Wearable cooling clothes

By utilizing solar-powered Pellets and sweat-absorbing pads, the technology solves the problems of poor cooling effect, excessive weight, and uneven heat dissipation in existing cooling clothing in extreme high-temperature environments. It achieves a rapid response, lightweight and uniform cooling effect, improving wearing comfort.

CN224192995UActive Publication Date: 2026-05-05SHANGHAI COOLEYOU INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI COOLEYOU INTELLIGENT TECHNOLOGY CO LTD
Filing Date
2025-05-19
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing cooling and heat dissipation clothing has limited cooling effect in extreme high-temperature environments, its weight affects wearing comfort, and its uneven heat dissipation leads to localized overcooling or overheating.

Method used

Employing Peltier technology, long strips of Peltier, powered by solar panels, cover the chest, back, and waist. Combined with sweat-absorbing pads, they achieve active cooling and distributed temperature control, reducing clothing weight and improving comfort.

Benefits of technology

It achieves rapid response and precise control of active cooling, resulting in high cooling efficiency, light overall weight, and uniform heat dissipation, avoiding localized overcooling or overheating and improving wearing comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses wearable cooling clothes which comprise a work clothes body, a pair of storage bags are sewn on the front face of the work clothes body, first Peltiers are placed in the storage bags, a net bag and a pair of storage pockets are sewn on the back face of the work clothes body, second Peltiers are placed in the storage pockets, and the net bag and the storage pockets are sewn on the back face of the work clothes body. A solar panel is placed in the net bag, the first Peltier and the second Peltier are both in a long strip shape, and the first Peltier and the second Peltier are both electrically connected with the solar panel through wires. The cooling and heat dissipation device is high in cooling and heat dissipation efficiency, good in effect, light in weight, comfortable to wear, breathable and sweat-absorbent, distributed cooling and heat dissipation can be achieved, cooling and heat dissipation are more sufficient and even, and local supercooling or superheating is effectively avoided.
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Description

Technical Field

[0001] This utility model belongs to the field of workwear technology, and in particular relates to a wearable cooling and heat dissipation garment. Background Technology

[0002] Construction workers, outdoor workers, and those working in high-temperature environments often need to work in extremely hot conditions. To prevent heatstroke during work, certain cooling and heat dissipation measures need to be taken to help the body cool down in high-temperature environments.

[0003] Currently, there are some work clothes with cooling and heat dissipation functions on the market. For example, a cooling maintenance uniform is disclosed on the China Patent Network, with the publication number CN218043851U. This cooling maintenance uniform can cool and dissipate heat for workers and improve the comfort of wearing it. However, there are some defects and shortcomings that need to be improved: (1) Some existing cooling and heat dissipation uniforms rely on simple fans or ice packs for cooling. These methods have limited cooling effects in extreme high-temperature environments. Especially when the ambient temperature is too high, the fan cannot effectively cool down, and the cooling time of the ice pack is short. (2) The weight and design of some existing cooling and heat dissipation uniforms often do not take into account the comfort of wearing them for a long time. The built-in fan or cooling module increases the overall weight of the garment, thereby affecting the flexibility of movement. In addition, the fan and ice pack may also cause discomfort in some areas. (3) The fan or cooling module of some existing cooling and heat dissipation uniforms only acts on certain local areas, which can easily cause uneven heat dissipation, resulting in local overcooling or overheating, and it is difficult to provide a cooling effect for the whole body. Therefore, in view of the above problems, the wearable cooling and heat dissipation uniform provided by this utility model is of great significance. Utility Model Content

[0004] This invention provides a wearable cooling and heat dissipation garment that achieves active cooling through Pellets technology, effectively improving cooling and heat dissipation efficiency. Compared to fans and ice packs, it offers advantages in rapid response and precise control. It effectively reduces the overall weight of the garment, allowing for greater freedom of movement. Furthermore, the first and second absorbent pads effectively absorb sweat from the wearer's chest, back, and waist, helping to keep the wearer's skin dry and further enhancing comfort. The first and second Pellets cover the wearer's chest, back, and waist respectively, achieving distributed cooling and heat dissipation, resulting in more uniform cooling and heat dissipation and effectively preventing localized overcooling or overheating. In summary, this invention solves the problems in the prior art.

[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:

[0006] This utility model discloses a wearable cooling and heat dissipation garment, comprising a garment body, a pair of storage pockets sewn on the front of the garment body, wherein a first Peltier is placed inside the storage pockets, and a mesh pocket and a pair of storage pockets sewn on the back of the garment body, wherein a second Peltier is placed inside the storage pockets, and a solar panel is placed inside the mesh pockets. Both the first and second Peltiers are elongated strips, and both the first and second Peltiers are electrically connected to the solar panel via wires.

[0007] Furthermore, the storage bag has a U-shaped cross-section, with an open top and a sealed bottom, and the inner width of the storage bag is equal to the width of the first Peltier.

[0008] Furthermore, the storage pocket has a C-shaped cross-section with open ends, and the inner height of the storage pocket is equal to the width of the second Peltier.

[0009] Furthermore, a pair of the storage bags are located on both sides of the zipper area of ​​the workwear body and are symmetrically distributed, and a pair of storage pockets are located above and below the mesh pocket and are symmetrically distributed.

[0010] Furthermore, the surfaces of the storage bag and the storage pocket are respectively provided with a plurality of first heat dissipation holes and a plurality of second heat dissipation holes. The first heat dissipation holes and the second heat dissipation holes are both square holes, and the first heat dissipation holes and the second heat dissipation holes are equidistantly linearly distributed along the height direction of the storage bag and the length direction of the storage pocket, respectively.

[0011] Furthermore, the cross-section of the net is C-shaped, and its surface is evenly distributed with several mesh holes, and the inner height of the net is equal to the width of the solar panel.

[0012] Furthermore, a pair of first sweat-absorbing pads are provided on the inner front side of the workwear body, and a second sweat-absorbing pad is provided on the inner back side of the workwear body. The pair of first sweat-absorbing pads are located on both sides of the zipper area of ​​the workwear body and are symmetrically distributed.

[0013] The present invention has the following advantages over the prior art:

[0014] (1) When using the wearable cooling and heat dissipation clothing of this utility model, active cooling can be achieved through Peltier technology, which can effectively improve the efficiency of cooling and heat dissipation. Compared with fans and ice packs, it has the advantages of fast response and precise control.

[0015] (2) When using the wearable cooling and heat dissipation clothing of this utility model, the overall weight of the clothing is effectively reduced, making the wearer's movements more flexible. Furthermore, the first and second sweat-absorbing pads can absorb the sweat produced by the wearer's chest, back, and waist in a timely manner, thereby helping the wearer keep their skin dry and further improving the comfort of wearing the cooling and heat dissipation clothing.

[0016] (3) When the wearable cooling and heat dissipation clothing of this utility model is used, each first Pel patch and each second Pel patch can cover the wearer's chest, back and waist respectively to achieve the effect of distributed cooling and heat dissipation, thereby making the cooling and heat dissipation more uniform and effectively avoiding local overcooling or overheating.

[0017] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description

[0018] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is a front structural diagram of a wearable cooling and heat dissipation suit according to the present invention.

[0020] Figure 2 This is a schematic diagram of the back structure of a wearable cooling and heat dissipation suit according to the present invention;

[0021] Figure 3 This is a top view of the storage bag in this utility model;

[0022] Figure 4 This is a side view of the storage pocket in this utility model;

[0023] Figure 5 This is a schematic diagram of the front inner side structure of the workwear body in this utility model;

[0024] Figure 6 This is a schematic diagram of the inner back structure of the workwear body in this utility model.

[0025] The attached diagram lists the components represented by each number as follows:

[0026] 1. Work uniform body; 2. Storage bag; 3. First Peltier; 4. Mesh bag; 5. Storage pocket; 6. Second Peltier; 7. Solar panel; 8. First heat dissipation hole; 9. Second heat dissipation hole; 10. First sweat-absorbing pad; 11. Second sweat-absorbing pad. Detailed Implementation

[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0028] In the description of this utility model, it should be understood that the terms "relative", "one end", "inner", "lateral", "end", "both ends", "both sides", "front", "one end face", "the other end face", etc., which indicate orientation or positional relationship, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the components or elements referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0029] Please see Figure 1-6As shown, this utility model discloses a wearable cooling and heat dissipation suit, including a workwear body 1. A pair of storage pockets 2 are sewn onto the front of the workwear body 1, each containing a first Peltier 3. A mesh pocket 4 and a pair of storage pockets 5 are sewn onto the back of the workwear body 1, each containing a second Peltier 6. A solar panel 7 is placed inside the mesh pocket 4. Both the first Peltier 3 and the second Peltier 6 are elongated and electrically connected to the solar panel 7 via wires. The solar panel 7 converts solar energy into electrical energy, which is then transmitted to the first Peltier 3 and the second Peltier 6. The first Peltier 3 and the second Peltier 6 are existing technologies, and their main structure includes semiconductor materials, conductive connections, a ceramic layer, a cold end, and a hot end. When the solar panel 7 transmits electrical energy to the first Peltier 3 and the second Peltier 6, current flows in from a P-type semiconductor, passes through the connected metal into an N-type semiconductor, and then flows back to the P-type material, repeating this cycle. In an N-type semiconductor, positive charge carriers (holes) move in the direction of the current, carrying away some heat. In an N-type semiconductor, negative charge carriers (electrons) move against the direction of the current, also carrying away heat. The movement of these charge carriers causes a decrease in heat on one side (cold end) and an increase in heat on the other side (hot end), thus achieving a cooling or heating effect. When the first Peltier 3 and the second Peltier 6 are placed in the storage bag 2 and the storage pocket 5 respectively, the cold ends of the first Peltier 3 and the second Peltier 6 come into contact with the wearer's body. As the current guides the charge carriers to carry away heat, the temperature of the cold end drops, absorbing heat from the surrounding environment. This process can continue, thereby continuously cooling the cold end to cool down workers in high-temperature environments. Peltier technology enables active cooling, effectively improving the efficiency of cooling and heat dissipation. Compared with fans and ice packs, it has the advantages of rapid response and precise control, and effectively reduces the overall weight of the clothing, making the wearer's movements more flexible.

[0030] The storage bag 2 has a U-shaped cross-section with an open top and a sealed bottom. The width of the inner side of the storage bag 2 is equal to the width of the first Pelta 3. After the first Pelta 3 is placed in the storage bag 2, it can adhere to the inner wall of the storage bag 2 to limit its position and prevent it from shifting and failing to make full contact with the wearer's body. The first Pelta 3 can be pulled out of the storage bag 2 for quick maintenance and replacement.

[0031] The storage pocket 5 has a C-shaped cross-section with open ends. The inner height of the storage pocket 5 is equal to the width of the second Pelta 6. After the second Pelta 6 is placed in the storage pocket 5, it can fit against the inner wall of the storage pocket 5 to limit its position and prevent it from shifting and failing to make full contact with the wearer's body. The second Pelta 6 can be pulled out of the storage pocket 5 for quick maintenance and replacement.

[0032] Among them, a pair of storage bags 2 are located on both sides of the zipper part of the work clothes body 1 and are symmetrically distributed. A pair of storage pockets 5 are located above and below the mesh pocket 4 and are symmetrically distributed. When each first Pelta 3 and each second Pelta 6 are put into the corresponding storage bag 2 and storage pocket 5, they can cover the wearer's chest, back and waist respectively, so as to achieve the effect of distributed cooling and heat dissipation, thereby making the cooling and heat dissipation more uniform and effectively avoiding local overcooling or overheating.

[0033] The storage bag 2 and the storage pocket 5 are respectively provided with a number of first heat dissipation holes 8 and a number of second heat dissipation holes 9. The first heat dissipation holes 8 and the second heat dissipation holes 9 are square holes, and the first heat dissipation holes 8 and the second heat dissipation holes 9 are equidistantly linearly distributed along the height direction of the storage bag 2 and the length direction of the storage pocket 5, respectively. When the first Pelta 3 and the second Pelta 6 are used for cooling and heat dissipation, the heat released by the hot end of the first Pelta 3 and the second Pelta 6 can be discharged through each of the first heat dissipation holes 8 and the second heat dissipation holes 9, so as to achieve the effect of rapid heat dissipation. This avoids the heat from being concentrated in the storage bag 2 and the storage pocket 5 and being difficult to dissipate effectively, thus affecting the normal operation of the first Pelta 3 and the second Pelta 6.

[0034] The net bag 4 has a C-shaped cross-section and a number of mesh holes evenly distributed on its surface. The inner height of the net bag 4 is equal to the width of the solar panel 7. The solar panel 7 can be placed and attached to the inner wall of the net bag 4 to limit its position, thereby preventing the position of the solar panel 7 from shifting and affecting its power supply to the first Peltier 3 and the second Peltier 6.

[0035] The workwear body 1 has a pair of first sweat-absorbing pads 10 on the inner front side and a second sweat-absorbing pad 11 on the inner back side. The pair of first sweat-absorbing pads 10 are located on both sides of the zipper area of ​​the workwear body 1 and are symmetrically distributed. When the workwear body 1 is worn, the first sweat-absorbing pads 10 and the second sweat-absorbing pads 11 can cover the wearer's chest, back and waist and absorb the sweat generated in the chest, back and waist areas in time, thereby helping the wearer keep their skin dry and further improving the comfort of wearing the cooling and heat dissipation clothing.

[0036] The circuits, electronic components, and chip modules involved in this utility model are all existing technologies, which can be fully implemented by those skilled in the art, and need not be elaborated upon. The content protected by this utility model does not involve any improvement to the software and methods.

[0037] All standard parts used in the application documents can be purchased from the market. All components in this application documents can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts and equipment adopt conventional models in the prior art.

[0038] The working principle of this utility model is as follows:

[0039] In use, the workwear body 1 can be worn. When the wearer works in a high-temperature outdoor environment, the solar panel 7 inside the mesh pocket 4 converts solar energy into electrical energy and transmits it to the first Peltier 3 and the second Peltier 6. The cold ends of the first Peltier 3 and the second Peltier 6 are in contact with the wearer's body. When the first Peltier 3 and the second Peltier 6 are energized, the temperature of the cold ends drops, absorbing heat from the surrounding environment. This process can continue, thus continuously cooling the cold ends to cool down the workers in high-temperature environments. Utilizing Peltier technology enables active cooling, effectively improving the efficiency of cooling and heat dissipation. Compared to fans and ice packs, it has the advantages of rapid response and precise control, and is more effective... The overall weight of the garment is reduced, allowing for greater freedom of movement. Each first Pellets 3 and each second Pellets 6 can cover the wearer's chest, back, and waist respectively, achieving a distributed cooling and heat dissipation effect. This results in more even cooling and heat dissipation, effectively preventing localized overheating or undercooling. The inner front and back sides of the workwear body 1 are respectively provided with a pair of first sweat-absorbing pads 10 and second sweat-absorbing pads 11. When the workwear body 1 is worn, the first sweat-absorbing pads 10 and second sweat-absorbing pads 11 can cover the wearer's chest, back, and waist, and promptly absorb the sweat produced in these areas, thus helping the wearer keep their skin dry and further improving the comfort of wearing the cooling and heat dissipation garment.

[0040] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.

Claims

1. A wearable cooling and heat dissipation suit, characterized in that, The garment includes a work uniform body. A pair of storage bags are sewn onto the front of the work uniform body, and a first Peltier is placed inside the storage bags. A mesh pocket and a pair of storage pockets are sewn onto the back of the work uniform body, and a second Peltier is placed inside the storage pockets. A solar panel is placed inside the mesh pocket. Both the first and second Peltiers are elongated strips, and both the first and second Peltiers are electrically connected to the solar panel via wires.

2. The wearable cooling and heat dissipation suit according to claim 1, characterized in that, The storage bag has a U-shaped cross-section, with an open top and a sealed bottom. The inner width of the storage bag is equal to the width of the first Peltier.

3. The wearable cooling and heat dissipation suit according to claim 1, characterized in that, The storage bag has a C-shaped cross-section with open ends, and the inner height of the storage bag is equal to the width of the second Peltier.

4. The wearable cooling and heat dissipation suit according to claim 1, characterized in that, The pair of storage bags are located on both sides of the zipper area of ​​the work uniform body and are symmetrically distributed. The pair of storage pockets are located above and below the mesh pocket and are symmetrically distributed.

5. A wearable cooling and heat dissipation suit according to claim 1, characterized in that, The surface of the storage bag and the storage pocket are respectively provided with a number of first heat dissipation holes and a number of second heat dissipation holes. The first heat dissipation holes and the second heat dissipation holes are both square holes, and the first heat dissipation holes and the second heat dissipation holes are equidistantly linearly distributed along the height direction of the storage bag and the length direction of the storage pocket, respectively.

6. The wearable cooling and heat dissipation suit according to claim 1, characterized in that, The net has a C-shaped cross-section, with a number of mesh holes evenly distributed on its surface, and the inner height of the net is equal to the width of the solar panel.

7. A wearable cooling and heat dissipation suit according to claim 1, characterized in that, The workwear body has a pair of first sweat-absorbing pads on the inner front side and a second sweat-absorbing pad on the inner back side. The pair of first sweat-absorbing pads are located on both sides of the zipper area of ​​the workwear body and are symmetrically distributed.

Citation Information

Patent Citations

  • Cooling maintenance clothes

    CN218043851U