Integrated refrigeration garment with overhead ventilation structure
By setting up an overhead ventilation structure and refrigeration equipment on the inner side of the refrigeration clothing, air circulation and flow are achieved, and the problems of high energy consumption and uneven air flow in existing refrigeration clothing are solved, and the durability and aesthetics of the clothing are improved.
Patent Information
- Application Number
- CN202421993732.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-08-16
AI Technical Summary
The existing refrigeration clothing has problems such as high energy consumption, uneven air flow, affecting personal activities and inability to realize internal circulation in the body surface in terms of cooling.
An integrated refrigeration suit with overhead ventilation structure is adopted. By setting up an overhead ventilation structure on the inside of the clothing, an overhead layer is formed to guide air flow, and air circulation flow is achieved in combination with refrigeration equipment.
It reduces the energy consumption of ventilation equipment such as fans, realizes uniform circulation of air on the human body surface, reduces the energy consumption of clothing, and improves the durability and aesthetics of clothing.
Smart Images

Figure CN222917051U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of cooling clothing, and particularly relates to an integrated refrigeration clothing with an overhead ventilation structure. Background Art
[0002] Body surface ventilation is a way to directly cool the human body surface in a high-temperature environment. Normal-temperature air from the outside or low-temperature air after being cooled by equipment is blown into the clothing to bring a sense of coolness. Common methods include installing a fan on the clothes, hanging a small fan on the waist, guiding the air cooled by equipment into the clothing through a pipeline, etc.
[0003] Fan clothes (clothing products with fans installed everywhere to blow air into the clothing), portable blowing products such as waist-mounted fans, and products such as external cooling equipment (portable air conditioners, compressed air vortex tubes) that blow cold air into the clothing through pipelines all aim to blow normal-temperature or low-temperature air into the outer clothing worn by people or directly onto the human body surface to achieve cooling through the flow of air. These products create high-pressure air and force it into the clothing. Through the pressure difference inside and outside the clothing, the clothing floats or bulges, making the fabric away from the body surface to form a space for air flow, so as to achieve the flow of air on the human body surface. The above products have the following disadvantages:
[0004] First, the flow of air requires sufficient space. The above products all need to use high-power fans to create high-pressure air inside the body. Through the pressure difference inside and outside the clothing, the fabric is made to move away from the body to form a space for air flow. A large amount of energy consumption is used to overcome the gravity of the clothing and deform the clothing to maintain this flow space. There are also strict requirements for the fabric of the clothing, which must be thin and light enough.
[0005] Second, as a fluid, air tends to flow in the direction of lower resistance. The air resistance of each part of the human body surface must be different. Along with human movements or external forces, the clothing in some parts will stick to the body, increasing the air resistance and resulting in no air flowing through. Therefore, it is difficult to achieve uniform cooling of the human body surface with the technical routes of the above products.
[0006] Third, based on the above two points, the large-pressure air created by high-power fans is forced to blow into certain parts of the body for a long time, causing the clothing around the fans to bulge, affecting personal activities. In particular, the low-temperature air after being cooled by equipment blowing towards specific parts of the human body surface for a long time may have an impact on human health.
[0007] Fourthly, for products with active refrigeration, external hot air is inhaled into the device, cooled, and then blown onto the human body. During this process, the temperature difference for cooling the air is large, and there will be heat conduction with the external air when the air flows through the pipeline into the human body. Therefore, a large amount of energy is consumed. If an air circulation can be formed on the human body surface to cool the air on the human body surface, at this time, since the temperature on the human body surface is already close to the appropriate temperature, the temperature difference for cooling is small, and there is no pipeline transmission, so the energy consumption is greatly reduced. However, when realizing air circulation on the human body surface, both the outlet and inlet of the fan are inside the clothing. When the fan works, the air inlet is at low pressure, and the nearby clothing will inevitably be close to the air suction port under the action of the relatively high air pressure outside the clothing, eventually blocking the air suction port. Therefore, conventional clothing cannot achieve the internal circulation of the air on the body surface. Summary of the Invention
[0008] Aiming at the technical problems in the prior art that the refrigeration clothing consumes a large amount of energy, the flow of the refrigerated air is uneven, affecting personal activities or unable to achieve the internal circulation on the body surface, the purpose of the present invention is to provide an integrated refrigeration clothing with an overhead ventilation structure.
[0009] To solve the above-mentioned technical problems, the present invention provides an integrated refrigeration clothing with an overhead ventilation structure, and the integrated refrigeration clothing with an overhead ventilation structure includes clothing;
[0010] The integrated refrigeration clothing with an overhead ventilation structure further includes:
[0011] An overhead ventilation structure, which is arranged on the back, shoulders, chest and abdomen, and waist on the inner side of the clothing, and the overhead ventilation structure forms an overhead layer on the inner side of the clothing.
[0012] Optionally, in the integrated refrigeration clothing with an overhead ventilation structure as described above, the overhead ventilation structure is a split structure with several overhead sections, and adjacent two overhead sections are attached or arranged at a certain distance.
[0013] Optionally, in the integrated refrigeration clothing with an overhead ventilation structure as described above, the overhead ventilation structure is made of plastic or silicone material.
[0014] Optionally, in the integrated refrigeration clothing with an overhead ventilation structure as described above, the overhead ventilation structure is a hollow matrix frame structure, and the hollow matrix frame structure is composed of several hollow geometric blocks spliced together.
[0015] Optionally, in the integrated refrigeration clothing with an overhead ventilation structure as described above, the hollow geometric block is a hollow polyhedron.
[0016] Optionally, in the one-piece cooling suit with an overhead ventilation structure as described above, the overhead ventilation structure is a hollow tower structure, and the hollow tower structure includes a number of hollow supports arranged vertically and horizontally. The bottom surface of the hollow support is an open structure, and there is a certain distance between two adjacent hollow supports and they are connected at the bottom by a connecting rod.
[0017] Optionally, in the one-piece cooling suit with an overhead ventilation structure as described above, the hollow tower structure further includes an outer frame. The hollow supports are located within the outer frame, and the bottoms of the hollow supports at the edge are connected to the outer frame.
[0018] Optionally, in the one-piece cooling suit with an overhead ventilation structure as described above, the hollow support is a hollow polyhedron, a dot protrusion or a spring.
[0019] Optionally, in the one-piece cooling suit with an overhead ventilation structure as described above, the overhead ventilation structure is arranged on the clothing in one of the ways of plugging, sewing, hot-melt adhesive bonding, glue bonding, hot pressing, buttons and Velcro.
[0020] Optionally, in the one-piece cooling suit with an overhead ventilation structure as described above, a receiving layer with an outer dimension equivalent to that of the overhead ventilation structure is arranged on the inner side of the clothing. An opening part for opening the inside and outside is left on one side of the receiving layer, and the overhead ventilation structure is inserted into the receiving layer.
[0021] Optionally, in the one-piece cooling suit with an overhead ventilation structure as described above, the receiving layer is a receiving layer made of at least one of a breathable material and a windproof material.
[0022] Optionally, in the one-piece cooling suit with an overhead ventilation structure as described above, the receiving layer is a cloth duct or a cloth pocket made of at least one of a mesh cloth and a windproof cloth.
[0023] Optionally, in the one-piece cooling suit with an overhead ventilation structure as described above, the opening part is one of a zipper, Velcro and buttons.
[0024] Optionally, in the one-piece cooling suit with an overhead ventilation structure as described above, the one-piece cooling suit with an overhead ventilation structure further includes:
[0025] A refrigeration device, which is arranged on the clothing, and the cold air outlet of the refrigeration device is communicated with the overhead ventilation structure.
[0026] Optionally, in the one-piece cooling suit with an overhead ventilation structure as described above, the cooling device uses a fan. There is at least one fan. The air inlet of the fan communicates with the outside of the clothing, and the air outlet of the fan communicates with the overhead ventilation structure. The overhead ventilation structure has an air outlet communicating with the outside of the clothing.
[0027] Optionally, in the one-piece cooling suit with an overhead ventilation structure as described above, the cooling device uses a fan. There is at least one fan. The air inlet and the air outlet of the fan communicate with the overhead ventilation structure respectively.
[0028] Optionally, in the one-piece cooling suit with an overhead ventilation structure as described above, the fan is arranged at the waist position or on both sides of the waist of the clothing.
[0029] Optionally, in the one-piece cooling suit with an overhead ventilation structure as described above, the cooling device uses an active cooling device with a semiconductor or compression refrigeration unit. The air inlet and the air outlet of the active cooling device communicate with the overhead ventilation structure respectively.
[0030] Optionally, in the one-piece cooling suit with an overhead ventilation structure as described above, all or part of the active cooling device is arranged on the back of the clothing. The air inlet of the active cooling device is located at the lower part of the active cooling device and communicates with the overhead ventilation structure located at the back waist of the clothing. The air outlet of the active cooling device is located at the upper part of the active cooling device and communicates with the overhead ventilation structure located at the back shoulder of the clothing.
[0031] Optionally, in the one-piece cooling suit with an overhead ventilation structure as described above, a device pocket is arranged on the back of the clothing, and the active cooling device is arranged in the device pocket;
[0032] The overhead ventilation structure located at the back shoulder of the clothing is arranged in the accommodating layer. The lower opening of the accommodating layer at the back shoulder of the clothing is oppositely arranged with the upper opening of the device pocket, and the accommodating layer at the back shoulder of the clothing is connected with the device pocket.
[0033] The positive and progressive effects of the present utility model are as follows:
[0034] 1. Through the overhead ventilation structure, the present utility model can form an overhead layer (ventilation air duct) for air flow inside the clothing, preventing the clothing from sticking to the skin and hindering ventilation. The ventilation air ducts inside the clothing can be connected in a specified direction to guide the air flow direction, realizing the directional circulation of air, and there is no need to increase the air pressure to maintain the air flow space, thereby reducing the energy consumption of ventilation devices such as fans.
[0035] 2. The air circulation uniformity on the human body surface is adjusted through the design of the ventilation duct, which can regulate the feelings of various parts of the human body surface.
[0036] 3. The utility model combines an overhead ventilation structure and a refrigeration device, especially a refrigeration device that can realize internal circulation in the ventilation duct, so as to realize the air circulation flow in the clothing on the human body surface and further reduce the energy consumption of the device.
[0037] 4. There is no requirement for the clothing fabric. Since high-pressure air is not needed, the clothing will not be blown to bulge, making the clothing more beautiful and durable. Thickened heat-insulating fabric can be used to improve the heat-insulating effect.
[0038] 5. The overhead ventilation structure can cover the back, shoulders, chest and abdomen, and waist on the inner side of the clothing. Especially, the overhead ventilation structure is also designed for the shoulders and waist, greatly simplifying the structure of the ventilation duct.
[0039] 6. The overhead ventilation structure is connected to the clothing in a detachable manner, which is convenient for disassembly, maintenance and cleaning of the overhead ventilation structure. A receiving layer is arranged on the inner side of the clothing to receive the overhead ventilation structure. When the receiving layer is made of at least one of a breathable material and a windproof material, by adjusting the staggered sewing of the breathable material at different parts, or the windproof material and the breathable material, it is possible to control whether the flowing air on the human body surface contacts the human body, and realize the regulation of the human body's perceived temperature. BRIEF DESCRIPTION OF THE DRAWINGS
[0040] With reference to the accompanying drawings, the disclosure of the utility model will become more apparent. It should be understood that these drawings are only for illustrative purposes and are not intended to limit the scope of protection of the utility model. In the drawings:
[0041] Figure 1 is a schematic structural diagram of an overhead ventilation structure of the utility model;
[0042] Figure 2 is a schematic structural diagram of a hollow matrix frame structure of the utility model;
[0043] Figure 3 is a schematic structural diagram of a hollow tower frame structure of the utility model;
[0044] Figure 4 is Figure 3 the front view of;
[0045] Figure 5 is Figure 3 the side view of;
[0046] Figure 6 is a schematic structural diagram of a receiving layer of the utility model;
[0047] Figure 7This is a schematic structural diagram of a unidirectional ventilation mode of the present utility model;
[0048] Figure 8 is Figure 7 the rear schematic diagram of;
[0049] Figure 9 This is a schematic structural diagram of an internal circulation ventilation mode of the present utility model;
[0050] Figure 10 is Figure 9 the rear schematic diagram of. Specific embodiments
[0051] The following uses specific examples to illustrate the embodiments of the present utility model. Those skilled in the art can easily understand other advantages and effects of the present utility model from the content disclosed in this specification. The present utility model can also be implemented or applied through different specific embodiments. Various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of the present utility model.
[0052] It should be noted that, without conflict, the following embodiments and the features in the embodiments can be combined with each other.
[0053] In the description of the present utility model, it should be noted that for orientation terms, such as terms "outer side", "middle section", "inner", "outer", etc., the indicated orientation and position relationships are based on the orientation or position relationships shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and should not be construed as limiting the specific protection scope of the present utility model.
[0054] In addition, such terms as "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present utility model, the meanings of "several" and "a number of" are two or more, unless otherwise specifically defined.
[0055] Refer to Figures 1 to 10, embodiments of the present utility model provide an integrated cooling suit with an overhead ventilation structure. The integrated cooling suit with an overhead ventilation structure includes a garment 10 and an overhead ventilation structure 20. The garment 10 can be a coat or a vest. The overhead ventilation structure 20 is disposed on the back, shoulders, chest and abdomen, and waist on the inner side of the garment 10. The overhead ventilation structure 20 forms an overhead layer (also known as a ventilation air duct) on the inner side of the garment 10. The overhead ventilation structure 20 can adopt any type of low air resistance structure. The air resistance of this ventilation air duct is small. Through this ventilation air duct, it is possible to prevent the garment 10 from sticking to the skin and hindering ventilation, and supply air to flow on the body surface.
[0056] The ventilation air ducts inside the garment 10 can be connected in a specified direction to guide the air flow direction and achieve the directional circulation of air. Therefore, there is no need to increase the air pressure to maintain the air flow space, thereby reducing the energy consumption of ventilation equipment such as fans.
[0057] In some embodiments, the overhead ventilation structure 20 is a split structure with several overhead segments, and adjacent two overhead segments are attached or arranged at a certain distance.
[0058] The overhead ventilation structure 20 of the present utility model can be designed in multiple segments. Therefore, the corresponding ventilation air ducts can also be designed in multiple segments. Adjacent two ventilation air ducts are connected, and can be arranged in a preset order on the inner side of the garment 10. Refer to Figure 1 , which is an overhead ventilation structure 20 on the inner side of the garment 10, Figure 1 The garment fabric part is omitted. The ventilation air duct formed by the overhead ventilation structure 20 is overall in a long strip shape and is symmetrical on the left and right sides. The ventilation air duct on each side goes from the shoulder down to the abdomen, then turns from the abdomen around the waist to the back, and then returns from the back to the shoulder. The above-mentioned trend is one possible way, but not limited to this.
[0059] Adjacent two overhead segments can be spliced and attached together, or can be adjusted to be arranged at a certain distance according to needs. This distance can be used to install an air inlet or an air outlet, such as an air inlet pipe interface, a ventilation fan, or an internal circulation fan, or even an active cooling device (also known as a micro cooling device).
[0060] For example, refer to Figure 7 and Figure 8 , the inner side of the garment has a ventilation air duct spliced by six overhead segments, and fans are installed at the front waist and the back waist respectively.
[0061] Another example, refer to Figure 9 and Figure 10 , an active cooling device is installed at the vacant place on the back.
[0062] In some embodiments, the overhead ventilation structure 20 is made of plastic or silica gel material, so that the overhead ventilation structure 20 is a soft overhead ventilation structure 20, reducing the foreign body sensation when wearing the present utility model. After wearing the present utility model, normal activities can still be carried out.
[0063] In some embodiments, referring to Figure 2 , the overhead ventilation structure 20 is a hollow matrix frame structure, and the hollow matrix frame structure is composed of a plurality of hollow geometric blocks 21 spliced together.
[0064] Specifically, the hollow matrix frame structure is a C(i, j) hollow matrix frame structure composed of M columns and N rows of hollow geometric blocks. Adjacent two hollow geometric blocks are sequentially interconnected. M is an integer greater than or equal to 1, N is an integer greater than or equal to 1, 1 ≤ i ≤ N, and 1 ≤ j ≤ M.
[0065] Among them, the number and the length-width ratio of the hollow geometric blocks can be determined according to the actual situation.
[0066] In some embodiments, the hollow geometric block is a hollow polyhedron, such as a rectangular block, a cube block or a rhombic platform block.
[0067] In some embodiments, referring to Figures 3 to 5 , the overhead ventilation structure 20 is a hollow tower frame structure. The hollow tower frame structure includes a plurality of hollow support bodies 22 arranged vertically and horizontally. The bottom surface of the hollow support body 22 is an open structure. There is a certain distance between adjacent two hollow support bodies 22 and the bottoms are connected by a connecting rod 23. Among them, the number and the length-width ratio of the hollow support bodies 22 can be determined according to the actual situation.
[0068] Compared with the hollow matrix frame structure in this embodiment, as Figures 3 to 5 shown, in the up and down direction, there is sufficient supporting force due to the support of the hollow support bodies 22. Since there is a certain distance between adjacent two hollow support bodies 22, a large bending amplitude can be achieved in the side direction. When wearing the present utility model, it is more convenient for activities. When the overhead ventilation structure 20 of this structure is arranged inside the clothing 10, the top surface of the hollow support body 22 can be located on the outside or the inside.
[0069] Preferably, the connecting rods 23 connecting between four hollow support bodies 22 enclose a rectangular frame structure.
[0070] In some embodiments, the hollow tower frame structure further includes an outer frame 24. The hollow support bodies 22 are located inside the outer frame 24, and the bottoms of the hollow support bodies 22 located at the edge are connected to the outer frame 24.
[0071] Of course, when the overhead ventilation structure 20 is a split structure of several overhead sections, an outer frame 24 can be arranged outside each overhead section.
[0072] Referring toFigure 3 , part of the outer frame 24 can be shared with the connecting rod 23 located at the edge.
[0073] The hollow support 22, the connecting rod 23 and the outer frame 24 are preferably integrally formed.
[0074] In some embodiments, the hollow support 22 is a hollow polyhedron, a dot protrusion or a spring.
[0075] The hollow polyhedron has structures such as a hollow cuboid and a hollow quadrangular prism. Refer to Figures 3 to 5 , the hollow support 22 is a hollow quadrangular prism.
[0076] In some embodiments, the overhead ventilation structure 20 can also be other non-solid overhead structures, as long as they can form a ventilation duct structure.
[0077] In some embodiments, the overhead ventilation structure 20 is arranged on the garment 10 in one of the ways of plugging, sewing, pressing glue, gluing, hot pressing, buttons and Velcro.
[0078] In some embodiments, an accommodating layer with an outer dimension equivalent to that of the overhead ventilation structure 20 is arranged inside the garment 10. An opening part for opening the inside and outside is left on one side of the accommodating layer, and the overhead ventilation structure 20 is inserted into the accommodating layer.
[0079] The overhead ventilation structure 20 is connected to the garment in the above detachable manner, which is convenient for disassembling, maintaining and cleaning the overhead ventilation structure 20.
[0080] In some embodiments, the accommodating layer is an accommodating layer made of at least one of a breathable material and a windproof material.
[0081] By adjusting the breathable material at different parts, or the staggered sewing of the windproof material and the breathable material, it is possible to control whether the flowing air on the human body surface contacts the human body, and realize the regulation of the human body's perceived temperature.
[0082] Of course, the overhead ventilation structure 20 can also be made of only one of the materials.
[0083] In some embodiments, the accommodating layer is a cloth duct or a cloth pocket made of at least one of a mesh cloth and a windproof cloth.
[0084] The windproof cloth is an airtight cloth. Therefore, the cloth duct or the cloth pocket can be sewn with a mesh cloth and an airtight cloth. By adjusting the mesh size of the mesh cloth at different parts, or the staggered sewing of the airtight cloth and the mesh cloth, it is possible to control whether the flowing air on the human body surface contacts the human body, and realize the regulation of the human body's perceived temperature.
[0085] Refer to Figure 6It is a structural sectional view of a receiving layer. The lower layer is the garment fabric 11 of the garment 10, and the upper layer is the receiving layer made of mesh fabric 31. There is a zipper 32 on the side. The space formed between the garment fabric 11 and the mesh fabric 31 is used to install the overhead ventilation structure 20.
[0086] In some embodiments, the opening part is one of a zipper, a Velcro, and a button.
[0087] In some embodiments, the one-piece cooling garment with an overhead ventilation structure further includes a refrigeration device. The refrigeration device is arranged on the garment 10, preferably on the inner side of the garment 10. The cold air outlet of the refrigeration device is communicated with the overhead ventilation structure 20.
[0088] The refrigeration device can be any refrigeration device applicable to the garment 10 in the prior art.
[0089] In some embodiments, the refrigeration device adopts a fan. The fan is at least one. The air inlet of the fan is communicated with the outside of the garment 10, and the air outlet of the fan is communicated with the overhead ventilation structure 20. The overhead ventilation structure 20 has an air outlet communicated with the outside of the garment 10.
[0090] The above method is a one-way ventilation method. Refer to Figure 7 and Figure 8 , four fans 40 are respectively arranged at the front, rear, left, and right waist positions of the garment 10. The fans 40 blow the outside air into the body, and the air reaches the shoulder through the ventilation air duct formed by the overhead ventilation structure 20 and is discharged from the air outlet at the shoulder.
[0091] In some embodiments, the refrigeration device adopts a fan. The fan is at least one. The air inlet and the air outlet of the fan are respectively communicated with the overhead ventilation structure 20.
[0092] The above method is an internal circulation ventilation method, and the fan forms an internal circulation fan.
[0093] Multiple internal circulation fans can be set as needed, or two internal circulation fans can be symmetrically arranged on the left and right. The two internal circulation fans are respectively arranged on the back of the garment 10. Their air outlets are located at the upper part and are communicated with the overhead ventilation structure 20 at the position of the back shoulder of the garment, and their air inlets are located at the lower part and are communicated with the overhead ventilation structure 20 at the position of the back waist, so that the internal air circulation direction is: back, back shoulder, front shoulder, front chest, abdomen, front waist, side waist, back waist, back.
[0094] The above internal air circulation direction is one possible way, but not limited to this.
[0095] In some embodiments, the fan is arranged at the waist position of the garment 10 or at the positions on both sides of the waist.
[0096] In some embodiments, the refrigeration device employs an active refrigeration device (also known as a micro-refrigeration device) with a semiconductor or compression refrigeration unit. The air inlet and outlet of the active refrigeration device are respectively connected to the overhead ventilation structure 20.
[0097] The above method is an internal circulation ventilation method with a refrigeration mode.
[0098] In some embodiments, referring to Figure 9 and Figure 10 , all or part of the active refrigeration device 50 is disposed on the back of the garment 10. The air inlet of the active refrigeration device 50 is located at the lower part of the active refrigeration device 50 and is connected to the overhead ventilation structure 20 located at the rear waist of the garment 10. The air outlet of the active refrigeration device 50 is located at the upper part of the active refrigeration device 50 and is connected to the overhead ventilation structure 20 located at the rear shoulder of the garment 10.
[0099] After entering the active refrigeration device 50 through the air inlet, it is cooled by the refrigeration unit and blown out from the air outlet into the ventilation air duct formed by the overhead ventilation structure 20. At this time, the internal air circulation direction is: back, rear shoulder, front shoulder, front chest, abdomen, front waist, side waist, rear waist, back.
[0100] The above internal air circulation direction is one possible way, but not limited to this.
[0101] During specific implementation, the active refrigeration device 50 can be disposed on the garment 10 as a whole, for example, preferably disposed on the back of the garment 10. The active refrigeration device 50 can also adopt a split design. For example, a part is disposed on the back of the garment 10, and another part is disposed at other positions of the garment 10 such as the waist side.
[0102] In some embodiments, a device pocket is provided on the back of the garment 10, and the active refrigeration device is disposed in the device pocket. The overhead ventilation structure 20 located at the rear shoulder of the garment 10 is disposed in the accommodation layer provided inside the garment 10. The lower opening of the accommodation layer at the rear shoulder of the garment 10 is oppositely disposed to the upper opening of the device pocket, and the accommodation layer at the rear shoulder of the garment 10 is connected to the device pocket.
[0103] Specifically, the accommodation layer is preferably an accommodation layer made of windproof material.
[0104] To improve the refrigeration performance, the active refrigeration device is placed in the device pocket on the back. After the above design, after the air is blown out from the upper air outlet of the active refrigeration device, it can only reach the front chest via the shoulder ventilation air duct, ensuring that the cold air circulates throughout the body.
[0105] The present utility model has been described in detail in combination with the embodiments accompanied by drawings. Those of ordinary skill in the art can make various variations to the present utility model according to the above description. Therefore, some details in the embodiments should not constitute a limitation to the present utility model, and the present utility model will take the scope defined by the appended claims as the protection scope.
Claims
1. An integrated cooling garment with an overhead ventilation structure, the integrated cooling garment with an overhead ventilation structure comprising clothing; It is characterized in that The one-piece cooling suit with overhead ventilation structure also includes: An overhead ventilation structure is arranged on the back, shoulders, chest, abdomen and waist of the inner side of the clothing, and the overhead ventilation structure forms an overhead layer on the inner side of the clothing.
2. The integrated cooling suit with overhead ventilation structure according to claim 1, characterized in that: The overhead ventilation structure is a hollow matrix frame structure, and the hollow matrix frame structure is formed by splicing a number of hollow geometric blocks.
3. The integrated cooling suit with overhead ventilation structure according to claim 2, characterized in that: The hollow geometric block is a hollow polyhedron.
4. The integrated cooling suit with overhead ventilation structure according to claim 1, characterized in that: The overhead ventilation structure is a hollow tower structure, which includes a plurality of hollow support bodies arranged vertically and horizontally. The bottom surface of the hollow support body is an open structure. There is a certain distance between two adjacent hollow support bodies and the bottoms are connected by connecting rods.
5. The integrated cooling suit with overhead ventilation structure according to claim 4, characterized in that: The hollow tower structure also includes an outer frame, the hollow support body is located inside the outer frame, and the bottom of the hollow support body located at the edge is connected to the outer frame; And / or, the hollow support body is a hollow polyhedron, a dot protrusion or a spring.
6. The integrated cooling suit with overhead ventilation structure according to claim 1, characterized in that: The overhead ventilation structure is a split structure with a plurality of overhead sections, and two adjacent overhead sections are arranged close to each other or at a certain distance from each other; and / or, the overhead ventilation structure is made of plastic or silicone material; And / or, the overhead ventilation structure is arranged on the garment by one of the following methods: plugging, sewing, gluing, adhesive bonding, heat pressing, buttons and Velcro.
7. The integrated cooling suit with overhead ventilation structure according to claim 1, characterized in that: A containing layer having the same size as the outer size of the overhead ventilation structure is arranged on the inner side of the garment, an opening portion for opening inside and outside is reserved on one side of the containing layer, and the overhead ventilation structure is inserted into the containing layer.
8. The integrated cooling suit with overhead ventilation structure according to claim 7, characterized in that: The accommodation layer is made of at least one of air-permeable material and windproof material; And / or, the opening portion is one of a zipper, a Velcro and a button.
9. The integrated cooling suit with overhead ventilation structure according to claim 8, characterized in that: The containing layer is a cloth pipe or a cloth bag made of at least one of mesh cloth and windproof cloth.
10. The integrated cooling garment with overhead ventilation structure according to any one of claims 1 to 9, characterized in that: The one-piece cooling suit with overhead ventilation structure also includes: A refrigeration device is provided on the clothing, and a cold air outlet of the refrigeration device is connected to the overhead ventilation structure.
11. The integrated cooling suit with overhead ventilation structure according to claim 10, characterized in that: The refrigeration device uses a fan, and there is at least one fan, the air inlet of the fan is connected to the outside of the clothing, the air outlet of the fan is connected to the overhead ventilation structure, and the overhead ventilation structure has an exhaust port connected to the outside of the clothing; Alternatively, the refrigeration device uses a fan, there is at least one fan, and an air inlet and an air outlet of the fan are respectively connected to the overhead ventilation structure.
12. The integrated cooling suit with overhead ventilation structure according to claim 11, characterized in that: The fan is arranged at the waist position or at the waist positions on both sides of the clothing.
13. The integrated cooling garment with overhead ventilation structure according to claim 10, characterized in that: The refrigeration device is an active refrigeration device with a semiconductor or compression refrigeration unit, and the air inlet and the air outlet of the active refrigeration device are respectively connected to the overhead ventilation structure.
14. The integrated cooling suit with overhead ventilation structure according to claim 13, characterized in that: All or part of the active cooling device is arranged on the back of the garment, the air inlet of the active cooling device is located at the lower part of the active cooling device and is connected to the overhead ventilation structure located at the rear waist of the garment, and the air outlet of the active cooling device is located at the upper part of the active cooling device and is connected to the overhead ventilation structure located at the rear shoulder of the garment.
15. The integrated cooling garment with overhead ventilation structure according to claim 14, characterized in that: The back of the garment is provided with a device pocket, and the active cooling device is arranged in the device pocket; The overhead ventilation structure located at the rear shoulder of the garment is arranged in the containing layer, the lower opening of the containing layer at the rear shoulder of the garment is arranged opposite to the upper opening of the device pocket, and the containing layer at the rear shoulder of the garment is connected to the device pocket.