Somatosensory cooling jacket
By designing a combination of air circulation device and cooling inner liner in the somatosensory cooling top, using external air flow and water evaporation to absorb heat, the problem of slow cooling speed of existing cooling tops is solved, and the rapid cooling and significant cooling effect is achieved, improving the wearer's comfort.
Patent Information
- Application Number
- CN202421726694.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-19
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-07-19
AI Technical Summary
The existing somatosensory cooling tops have slow cooling speed and less obvious cooling effect, resulting in poor user experience in high temperatures.
A somatosensory cooling top is designed, including an air circulation device, an outer shell, a cooling liner and a liner. Through the through holes of the liner and the fabric, the flow of external air between the top and the body is realized, combined with the evaporation of water in the cooling liner to absorb heat, quickly cool down, and prevent the cooling liner from contacting the body directly through the liner.
The rapid cooling effect is achieved significantly, improving the wearer's cooling ability and wearing experience, giving a cool feeling.
Smart Images

Figure CN223182982U_ABST
Abstract
Description
Technical Field
[0001] The present application belongs to the technical field of tops, and in particular relates to a body-sensing cooling top that can appropriately cool the wearer's body. Background Art
[0002] As global warming continues, unusually high temperatures are becoming increasingly common. Zhao Qiang, former president of the China Textile Science Research Institute, said, "The convergence of technology and fashion is becoming a new driving force behind the transformation of people's clothing." Technology is fueling the evolution of summer fashion. After all, neither the elegance of gently waving a folding fan nor the cuteness of holding a handheld fan can better convey a sense of calm and composure than a cool outfit.
[0003] Currently, some cooling tops are available on the market, but they suffer from slow cooling speeds and ineffective cooling effects. In high temperatures, wearing a cooling top can take some time to cool down, significantly increasing user discomfort and user experience.
[0004] Therefore, there is an urgent need for a somatosensory cooling top with a fast cooling speed and significant cooling effect. Utility Model Content
[0005] The purpose of the present application is to provide a body-sensing cooling top with a fast cooling speed and significant cooling effect.
[0006] The embodiments of the present application can be implemented through the following technical solutions:
[0007] A somatosensory cooling jacket comprises an air circulation device, and an outer shell, a cooling liner, and an inner lining which are sequentially arranged from the outside to the inside;
[0008] The shell includes at least a fabric and is configured to cover at least a portion of the wearer's body. The fabric has a back body and a front body extending from the back body to the front and capable of being opened and closed left and right. A fitting device is provided at the bottom of the fabric. A mounting hole is provided on the shell, and the air circulation device is mounted on the shell through the mounting hole. The lining is connected to the inner side of the shell, and the lining is a breathable structure with through holes. The cooling liner is connected to at least one of the shell and the lining.
[0009] Furthermore, the cooling liner includes a water-retaining bag and a water-retaining core, and the water-retaining core is accommodated in the water-retaining bag;
[0010] The water retention bag is made of a moisture-permeable and waterproof material and is provided with an inlet for injecting water.
[0011] Furthermore, the cooling liner further includes a hot-melt connection portion, and the water-retaining bag includes two front and rear pieces of water-retaining fabrics of the same shape, and the two pieces of water-retaining fabrics are hot-melt-connected via the hot-melt connection portion.
[0012] Furthermore, the heat-melt connection portion includes a first connection portion, the first connection portion is a heat-melt line located at the edge of the water-retaining fabric, and the water-retaining core is located inside the heat-melt line outline formed by the first connection portion;
[0013] The first connecting portion is not provided on an edge of the water-retaining fabric corresponding to the inlet.
[0014] Preferably, the hot melt connection portion further comprises at least one second connection portion, wherein the second connection portion is located inside the hot melt line outline formed by the first connection portion;
[0015] The second connecting portion is a closed geometric shape, and the water-retaining core is not provided between the water-retaining fabrics corresponding to the second connecting portion.
[0016] Preferably, the second connecting portion is provided with a ventilation hole extending through in the front-to-back direction.
[0017] Preferably, the inlet is provided with a support portion.
[0018] Optionally, the air circulation device is a wireless power supply device.
[0019] Optionally, the air circulation device is a wired power supply device, the housing is provided with a fixing portion for fixing the wires, and a receiving portion for receiving the power supply, and the receiving portion is provided with a wire hole for the wires to pass through.
[0020] The cooling top provided by the embodiments of the present application has at least the following beneficial effects:
[0021] The present application separates the body from the cooling liner through an inner lining, and through the interaction of the through-holes, fitting device, and fabric of the inner lining, the outside air sucked in by the air circulation device flows within the internal space between the top and the body. On the one hand, the flow of outside air can accelerate the evaporation of the wearer's sweat and remove the heat, giving the wearer a cool feeling; on the other hand, it can accelerate the evaporation rate of the water in the cooling liner, further reducing the wearer's perceived temperature; on the other hand, the inner lining can prevent the cooling liner from directly contacting the body and affecting the wearing experience. The somatosensory cooling top in the present application has the advantages of fast cooling speed and significant cooling effect, which can promote heat dissipation of the wearer's entire body, thereby giving the wearer a good wearing experience and a cool feeling.
[0022] The water-retaining fabric of the water-retaining bag in this application is connected by hot-melt connection through the first connecting part and the second connecting part. The second connecting part is provided with a ventilation hole running through the front-to-back direction, which can further increase the air circulation channel while providing a stable and simple connection to ensure the air circulation effect and thus the cooling effect.
[0023] The inlet in the present application is provided with a support portion, through which the inlet can maintain a relatively fixed shape, thereby ensuring the stability of water injection. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 This is a front view of the body-sensing cooling garment in this application;
[0025] Figure 2 A rear view of the body-sensing cooling garment in this application;
[0026] Figure 3 This is a front view of the cooling liner in this application;
[0027] Figure 4 This is a front view of the housing in this application.
[0028] Figure numerals: 2, outer shell, 21, fabric, 22, fitting device, 23, mounting hole, 24, fixing part, 25, accommodating part, 251, wire hole, 3, cooling liner, 31, water-retaining bag, 311, entrance, 312, water-retaining fabric, 321, first connecting part, 322, second connecting part, 3221, ventilation hole, 4, lining. DETAILED DESCRIPTION
[0029] Hereinafter, the present application will be further described based on preferred embodiments with reference to the accompanying drawings.
[0030] The terms used in this specification are intended to illustrate the embodiments of this application and are not intended to limit this application. Unless otherwise specified or limited, the terms "disposed," "connected," and "connected" should be understood broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections, direct connections, indirect connections through an intermediate medium, or internal connections between two components. Those skilled in the art will have a clear understanding of the specific meanings of the above terms in this application.
[0031] In addition, in the description of the embodiments of the present application, various components on the drawings are enlarged or reduced in size for ease of understanding, but this practice is not intended to limit the scope of protection of the present application.
[0032] Figure 1 and Figure 2 The front view and rear view of the somatosensory cooling top in this application are shown respectively. Figure 1 and Figure 2As shown, the top includes an air circulation device, and an outer shell 2, a cooling liner 3, and an inner lining 4 arranged in sequence from the outside to the inside. The external air sucked in by the air circulation device flows in the internal space formed between the top and the body. On the one hand, the flow of external air can accelerate the evaporation of the wearer's sweat and remove the heat, giving the wearer a cool feeling; on the other hand, it can accelerate the evaporation rate of the water in the cooling liner 3, further reducing the wearer's perceived temperature. In addition, the inner lining 4 can separate the body from the cooling liner 3, preventing the cooling liner 3 from directly contacting the body and affecting the wearing experience. The somatosensory cooling top in this application has the advantages of fast cooling speed and significant cooling effect, which can promote heat dissipation of the wearer's entire body, thereby giving the wearer a good wearing experience and a cool feeling.
[0033] Specifically, the outer shell 2 includes at least a fabric 21 and is configured to cover at least a portion of the wearer's body. The fabric 21 has a back body and a front body extending from the back body to the front that can be opened and closed left and right. The back body and the front body here are relative to the direction of the wearer. A fitting device 22 is provided at the bottom of the fabric 21. The outer shell 2 forms a relatively closed internal space between the top and the wearer through the cooperation of the fitting device 22 and the fabric 21, so that the external air inhaled by the air circulation device is more and circulated evenly in the internal space.
[0034] Furthermore, a mounting hole 23 is provided on the housing 2 , and the air circulation device is mounted on the housing 2 through the mounting hole 23 .
[0035] In some specific embodiments of the present application, the number of the mounting hole 23 is at least one, and the mounting hole 23 is located at any position of the front or back of the fabric 21 .
[0036] In some preferred embodiments of the present application, there are two mounting holes 23 symmetrically arranged at the lower rear portion of the shell 2 , so as to ensure air circulation while reducing the impact of the air circulation device on the wearer's work and life.
[0037] Furthermore, the lining 4 is connected to the inner side of the outer shell 2. The lining 4 is a breathable structure with through holes (the through holes are not shown in the figure), which can separate the cooling liner 3 from the wearer's body while ensuring that the circulating air of the top 1 is in full contact with the wearer.
[0038] Furthermore, the cooling liner 3 is connected to at least one of the outer shell 2 and the inner liner 4. That is, the cooling liner 3 can be connected to the outer shell 2 alone, the inner liner 4 alone, or the outer shell 2 and the inner liner 4 at the same time.
[0039] Specifically, if Figure 1 He Ru Figure 3As shown, the cooling liner 3 includes a water-retaining bag 31 and a water-retaining core. The water-retaining core is placed in the water-retaining bag 31. The water-retaining bag 31 is made of a moisture-permeable and waterproof material. The water-retaining bag 31 is provided with an inlet 311 for injecting water. The cooling liner 3 achieves a cooling effect by absorbing heat through water evaporation. The water-retaining bag 31 can prevent a large amount of water from seeping out while allowing water to pass through. The water-retaining core can evenly distribute water in all directions and positions of the cooling liner 3.
[0040] In some specific embodiments of the present application, Figure 3 As shown, the cooling liner 3 also includes a hot melt connection part, and the water-retaining bag 31 includes two pieces of water-retaining fabrics 312 of the same shape and distributed front and back. The water-retaining fabrics 312 are hot-melt connected through the hot melt connection part, which has the effects of simple processing and stable connection.
[0041] In some preferred embodiments of the present application, the hot melt connection includes a first connection portion 321, which is a hot melt line located at the edge of the water-retaining fabric 312. The water-retaining core is located within the outline of the hot melt line formed by the first connection portion 321. The edge of the water-retaining fabric 312 corresponding to the inlet 311 is not provided with the first connection portion 321. The first connection portion 321 enables hot melt connection of the water-retaining fabric 312 and locks water within the hot melt line formed by the first connection portion 321, preventing water in the water-retaining core from flowing out along the water-retaining fabric 312. The first connection portion 321 also leaves the inlet 311 free to ensure that water can flow smoothly from the inlet 311 into the water-retaining core within the water-retaining bag 31 within the outline of the first connection portion 321. In other words, the first connection portion 321 forms a water storage structure similar to a hot water bottle.
[0042] In some preferred embodiments of the present application, the inlet 311 is located at the top of the cooling liner 3 .
[0043] In some preferred embodiments of the present application, in order to facilitate water injection, the inlet 311 of the cooling liner 3 extends from the liner 4. The liner 4 is provided with a strip-shaped through hole, and the inlet 311 can be extended or retracted from the strip-shaped through hole.
[0044] In some preferred embodiments of the present application, in order to prevent the inlet 311 from moving at will, the outer side of the water-retaining fabric 312 corresponding to the bottom end of the inlet 311 is connected to the outer side of the lining 4, which can prevent the inlet 311 from moving at will while ensuring the stable connection of the cooling liner 3.
[0045] Furthermore, to ensure stable connection of the cooling liner 3 , the outer periphery of the cooling liner 3 is connected to the inner side of the outer shell 2 via a connecting belt.
[0046] In some preferred embodiments of the present application, the hot melt connection part also includes at least one second connection part 322, which is located on the inner side of the hot melt line contour formed by the first connection part 321. The first connection part 321 can fix the peripheral side of the water-retaining fabric 312, and the second connection part 322 can fix the water-retaining fabric 312 at multiple points on the plane.
[0047] In some specific embodiments of the present application, the second connecting portion 322 is a closed geometric shape, and no water-retaining core is provided between the water-retaining fabrics 312 corresponding to the second connecting portion 322, that is, the second connecting portion 322 only fixes the relative position of the water-retaining bag 31 and can divide the water-retaining core into different areas.
[0048] It is conceivable that the second connection portion 322 may be in various regular or irregular geometric shapes such as square, circle, ellipse, etc. In some preferred embodiments of the present application, the second connection portion 322 is circular, which has the advantage of being easy to process.
[0049] In some preferred embodiments of the present application, Figure 3 As shown, the second connecting portion 322 is provided with a vent hole 3221 extending in the front-to-back direction. The vent hole 3221 can increase the air flow channel to ensure the air circulation effect, thereby ensuring the cooling effect. Since the second connecting portion 322 is a closed geometric shape, the opening of the vent hole 3221 will not cause water to flow out.
[0050] In some preferred embodiments of the present application, a support portion is provided for the inlet 311. Since the inlet 311 is surrounded by a relatively soft water-retaining fabric 312, during water injection through the inlet 311, there are problems with the inlet 311 being difficult to fix in shape and prone to spillage. The support portion allows the inlet 311 to maintain a relatively fixed shape, ensuring stable water injection.
[0051] In some preferred embodiments of the present application, the support portion is a soft, long iron sheet structure, which is arranged at the opening position of the inlet 311 and Figure 3 In the up and down extending directions, there are two supporting parts at the opening position, and the two supporting parts can surround the opening to form water injection. The two parallel supporting parts in the up and down extending directions can realize the support of the water injection flow direction.
[0052] In some specific embodiments of the present application, the air circulation device is a wireless power supply device, that is, it has its own power supply unit and can store and output electrical energy through charging or solar energy.
[0053] In some other specific embodiments of the present application, Figure 4As shown, the air circulation device is a wired power supply device, and the housing 2 is provided with a fixing portion 24 for fixing the wires and a receiving portion 25 for receiving the power supply.
[0054] In some preferred embodiments of the present application, the fixing portion 24 is disposed on the inner side of the housing 2 , which can protect the wires while ensuring aesthetics.
[0055] It is conceivable that the accommodating portion 25 can be arranged on the inner side of the housing 2 or on the outer side of the housing 2. Figure 4 As shown, in some specific embodiments of the present application, the accommodating portion 25 is disposed on the outside of the housing 2 .
[0056] In some preferred embodiments of the present application, a wire hole 251 is provided on the accommodating portion 25 for the wires to pass through, so as to facilitate the routing of the wires.
[0057] In some preferred embodiments of the present application, the air circulation device may be provided with a signal receiving unit, and the air circulation device may be controlled by wired or remote control.
[0058] In some specific embodiments of the present application, Figures 1-4 As shown, the outer shell 2 serves as the structure of a vest, and the top, bottom, left and right sides of the lining 4 are connected to the inner side of the outer shell 2, and through holes corresponding to the cuffs are opened at corresponding positions of the lining 4, and the surrounding sides of the through holes are connected to the inner side of the outer shell 2.
[0059] It is conceivable that the bottom of the lining 4 may not be connected to the outer shell 2, and the lining 4 can be stably connected to the outer shell 2 through the top and the left and right sides.
[0060] In some other embodiments of the present application, the shell 2 can also be made into a half-sleeve, three-quarter sleeve, nine-quarter sleeve or long-sleeve structure.
[0061] The above is a detailed introduction to the specific implementation methods of the present application. For those skilled in the art, several improvements and modifications can be made to the present application without departing from the principles of the present application. These improvements and modifications also fall within the scope of protection of the claims of the present application.
Claims
1. A body-cooling top, characterized by: It includes an air circulation device, and an outer shell, a cooling liner, and an inner lining arranged in sequence from the outside to the inside; The shell includes at least a fabric and is configured to cover at least a portion of the wearer's body. The fabric has a back body and a front body extending from the back body to the front and capable of being opened and closed left and right. A fitting device is provided at the bottom of the fabric. A mounting hole is provided on the shell, and the air circulation device is mounted on the shell through the mounting hole. The lining is connected to the inner side of the shell, and the lining is a breathable structure with through holes. The cooling liner is connected to at least one of the shell and the lining.
2. The cooling top according to claim 1, characterized in that: The cooling liner includes a water-retaining bag and a water-retaining core, and the water-retaining core is accommodated in the water-retaining bag; The water retention bag is made of a moisture-permeable and waterproof material and is provided with an inlet for injecting water.
3. The cooling top according to claim 2, characterized in that: The cooling liner further comprises a hot-melt connection portion, and the water-retaining bag comprises two front and rear pieces of water-retaining fabrics of the same shape, and the two pieces of water-retaining fabrics are hot-melt-connected via the hot-melt connection portion.
4. The cooling top according to claim 3, characterized in that: The heat-melt connection portion includes a first connection portion, the first connection portion is a heat-melt line located at the edge of the water-retaining fabric, and the water-retaining core is located inside the heat-melt line outline formed by the first connection portion; The first connecting portion is not provided on an edge of the water-retaining fabric corresponding to the inlet.
5. The cooling top according to claim 4, characterized in that: The hot melt connection portion further comprises at least one second connection portion, the second connection portion being located inside the hot melt line outline formed by the first connection portion; The second connecting portion is a closed geometric shape, and the water-retaining core is not provided between the water-retaining fabrics corresponding to the second connecting portion.
6. The cooling top according to claim 5, characterized in that: The second connecting portion is provided with a ventilation hole which passes through in the front-to-back direction.
7. The cooling top according to claim 2, characterized in that: The inlet is provided with a support portion.
8. The cooling top according to claim 1, characterized in that: The air circulation device is a wireless power supply device.
9. The cooling top according to claim 1, characterized in that: The air circulation device is a wired power supply device. The housing is provided with a fixing portion for fixing the wires and a receiving portion for receiving the power supply. The receiving portion is provided with a wire hole for the wires to pass through.