Composite fabric with ice silk cool feeling
By introducing a multi-layered structure of stain-resistant coating, microcapsules, breathable layer and moisture-wicking layer into the ice silk cooling composite fabric, the problems of insufficient stain resistance, mite prevention and moisturizing properties of existing ice silk cooling composite fabrics are solved, improving the user experience and sleep quality.
Patent Information
- Application Number
- CN202520119426.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-01-20
AI Technical Summary
Existing ice silk cooling composite fabrics have weak stain resistance, short-lasting anti-mite effect, and lack air improvement and moisturizing functions, resulting in a poor user experience.
The structure consists of a stain-resistant coating made of fluoride materials, microcapsules filled with lavender essential oil, a breathable layer with polyester fibers and negative ion materials, and a moisture-absorbing layer with a moisturizing material made of cotton fibers and hyaluronic acid. The layers are combined using ultrasonic and adhesive bonding processes to form a multi-layered structure.
It achieves stain resistance, mite resistance, air purification, and moisture retention in the fabric, providing a cool touch, a fresh and comfortable user experience, and promoting sleep quality.
Smart Images

Figure CN223835182U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of textile technology, and more specifically, to a composite fabric with a cooling, ice-silk feel. Background Technology
[0002] Composite fabrics are made by combining multiple materials with different properties through specific processes, and are widely used in clothing, home furnishings, and other fields. In home furnishing products such as quilts, composite fabrics can combine the advantages of multiple materials to meet people's different needs for warmth, breathability, and other aspects, thereby enhancing the user experience.
[0003] However, existing ice silk cooling composite fabrics used for comforters have drawbacks. They are poorly stain-resistant, allowing stains to easily penetrate and become difficult to clean; their mite-proofing effects are not long-lasting, failing to guarantee a healthy sleeping environment in the long term; and they offer little in terms of air quality improvement and moisture retention, failing to create a fresh air environment for the user after a period of use, and causing skin dryness due to sweat evaporation. Therefore, we propose an ice silk cooling composite fabric. Utility Model Content
[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to the needs of reality, and provide an ice silk cooling composite fabric to solve the technical problems of existing ice silk cooling composite fabrics used for quilts, such as weak stain resistance, short-lasting anti-mite effect, lack of air improvement and moisturizing functions, resulting in poor user experience.
[0005] To solve the above technical problems, this utility model provides the following technical solution: a composite fabric with a cooling sensation of ice silk, comprising a fabric body, wherein the fabric body comprises an ice silk layer, a breathable layer and a moisture-absorbing layer, wherein a breathable layer is arranged inside the ice silk layer and a moisture-absorbing layer is arranged inside the breathable layer.
[0006] The ice silk layer includes ice silk fibers, on which an anti-fouling coating is arranged. The anti-fouling coating is made of fluoride material. Microcapsules are arranged inside the ice silk fibers and filled with lavender essential oil.
[0007] Preferably, both the ice silk layer and the breathable layer are provided in two layers, with the two ice silk layers enclosing the two breathable layers, and the moisture-absorbing layer is provided in one layer, which is arranged inside the two breathable layers.
[0008] Preferably, the ice silk layer is composited with the breathable layer by ultrasonic waves, and the breathable layer is composited with the moisture-absorbing layer by adhesive.
[0009] Preferably, the breathable layer comprises polyester fiber, and negative ion material is disposed within the polyester fiber, the negative ion material being made of tourmaline powder.
[0010] Preferably, the moisture-absorbing layer comprises cotton fibers impregnated with a moisturizing material made of hyaluronic acid.
[0011] Compared with the prior art, the beneficial effects of this utility model are:
[0012] 1. The ice silk fiber design of this invention provides a cooling sensation when the user touches the outer surface of the fabric. It has good thermal conductivity, which can quickly remove heat and give the skin a cool touch. The stain-resistant coating made of fluoride material can form a protective film on the surface of the ice silk fiber. Liquid stains such as beverages and sweat stains will form water droplets and roll off when they come into contact with the fabric, instead of penetrating into the ice silk fiber. Through the design of the microcapsule structure, the lavender essential oil filled inside can not only slowly release the scent to repel and inhibit mites, but also help users soothe their nerves and reduce anxiety, so that they can fall asleep more easily in a relaxed state.
[0013] 2. The breathable layer made of polyester fiber in this invention has good breathability and durability. Its fiber structure is relatively compact, but it still has enough space for air circulation. Its molecular chain structure is regular and can form many tiny pores. These pores help with air exchange. The negative ion material made of tourmaline powder will continuously release negative ions when the human body comes into contact with the bedding or during sleep. Negative ions can improve air quality and make people feel fresh and comfortable. The moisture-absorbing layer made of cotton fiber in this invention can absorb sweat on the skin surface and make people feel comfortable. When impregnated with moisturizing material made of hyaluronic acid, the cotton fiber can better play its moisturizing role because hyaluronic acid can slowly release water in the gaps between the cotton fibers and keep the skin moisturized.
[0014] 3. The ice silk layer and breathable layer of this utility model are composited using ultrasonic technology because ultrasonic composite can generate local high temperature and pressure in an instant, causing the surface molecules of the ice silk layer and breathable layer to fuse together. This fusion method is relatively gentle and has a low risk of damaging the anti-fouling coating and microcapsules on the ice silk layer. Since there is no large amount of heat transfer and a long high temperature process, the negative ion material made of tourmaline powder will not change its crystal structure or chemical properties due to heat, thus ensuring the normal release of negative ions. The breathable layer and moisture-absorbing layer are composited using adhesive because adhesive composite has little impact on the performance of hyaluronic acid in the moisture-absorbing layer. This method does not require a high temperature and high pressure environment. As long as a suitable adhesive is selected, the decomposition or loss of moisturizing properties of hyaluronic acid due to heat can be avoided. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the main appearance structure of this utility model;
[0016] Figure 2 This is a schematic diagram of the appearance structure of the ice silk layer of this utility model;
[0017] Figure 3 This is a schematic diagram of the internal structure of the ice silk layer of this utility model;
[0018] Figure 4 This is a schematic diagram of the internal structure of the breathable layer of this utility model;
[0019] Figure 5 This is a schematic diagram of the internal structure of the moisture-absorbing layer of this utility model.
[0020] Explanation of the labels in the diagram:
[0021] 1. Fabric body; 101. Ice silk layer; 1011. Ice silk fiber; 1012. Anti-fouling coating; 1013. Microcapsule; 102. Breathable layer; 1021. Polyester fiber; 1022. Negative ion material; 103. Moisture-absorbing layer; 1031. Cotton fiber; 1032. Moisturizing material. Detailed Implementation
[0022] like Figures 1 to 5 As shown, the present invention relates to a composite fabric with a cooling sensation of ice silk, comprising a fabric body 1, the fabric body 1 comprising an ice silk layer 101, a breathable layer 102 and a moisture-absorbing layer 103, wherein the breathable layer 102 is arranged inside the ice silk layer 101 and the moisture-absorbing layer 103 is arranged inside the breathable layer 102.
[0023] The ice silk layer 101 includes ice silk fibers 1011, on which an anti-fouling coating 1012 is disposed. The anti-fouling coating 1012 is made of fluoride material. Microcapsules 1013 are disposed within the ice silk fibers 1011, and the microcapsules 1013 are filled with lavender essential oil. The ice silk fibers 1011 of this invention provide a cooling sensation when the user touches the outer surface of the fabric body 1. It has good thermal conductivity and can quickly remove heat, giving the skin a cool touch. The anti-fouling coating 1012, made of fluoride material, can form a protective film on the surface of the ice silk fibers 1011. Liquid stains such as beverages and sweat stains will form water droplets and roll off when they come into contact with the fabric, instead of penetrating into the interior of the ice silk fibers 1011. By designing the structure of the microcapsules 1013, the lavender essential oil filled inside can not only slowly release its scent to repel and inhibit mites, but also help users soothe their nerves and reduce anxiety, thus making it easier to fall asleep in a relaxed state.
[0024] In this embodiment of the invention, both the ice silk layer 101 and the breathable layer 102 are provided in two layers, with the two ice silk layers 101 enclosing the two breathable layers 102. A moisture-absorbing layer 103 is provided in one layer, arranged within the two breathable layers 102. This layered structure design allows the moisture-absorbing layer 103 to be arranged within the breathable layer 102, and the breathable layer 102 to be arranged within the ice silk layer 101. This ensures that the ice silk layer 101 completely encloses both the breathable layer 102 and the moisture-absorbing layer 103, completing the assembly of the fabric body 1.
[0025] In this embodiment of the invention, the ice silk layer 101 is composited with the breathable layer 102 via ultrasound, and the breathable layer 102 is composited with the moisture-absorbing layer 103 via adhesive. The ice silk layer 101 and the breathable layer 102 are composited using ultrasound because ultrasound can instantly generate localized high temperature and pressure, causing the surface molecules of the ice silk layer 101 and the breathable layer 102 to fuse together. This fusion method is relatively gentle and has a low risk of damaging the anti-fouling coating 1012 and microcapsules 1013 on the ice silk layer 101. Since there is no significant heat transfer or prolonged high-temperature process, the negative ion material 1022 made of tourmaline powder will not change its crystal structure or chemical properties due to heat, thus ensuring the normal release of negative ions. The breathable layer 102 and the moisture-absorbing layer 103 are composited using adhesive because adhesive bonding has minimal impact on the performance of the hyaluronic acid in the moisture-absorbing layer 103. This method does not require a high-temperature, high-pressure environment; as long as a suitable adhesive is selected, the decomposition or loss of moisturizing properties of the hyaluronic acid due to heat can be avoided.
[0026] In an embodiment of this invention, the breathable layer 102 comprises polyester fiber 1021, within which a negative ion material 1022 is disposed. The negative ion material 1022 is made of tourmaline powder. The breathable layer 102 made of polyester fiber 1021 of this invention has good breathability and durability. Its fiber structure is relatively compact, yet it has sufficient space for air circulation. Its molecular chain structure is regular, enabling the formation of many tiny pores. These pores facilitate air exchange. Furthermore, the negative ion material 1022 made of tourmaline powder continuously releases negative ions when in contact with the body or during sleep. These negative ions improve air quality, making people feel fresh and comfortable.
[0027] In an embodiment of this invention, the moisture-absorbing layer 103 includes cotton fibers 1031, and the cotton fibers 1031 are impregnated with a moisturizing material 1032, which is made of hyaluronic acid. The moisture-absorbing layer 103 made of cotton fibers 1031 can absorb sweat from the skin surface, providing comfort. When impregnated with the moisturizing material 1032 made of hyaluronic acid, the cotton fibers 1031 can better exert their moisturizing effect because the hyaluronic acid can slowly release moisture through the interfibers of the cotton fibers 1031, keeping the skin hydrated.
[0028] Working Principle: This embodiment provides a composite fabric with a cooling sensation reminiscent of ice silk. When a user covers themselves with a blanket made of this invention, the innermost layer of the fabric body 1, namely the moisture-absorbing layer 103, absorbs the sweat from the user's body. After absorption, the moisturizing material 1032 added to the moisture-absorbing layer 103 retains the sweat and slowly releases it, keeping the skin hydrated. The middle layer of the fabric body 1, namely the breathable layer 102, makes the whole structure breathable, effectively conducting away moisture and heat from the skin surface. The negative ion material 1 added inside... 022 can improve air quality, making people feel fresh and comfortable. The outermost ice silk layer 101 has good thermal conductivity, which can quickly remove heat from the body surface and give the skin a cool touch. The anti-fouling coating 1012 on its surface makes it difficult for external stains to adhere and is easier to remove during washing. The microcapsules 1013 inside are filled with lavender essential oil. This lavender essential oil can not only repel and inhibit mites, but also help users soothe nerves and reduce anxiety, so that people can fall asleep more easily in a relaxed state.
[0029] The embodiments disclosed herein are preferred embodiments, but are not limited thereto. Those skilled in the art can readily grasp the spirit of this utility model based on the above embodiments and make different extensions and variations. However, as long as they do not depart from the spirit of this utility model, they are all within the protection scope of this utility model.
Claims
1. A composite fabric with a cooling, ice-silk feel, comprising a fabric body (1), characterized in that: The fabric body (1) includes an ice silk layer (101), a breathable layer (102) and a moisture-absorbing layer (103). The breathable layer (102) is arranged inside the ice silk layer (101), and the moisture-absorbing layer (103) is arranged inside the breathable layer (102). The ice silk layer (101) includes ice silk fibers (1011), an anti-fouling coating (1012) is arranged on the ice silk fibers (1011), the anti-fouling coating (1012) is made of fluoride material, microcapsules (1013) are arranged inside the ice silk fibers (1011), and the microcapsules (1013) are filled with lavender essential oil.
2. The composite fabric with a cooling sensation as described in claim 1, characterized in that: The ice silk layer (101) and the breathable layer (102) are both provided in two layers. The two ice silk layers (101) wrap the two breathable layers (102) inside. The moisture-absorbing layer (103) is provided in one layer and is arranged inside the two breathable layers (102).
3. The composite fabric with a cooling sensation as described in claim 2, characterized in that: The ice silk layer (101) is combined with the breathable layer (102) by ultrasonic waves, and the breathable layer (102) is combined with the moisture-absorbing layer (103) by adhesive.
4. The ice silk cooling composite fabric according to claim 3, characterized in that: The breathable layer (102) includes polyester fiber (1021), and negative ion material (1022) is arranged inside the polyester fiber (1021). The negative ion material (1022) is made of tourmaline powder.
5. The ice silk cooling composite fabric according to claim 4, characterized in that: The moisture-absorbing layer (103) includes cotton fibers (1031) impregnated with a moisturizing material (1032) made of hyaluronic acid.