Heat dissipation device for garment lining
By using a separate air intake box and air outlet structure, combined with flexible air pipes and multi-directional air outlet design, the problem of existing heat dissipation clothing being unable to adapt to various clothing styles has been solved, achieving all-round uniform heat dissipation and improving the heat dissipation effect and wearing comfort of role-playing clothing.
Patent Information
- Application Number
- CN202511372040.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-24
- Publication Date
- 2025-12-16
AI Technical Summary
Existing heat-dissipating clothing cannot accommodate various clothing styles, affecting the accuracy of the design and providing poor local cooling, thus failing to meet the heat dissipation requirements of role-playing costumes.
It adopts a separate air inlet box and air outlet pad structure, combined with flexible air tubes and multi-directional air outlet design, to adapt to different clothing patterns. It also achieves uniform air blowing in multiple areas through flexible pads and guide tubes, reducing clothing bulging and improving heat dissipation efficiency.
It achieves compatibility with various garment styles without compromising the garment's shape, providing all-around uniform heat dissipation and improving wearing comfort and heat dissipation efficiency.
Smart Images

Figure CN121128991A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of clothing heat dissipation devices, in particular to a clothing lining heat dissipation device. BACKGROUND
[0002] In certain scenarios, such as role-playing activities, stage performances, etc., the functionality and modeling restoration of the clothing have certain requirements, and the wearer needs to work for a long time in an indoor venue or outdoor environment, which is prone to sweating, stuffiness, and even heatstroke due to heavy clothing.
[0003] Existing heat dissipation clothing mostly uses quick-drying fabric or integrated fan design, which needs to be deeply bound with the clothing body. However, for role-playing clothing and performance clothing, the core requirement of these clothes is to maintain the role modeling restoration, and the clothing fabric and cutting cannot be modified, such as the fluffy skirt of a princess skirt, the three-dimensional armor structure of a robot suit, and the multi-layered design of a traditional clothing, which cannot be compatible with integrated heat dissipation clothing, resulting in difficulty in solving the heat dissipation problem of personnel wearing such clothing.
[0004] The portable heat dissipation accessories for clothing on the market are mostly small single fans or local blowing devices fixed on the collar or waist. Such products have a narrow coverage and can only cool the local area, which cannot solve the overall stuffiness problem of heavy clothing. Moreover, they cannot be fitted to role-playing clothing and are prone to bulging after wearing, which can damage the decorative details of role-playing clothing and destroy the clothing restoration.
[0005] Therefore, there is an urgent need for a clothing internal heat dissipation device that does not damage the clothing modeling, adapts to various clothing patterns, balances the heat dissipation efficiency and body comfort, and is flexible to install. SUMMARY
[0006] The purpose of the present application is to provide a clothing lining heat dissipation device, which solves the technical problem that the heat dissipation device easily affects the clothing modeling, cannot adapt to various clothing patterns, and balances the heat dissipation efficiency and body comfort when dissipating heat inside a specific clothing.
[0007] To solve the above technical problems, the present application adopts the following solutions:
[0008] A clothing lining heat dissipation device, comprising a blowing assembly.
[0009] Preferably, the blowing port of the blowing assembly is connected to the inlet of the air pipe, and the outlet of the air pipe is connected to the air outlet pad.
[0010] Preferably, the air outlet pad comprises a flexible pad plate, a plurality of flow guide pipes are through-connected in the flexible pad plate, one end of the flow guide pipe is connected to the air pipe, and the other end of the flow guide pipe is connected to the external environment.
[0011] Preferably, the outlet direction of the other end of each of the guide tubes is different.
[0012] Preferably, each of the guide tubes has an air outlet on its tube wall.
[0013] Preferably, the air outlet pad is mounted on the inner shirt, and the blower assembly is mounted on the outer garment.
[0014] Preferably, the trachea is a corrugated flexible tube.
[0015] Preferably, the air outlet pad is a flat, flexible pad structure.
[0016] Preferably, the blower assembly is installed inside the air intake box, which is installed on the outer garment, and the blower assembly includes a fan.
[0017] Preferably, the fan is located inside the air intake box, the fan shaft is connected to a drive motor, the speed control terminal of the drive motor is electrically connected to a fan speed knob, and the fan speed knob is located outside the air intake box.
[0018] The air intake box has an air inlet through its surface, which faces the axial direction of the fan. The air intake box is also connected to an air pipe insertion port. The surface of the box with the air pipe insertion port is perpendicular to the surface of the box with the air inlet, and the air pipe insertion port faces the radial direction of the fan.
[0019] Preferably, the air intake box is connected to at least one matching air pipe and air outlet pad.
[0020] Preferably, the plurality of air outlet pads are disposed separately, and a flexible connecting strap connects adjacent air outlet pads. The flexible connecting strap is tied to the strap groove on the adjacent air outlet pad by a tie.
[0021] Preferably, the other end of the guide tube has a slot formed by the flexible pad, which is located on the side of the flexible pad and the pad surface that fits the inner lining, respectively. The slots are oriented toward the inner lining surface and toward the inner lining surface extending outward from the flexible pad, respectively.
[0022] Preferably, the airflow direction at the air outlet is directed toward the inner lining surface and the inner lining surface extending outward from the flexible pad, respectively.
[0023] Preferably, the flexible pad has multiple through-holes on its surface.
[0024] Preferably, flexible reinforcing plates are fixedly connected to the multiple openings.
[0025] Preferably, the air outlet pad is fixedly provided with a strap groove, and a strap is tied to the strap groove. The air outlet pad is tied to the inner garment by the strap.
[0026] Preferably, the air intake box has a strap groove on its exterior, and a strap is attached to the strap groove.
[0027] The endotracheal tube is connected to the endotracheal tube insertion port.
[0028] The technical solution of this application has at least the following advantages and beneficial effects:
[0029] This invention features a separate structure for the air inlet box, air pipe, and air outlet pad. The air inlet box is fixed in a non-inconspicuous position on the outer garment (such as the inside of the skirt hem or the gap in the armor), with no rigid connection between the two, allowing for flexible adaptation to different garment styles (from tight-fitting clothes to puffy skirts). The air outlet pad is flexibly fitted to the lining, conforming to the curves of the body without affecting the three-dimensional shape of the outer garment. The air pipe uses a corrugated flexible hose design, which can be freely extended, retracted, and bent, maintaining ventilation even in narrow spaces or curved parts inside the garment, and avoiding bulging or deformation of the garment due to the rigidity of the pipe.
[0030] This invention achieves uniform airflow in multiple areas with a small air volume by setting up a guide tube and cooperating with multi-directional air outlets (side + contact surface). This avoids excessive local airflow that could cause clothing to bulge, and can also evenly cool down the parts of the body that are in contact with the body, reducing heat accumulation and accelerating heat dissipation.
[0031] This invention also features an optional strap for securing the air intake box, allowing it to be directly strapped to the body for compact garments (such as form-fitting traditional Chinese clothing), reducing reliance on available space for garment installation. (See attached drawings.)
[0032] Figure 1 This is a schematic diagram of the structure of the present invention.
[0033] Figure 2 This is a bottom-view structural diagram of the present invention.
[0034] Figure 3 This is a top view of the structure of the present invention.
[0035] Figure 4 This is a structural schematic diagram of the present invention from another angle.
[0036] Figure 5 This is a cross-sectional view of the air intake box in this invention.
[0037] Figure 6 This is a cross-sectional view of the air outlet pad in this invention.
[0038] Figure 7 This is a schematic diagram of the left-side structure of the present invention.
[0039] Figure 8 This is a schematic diagram of the structure of the present invention when a strap is provided.
[0040] Figure 9This is a schematic diagram of the structure of the present invention from another angle when the strap is provided.
[0041] In the diagram: 1-Air inlet box, 2-Blower assembly, 201-Fan, 202-Air inlet, 203-Filter, 204-Air hose insertion port, 205-Fan speed knob, 206-Battery, 3-Air hose, 4-Air outlet pad, 401-Flexible pad, 402-Guide tube, 403-Firming plate, 5-Air outlet, 6-Flexible connecting strap, 7-Strap groove, 71-Strap. Detailed Implementation
[0042] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0043] It should be noted that similar reference numerals and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures. The terms "center," "upper," "lower," "inner," and "outer," indicating orientation or positional relationships based on the orientation or positional relationships shown in the figures, or the orientation or positional relationships commonly used when the product is in use, are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed or operated in a specific orientation, and therefore should not be construed as a limitation on this application. It should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," and "connect" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal communication between two elements. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0044] Example 1
[0045] Please refer to Figures 1-9 This invention provides a heat dissipation device for clothing lining, including an air inlet box 1, a blower assembly 2 for installation inside the air inlet box 1, an air pipe 3 connected to the air inlet of the air pipe 3 connected to the air outlet of the blower assembly 2, and an air outlet pad 4 connected to the air outlet pad 4. The air outlet pad 4 is hollow inside for gas circulation, and several air outlets 5 are through the pad surface of the air outlet pad 4. When the blower assembly 2 is working, the circulating gas will be blown out through the several air outlets 5 on the air outlet pad 4.
[0046] Both the air inlet box 1 and the air outlet pad 4 are fixedly provided with strap grooves 7, and straps 71 are tied to the strap grooves 7. When the heat dissipation device for the inner lining of the garment needs to dissipate heat, the air inlet box 1 is first tied to the outer garment with the straps, and then the air outlet pad 4 is tied to the inner lining garment with the straps 71 (the air outlet pad 4 is provided with multiple strap grooves 7 and matching straps 71, which can form various strap forms, such as back straps, waist belt structures, etc.). The two are tied separately, and then the blowing component 2 is activated to blow air to cool down the inner lining that is in contact with the person's body, thereby quickly dissipating heat from the inside of the person's garment.
[0047] It is worth noting that the air inlet box 1 is connected to at least one matching air pipe 3 and air outlet pad 4. Multiple separate air outlet pads 4 can be set up to tie each air outlet pad 4 to different parts of the body, increasing the heat dissipation points. The multiple separate air outlet pads 4 are connected by a flexible connecting strap 6. The flexible connecting strap 6 is tied to the strap groove 7 on the adjacent air outlet pad 4 through the strap 71, so that multiple air outlet pads 4 can be flexibly tied to the clothing and personnel.
[0048] Preferably, traditional clothing internal heat dissipation devices are generally designed to fit the shape of the garment (such as quick-drying fabrics like polyester fiber). However, for specific scenarios and specific clothing (such as role-playing costumes), it is difficult to directly change the shape and fabric of the clothing. Alternatively, clothing designed with built-in fans may be used, but for the sake of wearing comfort and portability, the fans are generally small and integrated with the clothing. However, for specific clothing, such as role-playing costumes, it is necessary to maintain the accuracy of the original and the clothing cannot be modified. Moreover, the clothing is diverse and mostly heavy (such as the fluffy skirt of a princess dress or the three-dimensional armor structure of a mecha suit). Therefore, small fans or integrated fans are also difficult to effectively dissipate heat from these garments.
[0049] Preferably, in this embodiment, the air outlet pad 4 is a flat, flexible pad structure. When the air outlet pad 4 is tied to the lining, it can flexibly adhere to the body shape of the person, reducing the impact on the shape of the outer clothing. It can also gently conform to the body when the person is posing for role-playing, blowing air into the inside of the shirt and reducing the impact on the person.
[0050] Preferably, in this embodiment, the air intake box 1 and the flexible pad 401 are set separately. The non-deformable air intake box 1 is placed on the outer garment of the role-playing costume. The thick layer of the outer garment is used for adhesion and support, and a certain gap space is maintained between the air intake box 1 and the inner lining and the person's body to maintain the person's flexible movement. While maintaining heat dissipation inside the role-playing costume, the heat dissipation device reduces the restraint and restriction on the person's role-playing poses.
[0051] Furthermore, in order to maintain the air intake and exhaust effect of the blower assembly 2 inside the garment, the blower assembly 2 includes a fan 201, an air inlet 202, a filter 203, an air hose plug 204, a wind speed knob 205, and a battery 206.
[0052] Specifically, the fan 201 is installed inside the air intake box 1. The fan 201 shaft is connected to the drive motor. The speed control terminal of the drive motor is electrically connected to the fan speed knob 205. The fan speed knob 205 is located outside the air intake box 1. The drive motor drives the fan 201 to rotate. The drive motor is powered by the battery 206 fixedly installed inside the air intake box. When the fan speed knob 205 rotates, the speed of the drive motor can be adjusted, thereby controlling the fan speed of the fan 201.
[0053] The air intake box 1 has an air inlet 202 through its surface, which faces the axial direction of the fan 201. When the fan 201 rotates, external air is drawn into the air intake box 1 through the air inlet 202. On another surface of the air intake box 1 that is perpendicular to the surface with the air inlet 202, there is an air pipe insertion port 204. The air pipe insertion port 204 is connected to the inlet of the air pipe 3. The air pipe insertion port 204 faces the radial direction of the fan 201. When the fan 201 rotates, the air drawn into the air intake box 1 is blown into the air pipe insertion port 204 by the fan 201 (refer to the blowing principle of existing blowers) and then into the air pipe 3, thereby blowing air.
[0054] A filter 203 is installed between the fan 201 and the air inlet 202. The filter 203 is fixed inside the air intake box 1 and completely blocks the air inlet 202, thereby blocking foreign objects in the outside air and preventing them from being sucked into the air intake box 1, which would damage the fan 201. It also prevents foreign objects from being passed into the flexible pad 401 and the air outlet 5, which would cause the air outlet 5 to be blocked or the lining to be stained.
[0055] Furthermore, although the air outlet pad 4, which can flexibly conform to the inner lining, reduces its impact on the garment's shape, in actual use, the numerous air outlets 5 on the surface of the air outlet pad 4 can cause the outer garment (especially softer materials) to be blown up by the high-velocity airflow due to the excessive number of air outlets (for example, when the air outlets 5 are placed on every surface of the air outlet pad 4). This high-speed airflow can cause the outer garment to bulge, thus affecting the garment's shape. Moreover, the air outlet pad 4 itself is made of a sealed material (for easy gas transmission) and has almost no breathability. When its entire surface is attached to the inner lining, although the airflow can be accelerated through the numerous air outlets 5 on the surface, the large area of the surface in contact with the body can also block the airflow, resulting in the accumulation of heat and poor heat dissipation at the contact point.
[0056] Therefore, in view of the above situation, in this embodiment, the air outlet pad 4 includes a flexible pad 401, a guide pipe 402, and a reinforcing rib 403.
[0057] The flexible pad 401 is an integral flexible plate surface. Multiple guide pipes 402 are fixedly installed inside the flexible pad 401. One end of the guide pipe 402 is connected to the outlet of the gas pipe 3, so that the flowing gas is simultaneously introduced into multiple guide pipes for flow and diversion.
[0058] Preferably, the other end of the guide tube 402 extends from the pad surface of the flexible pad 401 that is in contact with the inner lining and connects to the outside. The tube opening passes through the slot formed by the flexible pad 401 and is located on the side of the flexible pad 401 and the pad surface that is in contact with the inner lining. This allows some gas to be blown toward the surface of the inner lining to cool the skin of the person in the inner lining, and some gas to be blown toward the surface of the inner lining that extends outward from the flexible pad 401. This increases the blowing area and can limit the flow of gas from blowing toward the outer clothing (so that the blowing direction is not directly toward the outer clothing, the blowing area is expanded, and the local bulging of the clothing is reduced). It can also increase the blowing direction and reduce the possibility of the guide tube 402 opening being blocked when the pad surface is in contact with the body.
[0059] Preferably, the air pipe 3 is fixedly connected to the flexible pad 401, and the outlet of each guide pipe 402 connected to the air pipe 3 faces a different direction, thereby reducing the occurrence of excessive local air volume under a single outlet inside the garment. By blowing air evenly in multiple locations with small air volume inside the garment, the heat dissipation uniformity is further improved.
[0060] Preferably, the flexible pad 401 has multiple through-holes on its surface to reduce the weight of the entire flexible pad 401, reduce the back pressure on the wearer, and reduce the contact area between the entire flexible pad 401 and the inner lining surface (i.e., the wearer's body surface) to avoid heat accumulation. However, after reducing the weight of the flexible pad 401, the strength of the entire flexible pad 401 will decrease, making it prone to breakage during bending. Therefore, flexible reinforcing plates 403 are also connected in each through-hole to improve the strength of the flexible pad 401.
[0061] In addition, in order to improve the heat dissipation capacity of the flexible pad 401 and to cooperate with the through-hole on the pad for heat dissipation, an air outlet 5 is also provided on the wall of each guide tube 402. The air blowing direction of the air outlet 5 is towards the inner lining surface and the inner lining surface extending outward from the flexible pad 401 for auxiliary air blowing and heat dissipation. The flowing gas at the air outlet 5 diffuses to the outside from the through-hole of the flexible pad 401, so that the flowing air will not accumulate on the inner lining surface and cause bulges.
[0062] It is worth noting that in actual use, in order to fit various parts of the person's body (such as shoulders, waist, back or legs), the flexible pad 401 is a long and narrow plate, which makes it easy to flexibly fit a wider area of the person's body, thereby covering more parts. In addition, the width of the plate is reduced, which makes it easier to follow the different parts of the body in a flexible direction. It is less likely that the pad will wrinkle when bending due to being too wide, which would reduce the heat dissipation effect and cause the device to not fit the clothing.
[0063] Furthermore, in actual use, since the air outlet pad 4 needs to be used on different parts of the person's body, its position needs to be changed frequently. Especially when the position of the air outlet pad 4 is adjusted after the person is dressed, the air inlet box 1 connected to the air outlet pad 4 is difficult to follow the installation of different parts of the clothing (the clothing is in close contact with the human body). Therefore, in order to match the actual use effect, the connection distance between the air outlet pad 4 and the air inlet box 1 needs to be adjustable.
[0064] Therefore, in view of the above situation, in this embodiment, the air pipe 3 connecting the air outlet pad 4 and the air inlet box 1 is set as a corrugated hose structure. The corrugated hose structure is a flexible and variable pipe, and the pipe is set with several annular corrugations so that the pipe can elastically stretch and change its length.
[0065] Preferably, when the person adjusts the fit of the air outlet pad 4, it is not necessary to remove the air inlet box 1 on the outer garment. Only the position of the air outlet pad 4 needs to be adjusted. The air pipe 3 connected to it can be extended in length and oscillated in angle with the air outlet pad 4 to improve applicability. Moreover, the flexible pipe of the air pipe 3 will also conform and deform when it is located in the narrow space inside the garment that needs to be bent, thereby reducing the impact on the shape of the outer garment while maintaining ventilation.
[0066] Example 2
[0067] In actual use, the air intake box 1 needs to be installed on the outer clothing and kept at a distance from the inner shirt to draw in circulating air. Due to the rigid box-shaped structure of the air intake box 1, it can generally only be installed on thicker and stiffer outer clothing (such as crinolines and animal costumes). It is difficult to install it on some tighter role-playing costumes.
[0068] In response to the above situation, in this embodiment, a strap 71 for binding with the strap groove 7 is also provided on the outside of the air inlet box 1. The strap 71 can bind the air inlet box 1 to the person's body (i.e., the outer shirt), so that the air inlet box 1 and the flexible pad 401 are both attached to the person's inner lining, thereby reducing the installation space of the entire device and making it convenient for use inside some relatively compact role-playing costumes.
[0069] Please refer to the following: Figure 9When the air inlet box 1 is attached to the person, the air inlet 202 and the wind speed knob 205 on the air inlet box 1 face outwards from the clothing to avoid the air inlet 202 being blocked. The pluggable design of the air pipe 3 on the air pipe insertion port 204 allows the installation direction of the air pipe 3 and the flexible pad 401 to remain unchanged after the installation position of the air inlet box 1 changes.
[0070] The various embodiments of the present invention have now been described in detail. To avoid obscuring the concept of the invention, some details known in the art have not been described. Those skilled in the art will fully understand how to implement the technical solutions of this invention based on the above description, and the scope of the invention is defined by the appended claims.
Claims
1. A heat dissipation device for clothing lining, comprising a blower assembly (2), characterized in that; The air outlet of the blower assembly (2) is connected to the inlet of the air pipe (3), and the outlet of the air pipe (3) is connected to the air outlet pad (4). The air outlet pad (4) includes a flexible pad (401), and a plurality of guide tubes (402) are passed through the flexible pad (401). One end of the guide tube (402) is connected to the air pipe (3), and the other end of the guide tube (402) is connected to the external environment. The outlet direction of each of the aforementioned guide tubes (402) is different; Each of the aforementioned guide pipes (402) has an air outlet (5) on its pipe wall; The air outlet pad (4) is installed on the inner shirt, and the air blowing assembly (2) is installed on the outer garment; The trachea (3) is a corrugated hose structure; The air outlet pad (4) is a flat, flexible pad structure.
2. The heat dissipation device for clothing lining according to claim 1, characterized in that, The blower assembly (2) is installed inside the air inlet box (1), which is installed on the outer garment. The blower assembly (2) includes a fan (201). The fan (201) is installed inside the air intake box (1). The fan (201) shaft is connected to the drive motor. The speed control terminal of the drive motor is electrically connected to the wind speed knob (205). The wind speed knob (205) is located outside the air intake box (1). An air inlet (202) is provided on the surface of the air inlet box (1). The air inlet (202) faces the axial direction of the fan (201). The air inlet box (1) is also connected to an air pipe insertion port (204). The surface of the box with the air pipe insertion port (204) is perpendicular to the surface of the box with the air inlet (202). The air pipe insertion port (204) faces the radial direction of the fan (201).
3. A heat dissipation device for clothing lining according to claim 1, characterized in that, The air inlet box (1) is connected to at least one matching air pipe (3) and air outlet pad (4). Multiple air outlet pads (4) are separated from each other, and a flexible connecting strip (6) is connected between adjacent air outlet pads (4). The flexible connecting strip (6) is tied to the strap groove (7) on the adjacent air outlet pad (4) by a strap (71).
4. A heat dissipation device for clothing lining according to claim 1, characterized in that, The other end of the guide pipe (402) passes through the slot formed by the flexible pad (401), which is located on the side of the flexible pad (401) and the pad surface that fits the inner lining. The slots are respectively directed toward the inner lining surface and toward the inner lining surface that extends outward from the flexible pad (401).
5. A heat dissipation device for clothing lining according to claim 4, characterized in that, The air outlet (5) blows towards the inner lining surface and the inner lining surface extending outward from the flexible pad (401), respectively.
6. A heat dissipation device for clothing lining according to claim 1, characterized in that, The flexible pad (401) has multiple through openings on its surface.
7. A heat dissipation device for clothing lining according to claim 1, characterized in that, Flexible reinforcing plates (403) are fixedly connected to the multiple openings.
8. A heat dissipation device for clothing lining according to claim 1, characterized in that, The air outlet pad is fixedly provided with a strap groove (7), and a strap (71) is tied to the strap groove (7). The air outlet pad (4) is tied to the inner garment by the strap (71).
9. A heat dissipation device for clothing lining according to claim 1, characterized in that, The air intake box (1) is provided with a strap groove (7) on the outside, and a strap (71) is attached to the strap groove (7). The trachea (3) is inserted and disconnected from the trachea insertion port (204).