body parts in the inside of the work clothes body are respectively provided with body surface cooling parts.

[0008] The body surface cooling parts and the sleeve cooling parts both use electronic refrigeration technology, and the body surface cooling parts and the sleeve cooling parts are electrically connected with the power supply assemblies.

[0009] The power supply assemblies comprise:

[0010] A flexible assembly box is attached and installed at the notches of the work clothes body and can completely cover the notches, and in addition, the top of the flexible assembly box is designed as an opening, and the flexible assembly box is provided with a flexible solar thin-film plate matched with the opening at the top, and sliding notches are respectively provided at the two sides of the bottom of the flexible assembly box.

[0011] The flexible assembly box is internally provided with a detachable flexible battery plate, two transmission wire bundles are installed on the discharge end of the flexible battery plate and are matched with the sliding gap, and the charging end of the flexible battery plate is matched with the discharge end of the flexible solar thin film plate, wherein the flexible battery plate is electrically connected with the body surface cooling component and the sleeve cooling component through the transmission wire bundles.

[0012] Further, one end of the flexible assembly box close to the collar of the workwear body is a box opening, and the flexible battery plate is fixed with an assembly plate matched with the box opening at one end close to the box opening;

[0013] Both ends of the assembly plate outside are inserted with deformable plug-in frames, and when the flexible battery plate is moved to the inside of the flexible assembly box and is electrically connected with the flexible solar thin film plate, the top and bottom of the plug-in frame are respectively plugged into the top and bottom of the surface of the flexible assembly box.

[0014] Further, the front and back parts of the workwear body outside are respectively sewn with two adhesive tapes, and the two adhesive tapes are respectively close to the collar position of the workwear body;

[0015] Both sides of the flexible assembly box outside are respectively fixed with adhesive tapes matched with the adhesive tapes.

[0016] Further, the body surface cooling component comprises:

[0017] A semiconductor refrigeration flexible sheet is installed on the body of the workwear body inside, and the refrigeration surface thereof faces the inside of the workwear body;

[0018] A power supply wire bundle is installed at the power supply end of the semiconductor refrigeration flexible sheet, and a power supply connector is installed at the other end thereof;

[0019] A connection plug is installed at the end of the transmission wire bundle away from the flexible battery plate, and the connection plug is matched with the power supply connector.

[0020] Further, the sleeve cooling component comprises:

[0021] A sleeve pipe is formed by the combination of semiconductor refrigeration flexible sheets on both sides, wherein the inside of the sleeve pipe is the refrigeration surface of the semiconductor refrigeration flexible sheet;

[0022] A sleeve opening made of insulating material is fixed at one end of the sleeve pipe, and a magic tape is installed at the other end of the sleeve pipe, and the sleeve pipe is installed on the sleeve part of the workwear body through the magic tape;

[0023] A connection wire bundle for electrically connecting with the semiconductor refrigeration flexible sheet is further installed at the other end of the sleeve pipe, and a connection connector matched with the connection plug is installed at the end of the connection wire bundle away from the sleeve pipe.

[0024] Further, the flexible solar thin film panel is internally provided with a temperature sensor, a current sensor is installed between the flexible solar thin film panel and the flexible battery panel, a pocket is sewn on the chest of the workwear body, a trigger sensor is installed inside the pocket, the trigger sensor is electrically connected with the current sensor, and the electric sensor is electrically connected with the temperature sensor.

[0025] Further, the workwear body is made of flame-retardant fabric, and the workwear body is designed in any one of a shirt design, a coat design and a T-shirt design.

[0026] Compared with the prior art, the workwear has the advantages that:

[0027] The constant-temperature workwear powered by the thin film solar cell is characterized in that: the power supply assembly is detachably installed on the two shoulder parts of the workwear, the body surface cooling parts are respectively attached and installed on the front and back parts inside the workwear, the detachable sleeve opening cooling parts are respectively installed on the two sleeves of the workwear body, and the sleeve opening cooling parts and the body surface cooling parts are electrically connected with the power supply assembly.

[0028] In addition, the trigger sensor is installed on the pocket, the temperature sensor is internally arranged in the flexible solar thin film panel, and the current sensor is installed between the flexible solar thin film panel and the flexible battery panel, so that the wearer can control the operation of the workwear through the trigger sensor during actual use, the temperature is sensed through the temperature sensor, and the electric sensor is fed back to disconnect the power supply, and the safety of the workwear during use is improved to a certain extent. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 is an isometric view of the present application;

[0030] Figure 2 is a schematic view of the back structure of the present application;

[0031] Figure 3 is a structural composition view of the body surface cooling part of the present application;

[0032] Figure 4 is a structural composition view of the sleeve opening cooling part of the present application;

[0033] Figure 5 is a structural composition view of the power supply assembly of the present application;

[0034] Figure 6 The bottom structure diagram of the power supply assembly of the present application.

[0035] In the figure: 1, the work clothes body; 2, the body surface cooling component; 201, the semiconductor refrigeration flexible sheet; 202, the power supply wire harness; 203, the power supply connector; 3, the trigger inductor; 4, the sleeve cooling component; 401, the sleeve; 402, the sleeve opening; 403, the magic tape; 404, the connecting wire harness; 405, the connecting connector; 5, the sleeve part; 6, the power supply assembly; 601, the flexible assembly box; 602, the sticky tape; 603, the flexible battery plate; 604, the plug-in rack; 605, the assembly plate; 606, the transmission wire harness; 607, the connecting plug; 608, the sliding gap; 7, the sticky paste. Embodiment

[0036] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0037] Constant temperature work clothes are usually used for people working in outdoor, low temperature environment or high temperature environment, such as firefighters, etc., as shown in Figures 1-6 The present application provides a technical solution, which comprises: a work clothes body 1, wherein two shoulder parts of the work clothes body 1 are respectively provided with a gap, and the work clothes body 1 is provided with a removable power supply assembly 6 at the gap, two sleeve parts 5 of the work clothes body 1 are respectively provided with a removable sleeve cooling component 4, and the front and back parts inside the work clothes body 1 are respectively provided with a body surface cooling component 2, in addition, the body surface cooling component 2 and the sleeve cooling component 4 both use electronic refrigeration technology, and the body surface cooling component 2 and the sleeve cooling component 4 are electrically connected with the power supply assembly 6.

[0038] It should be noted that, as shown in Figure 5 and Figure 6 It can be seen that, in the application, the power supply assembly 6 comprises:

[0039] The flexible assembly box 601 is mounted on the gap of the work clothes body 1 and can completely cover the gap. In addition, the top of the flexible assembly box 601 is designed as an opening, and the flexible solar thin film panel is mounted on the top of the flexible assembly box 601 and matched with the opening. The bottom of the flexible assembly box 601 is provided with sliding gaps 608 on both sides. The flexible battery panel 603 is mounted in the flexible assembly box 601 and can be removed. The discharge end of the flexible battery panel 603 is provided with two transmission line bundles 606 matched with the sliding gaps 608. The charging end of the flexible battery panel 603 is matched with the discharge end of the flexible solar thin film panel. The flexible battery panel 603 is electrically connected to the body surface cooling component 2 and the sleeve cooling component 4 through the transmission line bundles 606.

[0040] It should be noted that in the present application, the flexible solar thin film panel is a solar cell panel that can be bent and rolled up. Compared with the traditional silicon-based solar cell panel, the flexible solar thin film panel uses thin film solar cell technology and is made of amorphous silicon, organic polymer or other new materials. The flexible battery panel 603 is a battery technology that can be bent, rolled up or stretched. Unlike traditional rigid batteries, flexible batteries use special materials and manufacturing processes to make them more flexible and plastic. It should be noted that in the present application, the flexible solar thin film panel is UNI-SOLAR PVL-105, and the flexible battery is SUNPOWER MAXEON Gen III Prime.

[0041] In addition, it should be noted that in the present application, the end of the flexible assembly box 601 close to the collar of the work clothes body 1 is a box opening. The flexible battery panel 603 is fixed with an assembly plate 605 matched with the box opening at the end close to the box opening. The assembly plate 605 is provided with deformable plug-in racks 604 at both ends outside. When the flexible battery panel 603 is moved to the inside of the flexible assembly box 601 and electrically connected to the flexible solar thin film panel, the top and bottom of the plug-in rack 604 are respectively plugged into the top and bottom of the surface of the flexible assembly box 601.

[0042] Reference Figure 1 And Figure 2 It can be seen that in the present application, the front and back parts of the work clothes body 1 are respectively sewn with two adhesive tapes 7, and the two adhesive tapes 7 are respectively close to the collar position of the work clothes body 1. The two sides of the flexible assembly box 601 are respectively fixed with adhesive tapes 602 matched with the adhesive tapes 7.

[0043] Reference Figure 3It can be seen that, in the present application, the body surface cooling component 2 comprises: a semiconductor refrigeration flexible sheet 201, which is attached and installed at the body of the workwear body 1, and the refrigeration surface thereof faces the inside of the workwear body 1; a power supply wire harness 202, one end of which is installed at the power supply end of the semiconductor refrigeration flexible sheet 201, and the other end of which is provided with a power supply connector 203; and a transmission wire harness 606, one end of which is provided with a connection plug 607 away from the flexible battery plate 603, and the connection plug 607 and the power supply connector 203 are matched.

[0044] Reference Figure 4 It can be seen that, in the present application, the sleeve cooling component 4 comprises: a sleeve 401, which is composed of the combination of the two sides of the semiconductor refrigeration flexible sheet 201, wherein the inside of the sleeve 401 is the refrigeration surface of the semiconductor refrigeration flexible sheet 201; one end of the sleeve 401 is fixed with a sleeve 402 made of insulating material, and the other end of the sleeve 401 is wrapped and installed with a magic tape 403, and the sleeve 401 is installed at the sleeve part 5 of the workwear body 1 by means of the magic tape 403; and the sleeve 401 is also provided at the other end with a connection wire harness 404 for electrically connecting with the semiconductor refrigeration flexible sheet 201, and one end of the connection wire harness 404 away from the sleeve 401 is provided with a connection connector 405 matched with the connection plug 607.

[0045] It should be noted that the semiconductor refrigeration flexible sheet in the present application belongs to electronic refrigeration technology, which is a refrigeration technology that realizes cooling through electronic control. It is based on Peltier effect and utilizes the heat absorption or release characteristics of semiconductor materials under the action of electric current to realize temperature regulation and cooling. Compared with traditional mechanical compression refrigeration technology, the semiconductor refrigeration flexible sheet 201 has faster response speed, higher refrigeration efficiency, smaller size, no vibration and no noise, etc.

[0046] It should be further pointed out that the semiconductor refrigeration flexible sheet 201 in the sleeve cooling component 4 and the material in the body surface cooling component 2 are the same, but the shapes are different, so the two devices are not the same device.

[0047] In addition, it should be further pointed out that, in the present application, the inside of the flexible solar film plate is provided with a temperature sensor (not shown in the drawing), a current sensor (not shown in the drawing) is installed between the flexible solar film plate and the flexible battery plate 603, a pocket is sewn at the chest of the outside of the workwear body 1, a trigger sensor 3 is sewn and installed in the pocket, the trigger sensor 3 and the current sensor are electrically connected, and the electric sensor and the temperature sensor are electrically connected.

[0048] Finally, it should be pointed out that, in the present application, the material used for the workwear body 1 is flame-retardant fabric, and the design of the workwear body 1 is any one of shirt design, coat design and T-shirt design.

[0049] It should be emphasized that the present application, by designing the work clothes body 1 into flame-retardant fabric, can effectively protect the personnel from fire and high temperature in actual use, these fabrics can delay the flame propagation speed, reduce the smoke generation, gain more time for personnel evacuation, and provide greater life safety guarantee, it should be noted that in the present application, the flame-retardant fabric can be any one or a combination of more than one of fireproof cotton, flame-retardant polyester and flame-retardant acrylic.

[0050] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to these embodiments without departing from the principles and spirit of the present application, the scope of the present application being defined by the appended claims and their equivalents.

Claims

1. A constant temperature work clothes powered by thin film solar cell, comprising a work clothes body, characterized in that: two shoulder parts of the work clothes body are respectively provided with a gap, and a detachable power supply assembly is installed on the work clothes body at the gap; two sleeve parts of the work clothes body are respectively provided with a detachable sleeve opening cooling part; a body surface cooling part is respectively installed on the front body and the back body inside the work clothes body; the body surface cooling part and the sleeve opening cooling part both use electronic refrigeration technology, and are electrically connected with the power supply assembly; the power supply assembly comprises: a flexible assembly box is installed on the gap of the work clothes body and can completely cover the gap; in addition, the top of the flexible assembly box is designed as an opening, and a flexible solar thin film plate is installed on the top of the flexible assembly box and matched with the opening; sliding gaps are respectively formed on both sides of the bottom of the flexible assembly box; a detachable flexible battery plate is installed in the flexible assembly box, two transmission line bundles matched with the sliding gaps are installed on the discharge end of the flexible battery plate, and the charging end of the flexible battery plate is matched with the discharge end of the flexible solar thin film plate; the flexible battery plate is electrically connected with the body surface cooling part and the sleeve opening cooling part through the transmission line bundles; one end of the flexible assembly box close to the collar of the work clothes body is a box opening, and the flexible battery plate is fixed with an assembly plate matched with the box opening at one end close to the box opening; two deformable plug-in racks are inserted into both ends of the outside of the assembly plate; when the flexible battery plate is moved into the flexible assembly box and electrically connected with the flexible solar thin film plate, the top and the bottom of the plug-in rack are respectively plugged into the top and the bottom of the surface of the flexible assembly box; the body surface cooling part comprises: a semiconductor refrigeration flexible sheet is installed on the body of the work clothes body, and the refrigeration surface thereof faces the inside of the work clothes body; a power supply line bundle is installed at the power supply end of the semiconductor refrigeration flexible sheet, and a power supply connector is installed at the other end thereof; a connection plug is installed at one end of the transmission line bundle away from the flexible battery plate, and the connection plug is matched with the power supply connector; the sleeve opening cooling part comprises: a sleeve is formed by combining semiconductor refrigeration flexible sheets on both sides of the sleeve, and the inside of the sleeve is the refrigeration surface of the semiconductor refrigeration flexible sheets; an insulating material sleeve opening is fixed at one end of the sleeve, and a magic tape is wrapped and installed at the other end of the sleeve; the sleeve is installed on the sleeve part of the work clothes body through the magic tape; a connection line bundle for electrically connecting with the semiconductor refrigeration flexible sheet is installed at the other end of the sleeve, and a connection connector matched with the connection plug is installed at one end of the connection line bundle away from the sleeve; a temperature sensor is arranged in the flexible solar thin film plate, a current sensor is arranged between the flexible solar thin film plate and the flexible battery plate, a pocket is sewn on the chest of the work clothes body, a trigger sensor is sewn and installed in the pocket, the trigger sensor is electrically connected with the current sensor, and the electric sensor is electrically connected with the temperature sensor.

2. The constant temperature workwear based on thin film solar cell according to claim 1, characterized in that: The work clothes body uses the material that the flame -retardant fabric is, the work clothes body is any one of shirt design, overcoat design and T-shirt design.

Citation Information

Patent Citations

  • A constant temperature workwear powered by thin-film solar cells

    CN102342600B

  • Constant-temperature work clothes based on power supply of film solar cells

    CN102342600A

  • Electrically heated clothing with detachable parts

    JP3233757U