A fabric that retains a cooling sensation
By designing a breathable cooling structure in the clothing fabric, the combination of polyester filaments and a cooling film utilizes airflow deformation to achieve intermittent contact between the cooling film and the skin, solving the problem of cooling materials losing their effectiveness due to sweat and achieving a long-lasting cooling effect.
Patent Information
- Application Number
- CN202411843910.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-14
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2044-12-14
AI Technical Summary
Existing clothing fabrics that provide a cooling sensation to the skin in summer are prone to losing their effectiveness due to sweat.
Design a fabric structure comprising a bottom layer, a middle layer, and a top layer. A cavity is formed between the middle layer and the bottom layer through a jacquard process. Vertically woven polyester filaments are placed inside the cavity. The bottom of the polyester filaments extends into the breathable opening and connects to the cooling membrane. The cooling membrane has deformation grooves. Through the breathable mesh and the breathable opening, the cooling membrane intermittently contacts the skin, using airflow to accelerate sweat evaporation.
During wear, the cooling membrane deforms through airflow and makes intermittent contact with the skin, maintaining a long-lasting cooling effect and improving the comfort and durability of the fabric.
Smart Images

Figure CN119388846B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a fabric that maintains a cooling sensation, belonging to the field of fabrics. Background Technology
[0002] With the continuous advancement of the fashion industry and the increasing demands of consumers for clothing quality, the fabric technology used in apparel is also constantly developing. Modern clothing fabrics not only need to meet basic requirements for wearing comfort, aesthetics, and durability, but also need to meet requirements in terms of functionality, environmental friendliness, and personalization.
[0003] Existing fabric structures used in clothing often incorporate cooling materials on the inside of the fabric to provide a cool touch to the skin in summer. However, as the cooling effect on the inside of the fabric increases with prolonged contact with the skin, it can easily lose its effectiveness due to sweat. Summary of the Invention
[0004] To address the shortcomings of existing technologies, the purpose of this invention is to provide a fabric that maintains a cooling sensation. This addresses the problem that existing fabric structures used in clothing often incorporate cooling materials on the inner side of the fabric to provide a cool touch to the skin in summer. However, as the cooling effect on the inner side of the fabric increases with prolonged contact with the skin, it is easily lost due to sweat.
[0005] To achieve the above objectives, the present invention is implemented through the following technical solution: a fabric that maintains a cooling sensation, the structure of which includes a fabric body, wherein the bottom surface of the fabric body is provided with a plurality of breathable cooling structures.
[0006] The fabric body includes a bottom layer, a middle layer, and a top layer. The middle layer is located between the bottom layer and the top layer. The top layer has a breathable mesh structure and a breathable yarn layer is woven on its outer wall. Several cavities are formed between the middle layer and the bottom layer through a jacquard process. Several breathable mesh holes are provided between the cavities and the top layer. Several polyester filaments are vertically woven inside the cavities.
[0007] The breathable cooling structure includes several breathing slots connected to the bottom surface of the bottom layer. The breathing slots correspond to the cavity. A cooling film is horizontally arranged in the middle section of the breathing slot. The bottom of the polyester filament extends into the breathing slot and is connected to the top surface of the cooling film.
[0008] Furthermore, the connection between the polyester filament and the cooling film is formed by weaving to create a braided connection point.
[0009] Furthermore, the bottom surface of the cooling film is provided with several deformation grooves.
[0010] Furthermore, the deformation groove has a wavy structure.
[0011] Furthermore, the underlying material is one of cotton, linen, silk, acrylic, polypropylene, spandex, and vinylon.
[0012] Furthermore, the intermediate layer is made of latex.
[0013] Furthermore, the bottom layer, the middle layer, and the top layer are connected by hot pressing or adhesive bonding.
[0014] Furthermore, the cooling film is made of ice silk material.
[0015] Furthermore, the cooling film has a curved shape.
[0016] Furthermore, the polyester filament has an S-shaped structure.
[0017] The beneficial effects of this invention are as follows: When a breathable cooling structure is set on the fabric used in clothing, during the process of wearing and walking, outside air enters through the surface layer of the breathable mesh structure, enters the corresponding cavity through the breathable mesh holes, and then enters the breathing slot. The cooling film in the breathing slot is deformed by the airflow, and its arc-shaped part extends out of the breathing slot from the middle section to contact the skin. With the reciprocating airflow, the cooling film intermittently contacts the skin, accelerating the evaporation of sweat and providing a lasting cooling sensation. Attached Figure Description
[0018] Other features, objects, and advantages of the present invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:
[0019] Figure 1 This is a schematic diagram of the structure of a fabric that maintains a cooling sensation according to the present invention;
[0020] Figure 2 This is a schematic diagram of the non-contact cross-sectional structure of a fabric that maintains a cooling sensation according to the present invention;
[0021] Figure 3 This is a schematic diagram of the contact cross-sectional structure of a fabric that maintains a cooling sensation according to the present invention.
[0022] Figure 4 This is a schematic diagram of the structure of a polyester filament column;
[0023] Figure 5 This is a schematic diagram of the structure of the cooling film. Detailed Implementation
[0024] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.
[0025] Example 1
[0026] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 The present invention provides a fabric technology solution for maintaining a cooling sensation: its structure includes a fabric body 1, and the bottom surface of the fabric body 1 is provided with a plurality of breathable cooling structures 2.
[0027] The fabric body 1 includes a bottom layer 11, a middle layer 12, and a top layer 13. The middle layer 12 is located between the bottom layer 11 and the top layer 13. The top layer 13 has a breathable mesh structure and a breathable yarn layer 14 is woven on its outer wall. Several cavities 15 are formed between the middle layer 12 and the bottom layer 11 through a jacquard process. Several breathable mesh holes 16 are provided between the cavity 15 and the top layer 13. Several polyester filaments 17 are vertically woven inside the cavity 15.
[0028] The breathable cooling structure 2 includes a number of breathing slots 21 connected to the bottom surface of the bottom layer 11. The breathing slots 21 correspond to the cavity 15. A cooling film 22 is horizontally arranged in the middle section of the breathing slot 21. The bottom of the polyester filament 17 extends into the breathing slot 21 and is connected to the top surface of the cooling film 22.
[0029] To improve the strength of the connection, the connection between the polyester filament 17 and the cooling film 22 is formed by weaving to form a braided connection point 23.
[0030] To allow for better deformation, the bottom surface of the cooling film 22 is provided with a plurality of deformation grooves 24, which have a wavy structure.
[0031] To improve wearing comfort, the bottom layer 11 is made of cotton fabric.
[0032] To maintain elasticity, the intermediate layer 12 is made of latex.
[0033] To improve the strength of the connection, the bottom layer 11, the middle layer 12, and the top layer 13 are connected by hot pressing or adhesive bonding.
[0034] To enhance the cooling sensation upon skin contact, the cooling film 22 is made of ice silk material.
[0035] The cooling film 22 is curved to allow for intermittent skin contact.
[0036] To enable elastic recovery, the polyester filament 17 has an S-shaped structure.
[0037] In the fabric used in clothing, a breathable cooling structure 2 is set. During the process of wearing and walking, outside air enters through the surface layer 13 of the breathable mesh structure, enters the corresponding cavity 15 through the breathable mesh 16, and then enters the breathing slot 21. The cooling film 22 in the breathing slot 21 is deformed by the airflow. Its arc-shaped part extends out of the breathing slot 21 from the middle section and comes into contact with the skin. With the reciprocating airflow, the cooling film 22 intermittently contacts the skin, accelerates the evaporation of sweat, and has a lasting cooling sensation.
[0038] Example 2
[0039] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 The present invention provides a fabric technology solution for maintaining a cooling sensation: its structure includes a fabric body 1, and the bottom surface of the fabric body 1 is provided with a plurality of breathable cooling structures 2.
[0040] The fabric body 1 includes a bottom layer 11, a middle layer 12, and a top layer 13. The middle layer 12 is located between the bottom layer 11 and the top layer 13. The top layer 13 has a breathable mesh structure and a breathable yarn layer 14 is woven on its outer wall. Several cavities 15 are formed between the middle layer 12 and the bottom layer 11 through a jacquard process. Several breathable mesh holes 16 are provided between the cavity 15 and the top layer 13. Several polyester filaments 17 are vertically woven inside the cavity 15.
[0041] The breathable cooling structure 2 includes a number of breathing slots 21 connected to the bottom surface of the bottom layer 11. The breathing slots 21 correspond to the cavity 15. A cooling film 22 is horizontally arranged in the middle section of the breathing slot 21. The bottom of the polyester filament 17 extends into the breathing slot 21 and is connected to the top surface of the cooling film 22.
[0042] To improve the strength of the connection, the connection between the polyester filament 17 and the cooling film 22 is formed by weaving to form a braided connection point 23.
[0043] To allow for better deformation, the bottom surface of the cooling film 22 is provided with a plurality of deformation grooves 24, which have a wavy structure.
[0044] To improve wearing comfort, the bottom layer 11 is made of linen.
[0045] To maintain elasticity, the intermediate layer 12 is made of latex.
[0046] To improve the strength of the connection, the bottom layer 11, the middle layer 12, and the top layer 13 are connected by hot pressing or adhesive bonding.
[0047] To enhance the cooling sensation upon skin contact, the cooling film 22 is made of ice silk material.
[0048] The cooling film 22 is curved to allow for intermittent skin contact.
[0049] To enable elastic recovery, the polyester filament 17 has an S-shaped structure.
[0050] In the fabric used in clothing, a breathable cooling structure 2 is set. During the process of wearing and walking, outside air enters through the surface layer 13 of the breathable mesh structure, enters the corresponding cavity 15 through the breathable mesh 16, and then enters the breathing slot 21. The cooling film 22 in the breathing slot 21 is deformed by the airflow. Its arc-shaped part extends out of the breathing slot 21 from the middle section and comes into contact with the skin. With the reciprocating airflow, the cooling film 22 intermittently contacts the skin, accelerates the evaporation of sweat, and has a lasting cooling sensation.
[0051] Example 3
[0052] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 The present invention provides a fabric technology solution for maintaining a cooling sensation: its structure includes a fabric body 1, and the bottom surface of the fabric body 1 is provided with a plurality of breathable cooling structures 2.
[0053] The fabric body 1 includes a bottom layer 11, a middle layer 12, and a top layer 13. The middle layer 12 is located between the bottom layer 11 and the top layer 13. The top layer 13 has a breathable mesh structure and a breathable yarn layer 14 is woven on its outer wall. Several cavities 15 are formed between the middle layer 12 and the bottom layer 11 through a jacquard process. Several breathable mesh holes 16 are provided between the cavity 15 and the top layer 13. Several polyester filaments 17 are vertically woven inside the cavity 15.
[0054] The breathable cooling structure 2 includes a number of breathing slots 21 connected to the bottom surface of the bottom layer 11. The breathing slots 21 correspond to the cavity 15. A cooling film 22 is horizontally arranged in the middle section of the breathing slot 21. The bottom of the polyester filament 17 extends into the breathing slot 21 and is connected to the top surface of the cooling film 22.
[0055] To improve the strength of the connection, the connection between the polyester filament 17 and the cooling film 22 is formed by weaving to form a braided connection point 23.
[0056] To allow for better deformation, the bottom surface of the cooling film 22 is provided with a plurality of deformation grooves 24, which have a wavy structure.
[0057] To enhance wearing comfort, the bottom layer 11 is made of silk.
[0058] To maintain elasticity, the intermediate layer 12 is made of latex.
[0059] To improve the strength of the connection, the bottom layer 11, the middle layer 12, and the top layer 13 are connected by hot pressing or adhesive bonding.
[0060] To enhance the cooling sensation upon skin contact, the cooling film 22 is made of ice silk material.
[0061] The cooling film 22 is curved to allow for intermittent skin contact.
[0062] To enable elastic recovery, the polyester filament 17 has an S-shaped structure.
[0063] In the fabric used in clothing, a breathable cooling structure 2 is set. During the process of wearing and walking, outside air enters through the surface layer 13 of the breathable mesh structure, enters the corresponding cavity 15 through the breathable mesh 16, and then enters the breathing slot 21. The cooling film 22 in the breathing slot 21 is deformed by the airflow. Its arc-shaped part extends out of the breathing slot 21 from the middle section and comes into contact with the skin. With the reciprocating airflow, the cooling film 22 intermittently contacts the skin, accelerates the evaporation of sweat, and has a lasting cooling sensation.
[0064] Example 4
[0065] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 The present invention provides a fabric technology solution for maintaining a cooling sensation: its structure includes a fabric body 1, and the bottom surface of the fabric body 1 is provided with a plurality of breathable cooling structures 2.
[0066] The fabric body 1 includes a bottom layer 11, a middle layer 12, and a top layer 13. The middle layer 12 is located between the bottom layer 11 and the top layer 13. The top layer 13 has a breathable mesh structure and a breathable yarn layer 14 is woven on its outer wall. Several cavities 15 are formed between the middle layer 12 and the bottom layer 11 through a jacquard process. Several breathable mesh holes 16 are provided between the cavity 15 and the top layer 13. Several polyester filaments 17 are vertically woven inside the cavity 15.
[0067] The breathable cooling structure 2 includes a number of breathing slots 21 connected to the bottom surface of the bottom layer 11. The breathing slots 21 correspond to the cavity 15. A cooling film 22 is horizontally arranged in the middle section of the breathing slot 21. The bottom of the polyester filament 17 extends into the breathing slot 21 and is connected to the top surface of the cooling film 22.
[0068] To improve the strength of the connection, the connection between the polyester filament 17 and the cooling film 22 is formed by weaving to form a braided connection point 23.
[0069] To allow for better deformation, the bottom surface of the cooling film 22 is provided with a plurality of deformation grooves 24, which have a wavy structure.
[0070] To improve wearing comfort, the bottom layer 11 is made of one of the following materials: acrylic, polypropylene, spandex, and vinylon.
[0071] To maintain elasticity, the intermediate layer 12 is made of latex.
[0072] To improve the strength of the connection, the bottom layer 11, the middle layer 12, and the top layer 13 are connected by hot pressing or adhesive bonding.
[0073] To enhance the cooling sensation upon skin contact, the cooling film 22 is made of ice silk material.
[0074] The cooling film 22 is curved to allow for intermittent skin contact.
[0075] To enable elastic recovery, the polyester filament 17 has an S-shaped structure.
[0076] In the fabric used in clothing, a breathable cooling structure 2 is set. During the process of wearing and walking, outside air enters through the surface layer 13 of the breathable mesh structure, enters the corresponding cavity 15 through the breathable mesh 16, and then enters the breathing slot 21. The cooling film 22 in the breathing slot 21 is deformed by the airflow. Its arc-shaped part extends out of the breathing slot 21 from the middle section and comes into contact with the skin. With the reciprocating airflow, the cooling film 22 intermittently contacts the skin, accelerates the evaporation of sweat, and has a lasting cooling sensation.
[0077] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0078] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A fabric that maintains a cooling sensation, characterized in that: Its structure includes a fabric body (1), and the bottom surface of the fabric body (1) is provided with several breathable cooling structures (2). The fabric body (1) includes a bottom layer (11), a middle layer (12), and a top layer (13). The middle layer (12) is located between the bottom layer (11) and the top layer (13). The top layer (13) has a breathable mesh structure and a breathable yarn layer (14) is woven on its outer wall. Several cavities (15) are formed between the middle layer (12) and the bottom layer (11) through a jacquard process. Several breathable mesh holes (16) are provided between the cavity (15) and the top layer (13). Several polyester filaments (17) are vertically woven inside the cavity (15). The breathing cooling structure (2) includes several breathing slots (21) connected to the bottom surface of the bottom layer (11). The breathing slots (21) correspond to the cavity (15). A cooling film (22) made of ice silk material is horizontally arranged in the middle section of the breathing slot (21). The bottom of the polyester filament (17) extends into the breathing slot (21) and is connected to the top surface of the cooling film (22).
2. The fabric for maintaining a cooling sensation according to claim 1, characterized in that: The connection between the polyester filament (17) and the cooling film (22) is formed by weaving to form a weaving connection point (23).
3. The fabric for maintaining a cooling sensation according to claim 1, characterized in that: The bottom surface of the cooling film (22) is provided with several deformation grooves (24).
4. The fabric for maintaining a cooling sensation according to claim 3, characterized in that: The deformation groove (24) has a wavy structure.
5. The fabric for maintaining a cooling sensation according to claim 1, characterized in that: The bottom layer (11) is made of one of the following materials: cotton, linen, silk, acrylic, polypropylene, spandex, or vinylon.
6. The fabric for maintaining a cooling sensation according to claim 1, characterized in that: The intermediate layer (12) is made of latex.
7. The fabric for maintaining a cooling sensation according to claim 1, characterized in that: The bottom layer (11), the middle layer (12), and the top layer (13) are connected by hot pressing or adhesive bonding.
8. The fabric for maintaining a cooling sensation according to claim 1, characterized in that: The cooling film (22) has an arc.
9. The fabric for maintaining a cooling sensation according to claim 1, characterized in that: The polyester filament (17) has an S-shaped structure.
Citation Information
Patent Citations
Cool knitted fabric
CN214983753U
Ice silk cool underwear and underpants fabric
CN215551582U