Breathable cooling clothes
By incorporating a double-layered breathable zone with built-in micro-fans and through-holes in the cooling garment, combined with highly absorbent resin, the problem of insufficient breathability in existing cooling garments is solved, achieving efficient air circulation and evaporative heat dissipation, thus improving the wearer's comfort and safety.
Patent Information
- Application Number
- CN202422650101.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-10-31
AI Technical Summary
Existing cooling clothing lacks breathability, which hinders sweat evaporation in hot and humid environments, preventing effective heat dissipation and affecting the wearer's comfort and safety.
Design a breathable cooling garment with a double-layer structure consisting of an inner and outer mesh fabric layer for breathability, a built-in micro fan, and through-holes in the water-cooling zone. Combined with highly absorbent resin material, it achieves air circulation and evaporative cooling.
It significantly improves airflow and velocity within the garment, enhancing breathability and heat dissipation, providing a more comfortable wearing experience, adapting to different body types, and achieving adaptive cooling through adjustable micro-fans and an evaporation layer.
Smart Images

Figure CN223554365U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of labor protection clothing, in particular to a breathable cooling clothes. BACKGROUND
[0002] With heat waves and extreme high-temperature weather becoming more frequent, especially in southern regions, most outdoor workers need to work in extreme environments such as high temperature and high humidity. In a high-temperature environment, the human body will dissipate heat through sweating, but when the humidity is too high, the evaporation of sweat is blocked, limiting the natural heat dissipation mechanism of the human body. In order to reduce the risk of heat stroke, heat stroke and other heat-related diseases, it is necessary to provide adequate protection measures for workers working in high temperatures.
[0003] At present, in order to provide instant cooling effect for outdoor workers, cooling clothing is usually provided for them. For example, the Chinese utility model patent document (CN221059654U) provides an evaporative cooling clothes, which cools down by setting a cooling area to absorb heat, but the air flow provided by the air-permeable area arranged at intervals is still insufficient. When the wearer sweats too much, the sweat volatilization speed is slow. Based on this, the Chinese utility model patent document (CN213154087U) also provides an air-conditioning clothes that can cool and ventilate, which accelerates air circulation by covering a fan cooling mechanism, but in order to stably install the fan and the battery, a multi-layer cloth structure such as a cover net needs to be set, and the large fan also increases the weight of the clothes, causing the wearer to bear too much burden. SUMMARY
[0004] The utility model provides a kind of breathable cooling clothes, to solve the problem of insufficient air permeability of cooling clothing in prior art.
[0005] To solve the above technical problems, the utility model provides a kind of breathable cooling clothes, which comprises: a front piece, a back piece and a plurality of punching.
[0006] The front piece is provided with a water cooling area and a breathable area along the length interval, wherein the water cooling area is filled with superabsorbent resin, and the breathable area comprises an inner mesh cloth and an outer mesh cloth;The back piece is provided with the water cooling area and the breathable area along the length interval, wherein the back piece further comprises a first breathable area, and one or more micro fans are arranged in the interlayer between the inner mesh cloth and the outer mesh cloth of the first breathable area;A plurality of punching holes are arranged in the back piece and penetrate the water cooling area in the back piece along the thickness direction.
[0007] The technical scheme provided by the utility model has the beneficial effects compared with the prior art:
[0008] By setting the air-permeable area as a double-layer structure of the inner mesh cloth and the outer mesh cloth, the air-permeable area naturally forms a sandwich after being stitched, and one or more micro fans are accommodated in the sandwich and work to improve the air flow and flow rate in the garment, thereby greatly improving the air-permeable effect of the air-permeable area and further enhancing the heat dissipation effect of the cooling garment. Compared with the ordinary grid-shaped air-permeable area which needs to rely on external air flow, the above air-permeable manner can provide a more comfortable air-permeable experience for the wearer, and the number and working power of the micro fans can be adjusted according to actual needs, thereby achieving self-adaptation of air permeation demand.
[0009] In addition, the water-cooling area is filled with a superabsorbent resin which can absorb and store water, and when the water evaporates, the cooling effect is achieved.
[0010] In some embodiments, the front piece and the back piece further comprise an inner lining which is stitched with the water-cooling area and the air-permeable area respectively, wherein the perforations sequentially penetrate the inner lining and the water-cooling area along the thickness direction.
[0011] With the above technical solution, the inner lining is added to the side of the cooling garment that is in close contact with the wearer, which can effectively improve the wearing comfort of the wearer. Among them, continuous fan direct blowing or local supercooling may affect the blood circulation of the wearer, causing numbness or tingling sensation in the body parts of the wearer. The added inner lining can act as a contact medium between the water-cooling layer and the wearer, thereby avoiding the problems of fan direct blowing and direct contact between the water-cooling layer and the wearer.
[0012] In some embodiments, the inner lining is further provided with a zipper corresponding to the first air-permeable area along the length direction. With the above technical solution, the addition of the zipper makes it easy to replace and maintain the micro fan located in the first air-permeable area.
[0013] In some embodiments, the front piece is further provided with a plurality of perforations which penetrate the water-cooling area located in the front piece along the thickness direction.
[0014] With the above technical solution, the perforations can be manufactured by the punching process, and by connecting the outermost layer and the innermost layer of the water-cooling area, the air-permeable effect is enhanced without affecting the cooling effect.
[0015] In some embodiments, the ventilation type cooling garment further comprises a plurality of elastic bands, two ends of each of the elastic bands being connected to the front piece and the back piece respectively. The plurality of elastic bands are arranged along the length direction at intervals such that the front piece and the back piece are connected to form a garment as a whole, the adjustable range of the garment is large, and the gap between adjacent two elastic bands is also large, thereby enabling the cooling garment to adapt to wearers of different body types and further greatly enhancing the ventilation of the cooling garment.
[0016] In some embodiments, the ventilation type cooling garment further comprises side cloth, the side cloth being connected to the front piece and the back piece respectively and forming armholes. With the above technical solution, when the ventilation has met the needs of the wearer, connecting the front piece and the back piece with the side cloth to form the garment body can improve the wearing comfort of the cooling garment.
[0017] In some embodiments, the first ventilation area further comprises a cable and a USB interface, a plurality of the micro fans are connected in series with each other through the cable; the USB interface is electrically connected with the cable and is used for connecting with a mobile power supply, thereby continuously supplying power to the fans.
[0018] In some embodiments, the back piece further comprises a second ventilation area and a third ventilation area, each of the second ventilation area and the third ventilation area is provided with one or more micro fans, and the micro fans are located between the inner mesh cloth and the outer mesh cloth.
[0019] With the above technical solution, in order to further enhance the ventilation effect of the cooling garment, the micro fans can be embedded in the remaining ventilation areas to improve the cooling and ventilation effects of the cooling garment.
[0020] In some embodiments, the water cooling area comprises an evaporation layer, a water cooling layer and a waterproof layer, the superabsorbent polymer is located in the water cooling layer, and the waterproof layer is close to the inner lining along the thickness direction.
[0021] With the above technical solution, when the superabsorbent polymer in the water cooling layer absorbs water, the water continuously evaporates through the evaporation layer to absorb heat, thereby reducing the heat of the wearer. The waterproof layer is close to the inner lining, so that the water stored in the water cooling layer does not wet the inner lining through the waterproof layer, thereby affecting the wearing experience of the wearer.
[0022] In some embodiments, the ventilation type cooling garment further comprises a cooling neckband, the cooling neckband is provided with the cooling area. The cooling neckband added at the neck of the wearer can directly cool the neck and chest area, which are two important heat exchange areas, thereby providing the wearer with an instant cooling feeling. BRIEF DESCRIPTION OF DRAWINGS
[0023] In order to more clearly illustrate the technical scheme in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings described in the following are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained from these drawings without any creative effort.
[0024] Figure 1 is a three-dimensional structure schematic diagram of an embodiment of the breathable cooling garment provided by the present application;
[0025] Figure 2 is a front view of an embodiment of the back piece of the breathable cooling garment provided by the present application; Figure One ;
[0026] Figure 3 is a layered structure schematic diagram of an embodiment of the breathable area of the breathable cooling garment provided by the present application;
[0027] Figure 4 is a layered structure schematic diagram of an embodiment of the water cooling area of the breathable cooling garment provided by the present application;
[0028] Figure 5 is a front view of an embodiment of the back piece of the breathable cooling garment provided by the present application; Figure Two ;
[0029] Figure 6 is a front view of an embodiment of the back piece of the breathable cooling garment provided by the present application. Figure Three .
[0030] In the drawings:
[0031] 10, front piece; 20, water cooling area; 21, evaporation layer; 22, water cooling layer; 23, waterproof layer; 30, breathable area; 31, inner mesh cloth; 32, outer mesh cloth; 33, micro fan;
[0032] 40, back piece; 41, first breathable area; 410, USB interface; 42, second breathable area; 43, third breathable area; 44, mobile power supply; 50, punching; 60, inner lining; 61, zipper; 70, elastic band; 71, side cloth. DETAILED DESCRIPTION
[0033] The technical scheme in the embodiments of the present application will be described clearly and completely in combination with the drawings of the embodiments of the present application. Obviously, the described embodiments are only some embodiments of the present application, and not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without any creative effort are within the protection scope of the present application.
[0034] Referring to Figures 1 to 3 as shown, Figure 1 shows a perspective structural schematic diagram of an embodiment of a breathable cooling garment provided by the present application; Figure 2 shows a front view of an embodiment of a back piece 40 of a breathable cooling garment provided by the present application. Figure One ; Figure 3 shows a layered structural schematic diagram of an embodiment of a breathable area 30 of a breathable cooling garment provided by the present application.
[0035] In some embodiments, the breathable cooling garment comprises a front piece 10, a back piece 40 and a plurality of punch holes 50. The front piece 10 is provided with water cooling areas 20 and breathable areas 30 at intervals along the length, wherein the water cooling areas 20 are filled with super absorbent resin, and the breathable areas 30 comprise inner mesh cloth 31 and outer mesh cloth 32; the back piece 40 is provided with water cooling areas 20 and breathable areas 30 at intervals along the length, wherein the back piece 40 further comprises a first breathable area 41 provided with one or more micro fans 33 located in the interlayer between the inner mesh cloth 31 and the outer mesh cloth 32; the plurality of punch holes 50 are provided at intervals on the back piece 40 and penetrate the water cooling areas 20 of the back piece 40 along the thickness direction.
[0036] In the embodiments of the present application, the breathable area 30 is provided as a double-layer structure as shown, i.e. the inner mesh cloth 31 and the outer mesh cloth 32 are provided at intervals along the thickness direction, so that the inner mesh cloth 31 and the outer mesh cloth 32 will naturally form an interlayer after being sewn together, and the one or more micro fans 33 are accommodated in the interlayer and work to improve the air flow and flow rate in the garment, thereby greatly improving the air permeability of the breathable area 30 and further enhancing the heat dissipation effect of the cooling garment. Compared with the ordinary grid-shaped breathable area 30 which needs to rely on external air flow, the above-mentioned air permeation method can provide a more comfortable air permeation experience for the wearer, and the number and working power of the micro fans 33 can be adjusted according to actual needs, so as to achieve self-adaptation of air permeation demand. Figure 3 In some embodiments, the breathable cooling garment comprises a front piece 10, a back piece 40 and a plurality of punch holes 50. The front piece 10 is provided with water cooling areas 20 and breathable areas 30 at intervals along the length, wherein the water cooling areas 20 are filled with super absorbent resin, and the breathable areas 30 comprise inner mesh cloth 31 and outer mesh cloth 32; the back piece 40 is provided with water cooling areas 20 and breathable areas 30 at intervals along the length, wherein the back piece 40 further comprises a first breathable area 41 provided with one or more micro fans 33 located in the interlayer between the inner mesh cloth 31 and the outer mesh cloth 32; the plurality of punch holes 50 are provided at intervals on the back piece 40 and penetrate the water cooling areas 20 of the back piece 40 along the thickness direction.
[0037] Figure 2 In some embodiments, the breathable cooling garment comprises a front piece 10, a back piece 40 and a plurality of punch holes 50. The front piece 10 is provided with water cooling areas 20 and breathable areas 30 at intervals along the length, wherein the water cooling areas 20 are filled with super absorbent resin, and the breathable areas 30 comprise inner mesh cloth 31 and outer mesh cloth 32; the back piece 40 is provided with water cooling areas 20 and breathable areas 30 at intervals along the length, wherein the back piece 40 further comprises a first breathable area 41 provided with one or more micro fans 33 located in the interlayer between the inner mesh cloth 31 and the outer mesh cloth 32; the plurality of punch holes 50 are provided at intervals on the back piece 40 and penetrate the water cooling areas 20 of the back piece 40 along the thickness direction.
[0038] The water cooling area 20 is filled with super absorbent polymer (SAP), which is a polymer with a certain degree of cross-linking and can quickly absorb water to form a gel. It can absorb and store water, and when the water evaporates, it achieves the effect of cooling. Exemplarily, the super absorbent polymer can be: polyacrylate, starch acrylate polymer, starch-acrylonitrile graft copolymer, acrylamide-acrylonitrile-acrylic acid terpolymer, etc.
[0039] In some embodiments, the first air-permeable area 41 further comprises a cable and a USB interface 410, and the plurality of micro fans 33 are connected in series through the cable; the USB interface 410 is electrically connected with the cable and is used to connect with the mobile power supply 44, so as to continuously supply power to the fans. Exemplarily, Figure 2 It is shown in the middle that four micro fans 33 are connected in series, but the number of micro fans 33 is not limited in the present application, for example, it can also be set to 2 or 6.
[0040] In some embodiments, the front piece 10 and the back piece 40 further comprise an inner lining 60, and the inner lining 60 is sewn with the water cooling area 20 and the air-permeable area 30 respectively, wherein the punching hole 50 penetrates the inner lining 60 and the water cooling area 20 in the thickness direction in turn.
[0041] In the embodiments of the present application, the inner lining 60 is additionally arranged on the side of the cooling garment that is in close contact with the wearer, which can effectively improve the wearing comfort of the wearer. Since the continuous direct blowing of the fan or the local supercooling may affect the blood circulation of the wearer, causing numbness or tingling sensation in the body parts of the wearer. The additionally arranged inner lining 60 can act as a contact medium between the water cooling layer 22 and the wearer, thereby avoiding the problem of direct blowing of the fan and direct contact between the water cooling layer 22 and the wearer.
[0042] Exemplarily, the cooling garment is designed as Figure 1 a waistcoat structure shown in the figure to meet the light demand of outdoor workers. Exemplarily, the front piece 10 can be designed with a center zipper 61, buttons, etc. to facilitate the wearing and taking off of the cooling garment.
[0043] In combination with Figure 4 shown in the figure, Figure 4 shown in the figure.
[0044] In some embodiments, the water cooling area 20 comprises an evaporation layer 21, a water cooling layer 22 and a waterproof layer 23, wherein the super absorbent polymer is located in the water cooling layer 22, and the waterproof layer 23 is close to the inner lining 60 in the thickness direction.
[0045] In the embodiment of the present application, after the superabsorbent polymer in the water-cooling layer 22 absorbs water, the water is continuously evaporated by the evaporation layer 21, which can absorb heat and thus reduce the heat of the wearer. The waterproof layer 23 is close to the inner lining 60, so that the water stored in the water-cooling layer 22 cannot wet the inner lining 60 through the waterproof layer 23, thereby affecting the wearing experience of the wearer.
[0046] For example, the punched hole 50 can be manufactured by a punching process, by connecting the outermost layer (evaporation layer 21) and the innermost layer (waterproof layer 23) of the water-cooling area 20, so as to enhance the air permeability while not affecting the cooling effect. In some embodiments, the front piece 10 is also provided with a plurality of punched holes 50, which penetrate the water-cooling area 20 of the front piece 10 along the thickness direction, that is, the punched hole 50 can be arranged in any water-cooling area 20 to improve the air permeability of the cooling garment, which is not limited in the present application.
[0047] In some embodiments, the air-permeable cooling garment further comprises a side cloth 71 connected with the front piece 10 and the back piece 40 respectively and forming a sleeve hole. In the embodiment of the present application, when the air permeability meets the needs of the wearer, the side cloth 71 is used to connect the front piece 10 and the back piece 40 to form the garment body, which can improve the wearing comfort of the cooling garment. For example, the side cloth 71 can be made of elastic cloth to adapt to more body shapes of the wearer.
[0048] Referring to Figure 5 shown, Figure 5 shown is a front view of an embodiment of the back piece 40 of the air-permeable cooling garment provided by the present application. Figure Two .
[0049] In some embodiments, the inner lining 60 is further provided with a zipper 61 corresponding to the first air-permeable area 41 along the length direction. In the embodiment of the present application, the zipper 61 is added so that the micro fan 33 located in the first air-permeable area 41 can be easily replaced and repaired.
[0050] In some embodiments, the air-permeable cooling garment further comprises a plurality of elastic bands 70, and the two ends of the elastic band 70 are connected with the front piece 10 and the back piece 40 respectively. The plurality of elastic bands 70 are arranged along the length direction to connect the front piece 10 and the back piece 40 to form the garment body, which has a large adjustable range and a large gap between adjacent two elastic bands 70, so that the cooling garment can adapt to different body shapes of the wearer and further greatly enhance the air permeability of the cooling garment.
[0051] Referring to Figure 6 shown, Figure 6 shown is a front view of an embodiment of the back piece 40 of the air-permeable cooling garment provided by the present application. Figure Three .
[0052] In some embodiments, the back sheet 40 further comprises a second air-permeable area 42 and a third air-permeable area 43, both of which are provided with one or more micro fans 33 located between the inner mesh cloth 31 and the outer mesh cloth 32.
[0053] In the embodiments of the present application, in order to further enhance the air-permeable effect of the cooling garment, the micro fans 33 can be embedded in the remaining air-permeable areas 30 to improve the cooling and air-permeable effects of the cooling garment.
[0054] In some embodiments, the air-permeable cooling garment further comprises a cooling neckband provided with a cooling area. The addition of the cooling neckband at the neck of the wearer can directly cool the neck and chest area, two important heat exchange areas, of the wearer, thereby providing the wearer with instant coolness.
[0055] The above description is merely an embodiment of the present application, and does not limit the patent scope of the present application. Any equivalent structure or equivalent process conversion, or direct or indirect application in other related technical fields, based on the content of the present application specification and drawings, shall be within the protection scope of the present application.
Claims
1. A vapor-permeable cooling garment, characterized in that, The application relates to a breathable type cooling clothes. The front piece is provided with water cooling zones and breathable zones at intervals along a length, wherein the water cooling zones are filled with super absorbent resin, and the breathable zones comprise inner and outer mesh cloths. The back piece is provided with the water cooling zones and the breathable zones at intervals along the length, wherein the back piece further comprises a first breathable zone provided with one or more micro fans located between the inner and outer mesh cloths. A plurality of punching holes are provided at intervals on the back piece and penetrate the water cooling zones on the back piece along a thickness direction.
2. The air-permeable cooling garment of claim 1, wherein, The front and back pieces further comprise inner linings sewn with the water cooling zones and the breathable zones respectively, wherein the punching holes penetrate the inner linings and the water cooling zones along the thickness direction.
3. The air-permeable cooling garment of claim 2, wherein, The inner linings are further provided with zippers corresponding to the first breathable zones along a length direction.
4. The air-permeable cooling garment of claim 1, wherein, The front piece is further provided with a plurality of punching holes penetrating the water cooling zones on the front piece along the thickness direction.
5. The convective cooling garment of any one of claims 1 to 4, wherein, The breathable type cooling clothes further comprise a plurality of elastic bands, and two ends of each elastic band are connected with the front and back pieces respectively.
6. The convective cooling garment of any one of claims 1 to 4, wherein, The breathable type cooling clothes further comprise side cloths connected with the front and back pieces respectively and forming armholes.
7. The vented cooling garment of claim 1, wherein, The first breathable zone further comprises a cable and a USB interface, and the micro fans are connected with each other in series through the cable; the USB interface is electrically connected with the cable and used for connecting with a mobile power supply.
8. The cooling garment of claim 1, wherein, The back piece further comprises a second breathable zone and a third breathable zone, and the second and third breathable zones are provided with one or more micro fans located between the inner and outer mesh cloths.
9. The cooling garment of claim 2, wherein, The water cooling zone comprises an evaporation layer, a water cooling layer and a waterproof layer, wherein the super absorbent resin is located in the water cooling layer, and the waterproof layer is close to the inner lining along the thickness direction.
10. The air-permeable cooling garment of claim 1, wherein, The breathable type cooling clothes further comprise a cooling necktie provided with a cooling zone.
Citation Information
Patent Citations
Air-conditioning garment capable of cooling and ventilating
CN213154087U
Evaporative cooling clothes
CN221059654U