Cooling clothes with highly-integrated refrigeration assembly

By integrating the built-in fan and the refrigeration component of the semiconductor refrigeration equipment, the problem of low integration of the cooling source structure of the cooling clothing is solved, and higher integration and better wearing comfort are achieved.

CN223335622UActive Publication Date: 2025-09-16GUANGDONG FUXIN ELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202422075617.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-09-16
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

The cooling source structure of existing cooling clothing is not highly integrated, resulting in a large volume and taking up a lot of space, which affects wearing comfort.

Method used

A refrigeration component that integrates a built-in fan and a semiconductor refrigeration device is used. The storage space is connected to the body structure to form a cold air circulation path, and the storage space protrudes from the outside of the body to reduce the internal space occupied.

Benefits of technology

The integration of refrigeration components is improved, the friction resistance to the human body is reduced, and the wearing comfort and cooling effect are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cooling garment with a highly integrated refrigeration component, which comprises a garment body structure and at least one refrigeration component mounted on the garment body structure, the refrigeration component is mounted on the garment body structure through a storage space, the refrigeration component is positioned in the storage space, and the storage space is communicated with the outer side and the inner side of the garment body structure. The refrigeration assembly comprises semiconductor refrigeration equipment and a built-in fan which are integrated together, air sucked by the built-in fan can circulate to the semiconductor refrigeration equipment, one part of cold air output by the semiconductor refrigeration equipment is output to the outside through the storage space, and the other part of the cold air flows back into the built-in fan after passing through the storage space. A cold air circulation channel is formed.
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Description

Technical Field

[0001] The utility model relates to the technical field of cooling clothing, in particular to a cooling garment with a highly integrated refrigeration component. Background Art

[0002] Cooling clothes are one of the categories of clothing. They generate cold air through a refrigeration source to assist in cooling. Compared with ordinary clothing, they have a better cooling effect and are therefore loved by consumers.

[0003] Existing cooling garments have a low degree of structural integration of cooling sources, are large in size, and require a large space, making them bulky. When the cooling source is installed on the cooling garment, consumers feel uncomfortable and experience a poor user experience. Therefore, a cooling garment with a higher degree of integration is needed. Utility Model Content

[0004] In view of the deficiencies in the prior art, the purpose of the present invention is to provide a cooling garment with a highly integrated refrigeration component, which can solve the problems described in the background technology.

[0005] The technical solution for achieving the purpose of the utility model is: a cooling garment with a highly integrated refrigeration component, comprising a garment body structure and at least one refrigeration component mounted on the garment body structure, wherein the refrigeration component is mounted on the garment body structure via a storage space, the refrigeration component is located within the storage space, and the storage space is in communication with both the outside and inside of the garment body structure.

[0006] The refrigeration component includes an integrated semiconductor refrigeration device and a built-in fan. The air inhaled by the built-in fan can flow to the semiconductor refrigeration device. Part of the cold air output by the semiconductor refrigeration device is output to the outside through the storage space, and the other part flows back to the built-in fan after passing through the storage space, forming a cold air circulation path.

[0007] Furthermore, the refrigeration component also includes an upper shell and a lower shell, and the upper shell and the lower shell are covered together to form a accommodating cavity. The built-in fan and the semiconductor refrigeration device are both located in the accommodating cavity, and the built-in fan and the semiconductor refrigeration device are distributed at intervals in the accommodating cavity.

[0008] Furthermore, the semiconductor refrigeration device is fixedly or detachably mounted on the inner wall of the upper shell or the lower shell, and the built-in fan is fixedly or detachably mounted on the inner wall of the upper shell or the lower shell.

[0009] Furthermore, the upper shell and the lower shell are fixedly or detachably connected together, a first grille is provided on the upper shell, and a second grille is provided on the lower shell. The air outlet of the semiconductor refrigeration device includes an upper grille and a lower grille, and a partition for isolating the upper grille and the lower grille from communicating with each other, and the partition is located in the middle of the upper grille and the lower grille.

[0010] The partition divides the upper grille and the lower grille into two passages. The upper grille is connected to the first grille to form a first passage. The lower grille is connected to the second grille to form a second passage. Both the first passage and the second passage are connected to the outside of the refrigeration component.

[0011] Furthermore, the side wall of the built-in fan is provided with a grille structure, the upper shell is provided with a through hole, the air inlet of the built-in fan is connected with the through hole, and then maintained in communication with the outside through the through hole to inhale external air.

[0012] Furthermore, the storage space has a rectangular structure, the shape of the refrigeration component is adapted to the shape of the storage space, one end of the refrigeration component is rectangular, and the other end is arc-shaped, the built-in fan is located at the end where the arc is located, and the semiconductor refrigeration device is located at the end where the rectangle is located, the fan has a cylindrical structure, and the semiconductor refrigeration device has a rectangular structure.

[0013] Furthermore, the storage space is fixedly or detachably mounted on the garment body structure.

[0014] Furthermore, the refrigeration assembly is fixedly or detachably installed on the storage space.

[0015] Furthermore, it comprises two or more refrigeration assemblies, each refrigeration assembly being installed at a different position of the garment body structure.

[0016] Furthermore, it also includes an external fan, which is fixedly or detachably installed on the body structure. The external fans are arranged at intervals and are used to draw external air into the inner side of the body structure.

[0017] The beneficial effects of this invention include: The built-in fan and semiconductor cooling device are integrated into a single, integrated cooling unit, achieving a higher level of integration. Furthermore, the storage space is protruded from the outside of the garment structure, further minimizing the space occupied within the garment structure. When the garment structure is worn, the cooling element does not occupy additional space between the wearer and the garment structure, nor does it cause friction or discomfort, eliminating the discomfort often associated with traditional wear. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the front structure of the cooling garment of the utility model after being laid flat;

[0019] Figure 2 This is a schematic structural diagram of the back side of the cooling garment after being laid flat;

[0020] Figure 3 A schematic cross-sectional view of the storage space protruding from the garment body structure and the refrigeration component being moved out of the storage space;

[0021] Figure 4 A three-dimensional schematic diagram of the storage space protruding from the garment body structure and the refrigeration component being moved out of the storage space;

[0022] Figure 5 This is a schematic diagram of the front structure of the refrigeration component;

[0023] Figure 6 This is a schematic diagram of the back structure of the refrigeration component;

[0024] Figure 7 This is a schematic diagram of the structure of the refrigeration assembly after the upper cover is hidden;

[0025] Figure 8 This is a schematic diagram of the structure of the refrigeration assembly with the upper cover hidden from another perspective;

[0026] In the figure, 1 is storage space, 2 is refrigeration component, 21 is semiconductor refrigeration equipment, 211 is upper grille, 212 is lower grille, 213 is partition, 22 is built-in fan, 221 is motor, 222 is fan impeller, 23 is upper shell, 231 is first grille, 24 is lower shell, 241 is second grille, 3 is clothing body structure, 4 is external fan. DETAILED DESCRIPTION

[0027] The present invention will be further described below with reference to the accompanying drawings and specific implementation plans:

[0028] like Figures 1-8 As shown, a cooling garment with a highly integrated refrigeration assembly 2 includes a garment body structure 3 and at least one refrigeration assembly 2 mounted on the garment body structure 3. The refrigeration assembly 2 is mounted on the garment body structure 3 via a storage space 1. The storage space 1 can be connected to both the outside and the inside of the garment body structure 3. The storage space 1 is protruding toward the outside of the garment body structure 3. The storage space 1 is fixedly or detachably mounted on the garment body structure 3, and the refrigeration assembly 2 is fixedly or detachably mounted on the storage space 1.

[0029] Exemplarily, the storage space 1 can be fixed to the body structure 3 by sewing, or detachably mounted on the body structure 3 by a zipper, or bonded to the body structure 3 by a fabric having adhesive properties, or fixed or detachably mounted on the body structure 3 by other means.

[0030] Exemplarily, ventilation holes are provided on the storage space 1 so that the storage space 1 is connected to the inner side (i.e., the side close to the human body when the body structure 3 is worn on the human body) and the outer side of the body structure 3, so that air can flow into the inner side and the outer side of the body structure 3 respectively.

[0031] For example, if the storage bag is provided with an opening, the refrigeration assembly 2 can be detachably installed in the storage bag. If the storage bag is not provided with an opening but is a closed bag formed by sewing, the refrigeration assembly 2 can be fixedly installed in the storage bag.

[0032] Exemplary, reference Figure 1 and Figure 2 The garment body structure 3 is provided with two or more refrigeration assemblies 2. For example, two refrigeration assemblies 2 are installed on the front side of the garment body structure 3, and three refrigeration assemblies 2 are installed on the back side. The refrigeration assemblies 2 are installed in different positions, and only one refrigeration assembly 2 is installed in each storage space 1.

[0033] In an optional embodiment, the garment further includes at least one external fan 4, which is fixedly or detachably mounted on the garment body structure 3. The external fans 4 are spaced apart and configured to draw external air into the inner side of the garment body structure 3. Specifically, the air inlet of the external fan 4 is positioned on the outer side of the garment body structure 3, while the air outlet of the external fan 4 is positioned on the inner side of the garment body structure 3. This ensures that when the garment body structure 3 is worn on a person, the air outlet of the external fan 4 is located at the proximal end away from the person, while the air inlet is located at the distal end close to the person.

[0034] For example, an external fan 4 is provided at each of the left and right ends of the lower part of the body structure 3, so that when the body structure 3 is worn on the human body, the two external fans 4 are just located at the belt meridian acupoints of the human body, that is, at the left and right waist positions of the human body. The edges of the external fans 4 are difficult to observe from the front or back, so as to improve the visual experience.

[0035] When a consumer wears the cooling garment, the garment body structure 3 is placed on the body. Although the garment body structure 3 is not completely sealed against the neck, shoulders, and other areas of the body, it still forms a relatively sealed space with the body. Furthermore, when straps and other structures are provided at the neck and shoulders, the garment body structure 3 fits well against the body, thereby forming a completely or nearly sealed space. The air drawn in by the external fan 4 flows within this sealed space, producing a cooling effect.

[0036] refer to Figure 2 and Figure 3 The storage space 1 is protruding from the outside of the body structure 3, and a cavity for accommodating the refrigeration component 2 is provided in the fabric space. The cavity can form a local relatively closed space. A relatively closed space refers to a space between a completely open and a completely sealed state, which can ensure that the air in the cavity flows out slowly, thereby forming an internal circulation in the cavity.

[0037] The refrigeration assembly 2 includes an upper shell 23, a lower shell 24, a built-in fan 22 and a semiconductor refrigeration device 21. The upper shell 23 and the lower shell 24 are covered together to form a accommodating cavity. The built-in fan 22 and the semiconductor refrigeration device 21 are both located in the accommodating cavity. The built-in fan 22 and the semiconductor refrigeration device 21 are distributed at intervals in the accommodating cavity.

[0038] Exemplarily, the built-in fan 22 is located at one end of the accommodating cavity, and the semiconductor refrigeration device 21 is located at the other end opposite to the accommodating cavity.

[0039] The upper shell 23 and the lower shell 24 are fixedly or detachably connected together, a first grille 231 is provided on the upper shell 23, and a second grille 241 is provided on the lower shell 24. The accommodating cavity can be connected to the outside through the first grille 231 and the second grille 241, and air can maintain air flow and exchange with the outside of the refrigeration assembly 2 through the first grille 231 and / or the second grille 241.

[0040] The semiconductor refrigeration device 21 is fixedly or detachably mounted on the inner wall of the upper shell 23 or the lower shell 24 , and the built-in fan 22 is fixedly or detachably mounted on the inner wall of the upper shell 23 or the lower shell 24 .

[0041] Exemplary, reference Figure 7 The built-in fan 22 and the semiconductor refrigeration device 21 are both fixedly or detachably mounted on the inner wall of the lower shell 24 .

[0042] The air outlet of the semiconductor refrigeration device 21 includes an upper grille 211 and a lower grille 212, as well as a partition 213 that isolates the upper and lower grilles 211 and 212 from each other. The partition 213 is located directly between the upper and lower grilles 211 and 212 and is parallel to the bottom of the housing. The partition 213 divides the upper and lower grilles 211 and 212 into two passages. The upper grille 211 communicates with the first grille 231 to form a first passage; the lower grille 212 communicates with the second grille 241 to form a second passage. Both the first and second passages communicate with the exterior of the refrigeration assembly 2, thereby maintaining air circulation and exchange.

[0043] refer to Figure 7The built-in fan 22 includes a motor 221 and a fan impeller 222. The fan impeller 222 includes an air inlet. The motor 221 is connected to the fan impeller 222 and can drive the fan impeller 222 to rotate. The fan impeller 222 includes a plurality of blades arranged at intervals, thereby forming a grid structure on the side wall of the fan impeller 222. The upper shell 23 is provided with a through hole (not shown in the figure). The air inlet of the built-in fan 22 is connected to the through hole, and then maintains communication with the outside through the through hole to draw in external air. The air inlet is located below or within the through hole, or the air inlet is flush with the through hole, that is, the upper end surface of the air inlet is flush with the upper end surface of the through hole.

[0044] It should be noted that Figure 7 The structure of the fan impeller 222 is merely a schematic representation, and is formed with a grid structure.

[0045] To facilitate access to and placement of the cooling assembly 2, the storage space 1 is rectangular. The cooling assembly 2 is shaped to match the storage space 1. One end of the cooling assembly 2 is rectangular, and the other end is arc-shaped. The built-in fan 22 is located at the arc-shaped end, and the semiconductor cooling device 21 is located at the rectangular end. Accordingly, the fan is cylindrical, and the semiconductor cooling device 21 is a rectangular parallelepiped.

[0046] refer to Figure 3 , Figure 3 To more clearly distinguish the two airflow paths, red and green arrows are used. The built-in fan 22 draws air through the holes in the upper housing 23 and then discharges it through the grille structure on the sidewalls of the built-in fan 22. This air then flows along the accommodating cavity of the refrigeration assembly 2 and into the semiconductor refrigeration device 21. The semiconductor refrigeration device 21 cools the air and outputs it as cool air. A portion of this cool air flows along the first path and is discharged through the upper grille 211 into the storage space 1, near the outer side of the garment structure 3. It is ultimately discharged from the storage space 1 to the outside of the garment structure 3, that is, to the atmosphere, thereby dissipating heat. Another portion of the air flows along the second path and is discharged through the lower grille 212, also entering the inner side of the storage space 1, near the garment structure 3. It then flows back to the built-in fan 22 and is drawn in again through the air inlet of the built-in fan 22. This ensures that a portion of air is always circulating within the storage space 1, achieving a cool air cycle. Figure 3 The green arrows in the figure represent the cold air circulation, and the red arrows represent the heat dissipation, which eventually makes the temperature in the storage space 1 gradually lower, thereby forming a local low-temperature space and enhancing the cooling effect on the human body.

[0047] The present invention integrates a built-in fan 22 and a semiconductor refrigeration device 21 to form a single-piece refrigeration assembly 2, achieving a higher level of integration. Furthermore, by protruding the storage space 1 outside the garment structure 3, the space occupied within the garment structure 3 is further reduced. When the garment structure 3 is worn, the cooling element does not occupy any additional space between the wearer and the garment structure 3, nor does it cause friction or discomfort, eliminating the discomfort often associated with traditional clothing.

[0048] The embodiment disclosed in this specification is merely an illustration of one aspect of the present invention. The scope of protection of the present invention is not limited to this embodiment. Any other functionally equivalent embodiments fall within the scope of protection of the present invention. Those skilled in the art can make various other corresponding changes and modifications based on the technical solutions and concepts described above, and all such changes and modifications should fall within the scope of protection of the claims of the present invention.

Claims

1. A cooling garment with a highly integrated refrigeration component, characterized in that: The garment comprises a body structure and at least one refrigeration component mounted on the body structure. The refrigeration component is mounted on the body structure through a storage space. The refrigeration component is located in the storage space. The storage space is in communication with both the outside and the inside of the body structure. The refrigeration component includes an integrated semiconductor refrigeration device and a built-in fan. The air inhaled by the built-in fan can flow to the semiconductor refrigeration device. Part of the cold air output by the semiconductor refrigeration device is output to the outside through the storage space, and the other part flows back to the built-in fan after passing through the storage space, forming a cold air circulation path.

2. The cooling garment with a highly integrated refrigeration component according to claim 1, characterized in that: The refrigeration component also includes an upper shell and a lower shell. The upper shell and the lower shell are covered together to form a accommodating cavity. The built-in fan and the semiconductor refrigeration device are both located in the accommodating cavity. The built-in fan and the semiconductor refrigeration device are distributed at intervals in the accommodating cavity.

3. The cooling garment with a highly integrated refrigeration component according to claim 2, characterized in that: The semiconductor refrigeration device is fixedly or detachably mounted on the inner wall of the upper shell or the lower shell, and the built-in fan is fixedly or detachably mounted on the inner wall of the upper shell or the lower shell.

4. The cooling garment with a highly integrated refrigeration component according to claim 2, characterized in that: The upper shell and the lower shell are fixedly or detachably connected together, a first grille is provided on the upper shell, and a second grille is provided on the lower shell. The air outlet of the semiconductor refrigeration device includes an upper grille and a lower grille, and a partition for isolating the upper grille and the lower grille from communicating with each other. The partition is located in the middle of the upper grille and the lower grille. The partition divides the upper grille and the lower grille into two passages. The upper grille is connected to the first grille to form a first passage. The lower grille is connected to the second grille to form a second passage. Both the first passage and the second passage are connected to the outside of the refrigeration component.

5. The cooling garment with a highly integrated refrigeration component according to claim 4, characterized in that: The built-in fan includes a motor and a fan impeller, the fan impeller includes an air inlet, the motor is connected to the fan impeller and can drive the fan impeller to rotate, the upper shell is provided with a through hole, the air inlet is connected to the through hole, and then maintains communication with the outside through the through hole to inhale external air.

6. The cooling garment with a highly integrated refrigeration component according to any one of claims 1 to 5, characterized in that: The storage space has a rectangular structure, and the shape of the refrigeration component is adapted to the shape of the storage space. One end of the refrigeration component is rectangular and the other end is arc-shaped. The built-in fan is located at the end where the arc is located, and the semiconductor refrigeration device is located at the end where the rectangle is located. The fan has a cylindrical structure and the semiconductor refrigeration device has a rectangular structure.

7. The cooling garment with a highly integrated refrigeration component according to any one of claims 1 to 5, characterized in that: The storage space is fixedly or detachably mounted on the garment body structure.

8. The cooling garment with a highly integrated refrigeration component according to claim 7, characterized in that: The refrigeration component is fixedly or detachably installed on the storage space.

9. The cooling garment with a highly integrated refrigeration component according to any one of claims 1 to 5, characterized in that: It comprises two or more refrigeration components, each of which is distributed and installed at different positions of the garment body structure.

10. The cooling garment with a highly integrated refrigeration component according to any one of claims 1 to 5, characterized in that: The utility model also includes an external fan, which is fixedly or detachably mounted on the garment body structure and is arranged at intervals. The external fan is used to draw external air into the inner side of the garment body structure.