Graphene antibacterial cool fabric
The integration of antibacterial and cooling layers with graphene fabric enhances fabric performance, addressing health and comfort issues in traditional fabrics by providing effective antibacterial protection, cooling comfort, and electromagnetic shielding.
Patent Information
- Application Number
- CN202422122599.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-30
AI Technical Summary
Traditional fabrics have shortcomings in antibacterial properties and cool durability, and are difficult to meet the health and comfort needs of modern life. Chemical antibacterial agents may pose potential risks to human health. Traditional cool fabrics have defects in breathability and comfort.
Graphene antibacterial cool-sensing fabric is used, and the antibacterial fabric layer and cool-sensing fabric layer are interwoven on the graphene fabric layer, the antibacterial properties and thermal conductivity of graphene are used, combined with breathable hole design, the antibacterial properties and cool-sensing effect of the fabric is enhanced, and the stability and comfort of the fabric are improved through interlaced weaving technology.
It achieves the long-lasting antibacterial effect of the fabric, quickly takes away the skin heat, keeps it cool and comfortable, improves breathability and comfort, enhances the stability and durability of the fabric, and provides a healthy and comfortable wearing experience.
Smart Images

Figure CN223100178U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fabrics, and in particular to a graphene antibacterial cool fabric. Background Art
[0002] As people's pursuit of quality of life continues to improve, the requirements for fabrics are becoming increasingly stringent. Traditional fabrics can no longer meet the diverse needs of modern life. In daily wear and use, the growth of bacteria often causes trouble to people. Especially in hot and humid environments, bacteria multiply rapidly, easily causing various skin problems and affecting people's health. The antibacterial properties of traditional fabrics are limited, and it is often necessary to add chemical antibacterial agents to achieve a certain antibacterial effect, but chemical antibacterial agents may pose potential risks to human health, and the durability of antibacterial effects is also difficult to guarantee. And with global warming, people's demand for cool fabrics in hot seasons is becoming stronger. Traditional cool fabrics usually use a single cool technology, such as using special fiber materials or coatings to achieve a cool effect, but this cool feeling is often not long-lasting, and there are deficiencies in wearing comfort and breathability.
[0003] In summary, how to achieve fabrics that can meet people's needs for healthy and comfortable wearing is a problem that technical personnel in this field urgently need to solve. Utility Model Content
[0004] In order to realize that fabrics can meet people's needs for healthy and comfortable wearing, the present application provides a graphene antibacterial cool fabric.
[0005] The present application provides a graphene antibacterial cool fabric adopts the following technical solution:
[0006] A graphene antibacterial cool fabric comprises a graphene fabric layer, an antibacterial fabric layer and a cool fabric layer, wherein the antibacterial fabric layer is interwoven with one side of the graphene fabric layer, and the cool fabric layer is interwoven with one side of the graphene fabric layer away from the antibacterial fabric layer.
[0007] By adopting the above technical solution, adding an antibacterial fabric layer to the graphene fabric layer greatly improves the overall antibacterial performance. The antibacterial fabric layer can effectively inhibit the growth of microorganisms such as bacteria and fungi, prevent odor caused by bacterial growth, and bring health protection to the wearer. Whether in daily wear or in a specific environment, the clothes can be kept clean and hygienic. At the same time, adding a cool fabric layer to the graphene fabric layer gives the fabric a cool effect. In hot weather or when worn for a long time, the cool fabric layer can quickly take away the heat on the surface of the skin, making the human body feel cool and comfortable, effectively alleviating the stuffiness caused by high temperature, and helping the human body to dissipate heat better. Moreover, the graphene fabric itself has good breathability, and the combination of antibacterial fabric and cool fabric allows air to circulate freely, which helps to discharge moisture and heat generated by the human body, so that the wearer always stays dry, thereby ensuring that the fabric can meet people's needs for healthy and comfortable wearing.
[0008] Furthermore, the graphene fabric layer includes a first warp yarn layer and a first weft yarn layer, the first warp yarn layer includes a plurality of first warp yarns arranged in parallel, the first weft yarn layer includes a plurality of first weft yarns arranged in parallel, and the first warp yarns are connected by an interlaced weaving process.
[0009] By adopting the above technical solution, the first warp yarn and the first weft yarn are interlaced and woven to form a tight grid structure, so that the fabric can withstand tension and pressure from different directions and is not easy to deform or break. Whether it is worn daily or in a more severe use environment, it can maintain a good shape. By interlacing and weaving the first warp yarn and the first weft yarn of different materials, colors and thicknesses, a unique visual experience can be presented to meet different aesthetic needs. At the same time, this weaving method can also make the surface of the fabric smoother and smoother, which is conducive to improving the overall texture. Moreover, by using the mutual support and restraint of the first warp yarn and the first weft yarn, the tensile and friction resistance of the fabric are enhanced, and the service life of the fabric is extended. Therefore, the method of interlacing and weaving the first warp yarn and the first weft yarn is not only conducive to ensuring the stability of the fabric height, but also can create a rich and diverse texture and pattern effect, and also help to improve the strength and wear resistance of the fabric.
[0010] Furthermore, the antibacterial fabric layer includes a second warp yarn layer and a second weft yarn layer, the second warp yarn layer includes a plurality of second warp yarns arranged in parallel, the second weft yarn layer includes a plurality of second weft yarns arranged in parallel, the second warp yarns are connected by interlaced weaving with the second weft yarns, and the second warp yarns are connected by interlaced weaving with the first weft yarns.
[0011] By adopting the above technical solution, the antibacterial fabric layer formed by interlacing and weaving the second warp yarn and the second weft yarn can effectively inhibit the growth of bacteria and provide reliable antibacterial protection for users. The interlaced weaving structure gives the fabric a soft touch, which is very comfortable when in contact with the skin and does not cause irritation or discomfort. At the same time, good air permeability allows air to flow freely in the fabric, allowing the skin to breathe, greatly reducing the feeling of stuffiness, and the second warp yarn and the first weft yarn are combined in an interlaced manner, which can also increase the connection strength between the graphene fabric layer and the antibacterial fabric layer, increasing the firmness and durability of the fabric during use.
[0012] Furthermore, the cool fabric layer includes a third warp yarn layer and a third weft yarn layer, the third warp yarn layer includes a plurality of third warp yarns arranged in parallel, the third weft yarn layer includes a plurality of third weft yarns arranged in parallel, the third warp yarns are connected to the third weft yarns by interlacing and weaving, and the third weft yarns are connected to the first warp yarns by interlacing and weaving.
[0013] By adopting the above technical solution, the cool fabric layer formed by interlacing and weaving the third warp yarn layer and the third weft yarn layer can quickly dissipate body heat, giving the wearer a continuous cool feeling. The thermal conductivity and moisture conductivity of the cool fabric layer can not only quickly conduct the heat generated by the human body, but also quickly conduct the sweat of the human body to the outer layer of the fabric. The rapid evaporation of sweat will take away a large amount of heat, further enhancing the cool and comfortable experience.
[0014] Furthermore, air holes are formed at the interwoven connections between the first warp yarn layer and the first weft yarn layer and the second warp yarn and the second weft yarn as well as the third warp yarn and the third weft yarn, and the air holes penetrate the graphene fabric layer, the antibacterial fabric layer, and the cool fabric layer.
[0015] By adopting the above technical solution, the air holes formed at the interweaving connection of the weft yarn layer and the weft yarn layer greatly enhance the breathability of the fabric. The air holes can promote the free flow of air in the fabric, allowing the skin to breathe fresh air smoothly. Whether in daily activities or in more intense exercise, it can effectively regulate human body temperature, reduce stuffiness and discomfort, and greatly improve the comfort of wearing. At the same time, when the human body sweats, the air holes can quickly discharge moisture to keep the skin dry. The air holes can meet the user's ventilation needs in high-intensity activities and improve sports performance and outdoor experience.
[0016] Furthermore, the first warp yarn and the first weft yarn are both made by blending graphene fiber and elastic fiber.
[0017] By adopting the above technical solution, the first warp yarn made of blended graphene fiber and elastic fiber and the first weft yarn can fully utilize the advantages of graphene fiber and elastic fiber. It can not only enhance the strength of the yarn, ensuring the durability of the first warp yarn and the first weft yarn during use, but also the elastic fiber endows the yarn with good elasticity, enabling the fabric to stretch and recover within a certain range, conforming to the movement and morphological changes of the human body, providing a comfortable wearing experience without a sense of tightness or restraint. Moreover, it can quickly and evenly transfer heat, endowing the fabric with good temperature regulation function. In a cold environment, it can preserve the heat dissipated by the human body, playing a role in keeping warm; in a hot environment, it can quickly dissipate the heat and keep cool. In addition, graphene also has good antibacterial properties, which can effectively inhibit the growth and reproduction of bacteria, reduce the odor and health problems caused by bacterial growth, and make the fabric more hygienic.
[0018] Further, the elastic fiber includes spandex fiber.
[0019] By adopting the above technical solution, configuring the elastic fiber as spandex fiber, in terms of elastic properties, spandex exhibits extremely excellent characteristics. It has high extensibility and can be stretched to - times its original length, and has a high recovery rate after stretching, and can quickly return to its original state. This enables the fabric containing spandex fiber to closely conform to the human body surface, change with the movement and morphological changes of the human body, and has little binding force on the human body, providing great comfort for the wearer. From the perspective of durability, spandex fiber has excellent durability. It can withstand multiple stretches and recoveries without being easily damaged, maintaining its elastic properties stable for a long time, which makes the fabric using spandex fiber have a long service life. In terms of combination with other fibers, spandex fiber has good compatibility. It can be blended with various natural fibers and synthetic fibers, and adjust the proportion of spandex according to different requirements and application scenarios to achieve the best elastic effect and other performance requirements.
[0020] Further, the second warp yarn is made of blended silver ion fiber and cotton fiber, and the second weft yarn is made of blended chitin fiber and cotton fiber.
[0021] By adopting the above technical solution, the second warp yarn made of blended silver ion fiber and cotton fiber can not only effectively inhibit the growth of various bacteria, fungi and viruses, but also improve the softness and hygroscopicity of the second warp yarn. The second weft yarn made of blended chitin fiber and cotton fiber can not only make full use of the natural antibacterial ability of chitin fiber, but also combine the natural skin-friendly and soft and comfortable ability of cotton fiber. In this way, it not only gives play to the antibacterial advantages of silver ion fiber and chitin, but also combines the comfortable characteristics of cotton fiber, making the antibacterial fabric layer more comfortable and pleasant during use.
[0022] Furthermore, the third warp yarn is made of a blend of mica fiber and cotton fiber, and the third weft yarn is made of a blend of jade fiber and polyester fiber.
[0023] By adopting the above technical solution, the third warp yarn made of a blend of mica fiber and cotton fiber can not only endow the fabric with good heat conduction performance, but also improve the softness and comfort of the fabric. The blended third warp yarn combines the functionality of mica fiber and the comfort of cotton fiber, enabling the fabric to have a cool feeling while also providing users with a comfortable wearing experience. The third weft yarn made of a blend of jade fiber and polyester fiber can not only endow the fabric with a unique cool feeling effect, but also increase the strength and durability of the fabric. The blended third weft yarn can also combine other characteristics of the two fibers, such as the wrinkle resistance of polyester fiber and certain health care effects of jade fiber, bringing more functions and values to the fabric. In this way, it not only gives play to the heat conduction advantages of jade fiber and mica fiber, combines the comfort characteristics of cotton fiber, but also has the strength and abrasion resistance of polyester fiber, making the cool feeling fabric layer have more functions and values during use.
[0024] Furthermore, a radiation protection layer is interwoven on the side of the antibacterial fabric layer facing away from the graphene fabric layer.
[0025] By adopting the above technical solution, the radiation protection layer interwoven on the antibacterial fabric layer can play a powerful radiation protection role, effectively blocking electromagnetic radiation generated by mobile phones, computers, electrical appliances, etc., and greatly reducing the potential harm of radiation to the human body. It provides important protection for human health and reduces the risk of various health problems that may be caused by long-term exposure to radiation. And the radiation protection layer can also be well integrated with the antibacterial fabric layer and other fabric layers, maintaining a soft touch and good air permeability. When users wear or use products made of this fabric, they can enjoy the benefits of radiation protection and antibacterial without feeling discomfort, greatly improving the use experience.
[0026] Furthermore, a skin-friendly layer is interwoven on the side of the cool feeling fabric layer facing away from the graphene fabric layer.
[0027] By adopting the above technical solution, the skin-friendly layer interwoven on the cool feeling fabric layer greatly improves the overall wearing experience. It can also reduce the friction between the fabric and the skin, further enhancing the comfort of the fabric. The combination of the skin-friendly layer and the cool feeling fabric layer can not only quickly take away the body heat, bringing a cool feeling. But also provide a gentle protection for the skin while maintaining the cool feeling.
[0028] The beneficial effects achieved:
[0029] This application greatly improves the overall antibacterial performance by adding an antibacterial fabric layer on the graphene fabric layer. The antibacterial fabric layer can effectively inhibit the growth of microorganisms such as bacteria and fungi, prevent the generation of odors due to bacterial reproduction, and provide health protection for the wearer. Whether in daily wear or in a specific environment, the clothing can maintain cleanliness and hygiene. At the same time, adding a cool-sensation fabric layer on the graphene fabric layer endows the fabric with a cool-sensation effect. In hot weather or during long-term wear, the cool-sensation fabric layer can quickly take away the heat on the skin surface, making the human body feel cool and comfortable, effectively relieving the stuffy feeling brought by high temperature, and helping the human body to dissipate heat better. Moreover, the graphene fabric itself has good air permeability. Coupled with the cooperation of the antibacterial fabric and the cool-sensation fabric, air can circulate freely, which helps to discharge the moisture and heat generated by the human body, keeping the wearer always dry. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 is a schematic three-dimensional structure diagram of an embodiment of this application.
[0031] Figure 2 is a schematic partial structure decomposition diagram of an embodiment of this application.
[0032] Figure 3 is a schematic graphene fabric layer structure decomposition diagram of an embodiment of this application.
[0033] Figure 4 is a schematic antibacterial fabric layer structure decomposition diagram of an embodiment of this application.
[0034] Figure 5 is a schematic cool-sensation fabric layer structure decomposition diagram of an embodiment of this application.
[0035] Figure 6 is a schematic plan view of an embodiment of this application.
[0036] Figure 7 is Figure 1 a schematic plan view of the structure in the A direction in
[0037] Figure 8 is Figure 1 a schematic plan view of the structure in the B direction in
[0038] Description of reference numerals: 100, graphene fabric layer; 101, first warp yarn layer; 1011, first warp yarn; 102, first weft yarn layer; 1021, first weft yarn; 103, ventilation holes; 200, antibacterial fabric layer; 201, second warp yarn layer; 2011, second warp yarn; 202, second weft yarn layer; 2021, second weft yarn; 300, cool feeling fabric layer; 301, third warp yarn layer; 3011, third warp yarn; 302, third weft yarn layer; 3021, third weft yarn; 400, radiation protection layer; 500, skin-friendly layer. Detailed implementation manners
[0039] The following further describes this application in conjunction with Figure 1-8 the accompanying drawings for a more detailed explanation.
[0040] In the description of this application, it should be noted that the orientation or positional relationship indicated by terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings. This 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 therefore should not be construed as a limitation to the present utility model. In addition, the terms "first", "second", and "third" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0041] In the description of this application, it should be noted that unless otherwise clearly specified and defined, the terms "installed", "connected", and "coupled" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances.
[0042] The embodiments of this application disclose a graphene antibacterial and cool feeling fabric.
[0043] Please refer to Figures 1 to 8, in an embodiment of the present application, a graphene antibacterial and cool-sensation fabric includes a graphene fabric layer 100, an antibacterial fabric layer 200, and a cool-sensation fabric layer 300. The antibacterial fabric layer 200 is interwoven on one side of the graphene fabric layer 100, and the cool-sensation fabric layer 300 is interwoven on the side of the graphene fabric layer 100 that is opposite to the antibacterial fabric layer 200. Adding the antibacterial fabric layer 200 to the graphene fabric layer 100 greatly improves the overall antibacterial performance. The antibacterial fabric layer 200 can effectively inhibit the growth of microorganisms such as bacteria and fungi, prevent the generation of odors due to bacterial reproduction, and bring health protection to the wearer. Whether in daily wear or in a specific environment, the cleanliness and hygiene of the clothing can be maintained. At the same time, adding the cool-sensation fabric layer 300 to the graphene fabric layer 100 endows the fabric with a cool-sensation effect. In hot weather or when worn for a long time, the cool-sensation fabric layer 300 can quickly take away the heat on the skin surface, making the human body feel cool and comfortable, effectively relieving the stuffy feeling brought by high temperature, and helping the human body to dissipate heat better. Moreover, the graphene fabric itself has good air permeability. Coupled with the cooperation of the antibacterial fabric and the cool-sensation fabric, air can circulate freely, which helps to discharge the moisture and heat generated by the human body, keeping the wearer always dry.
[0044] Please refer to Figures 1 to 8 , in an embodiment of the present application, the graphene fabric layer 100 includes a first warp yarn layer 101 and a first weft yarn layer 102. The first warp yarn layer 101 includes multiple first warp yarns 1011 arranged in parallel, and the first weft yarn layer 102 includes multiple first weft yarns 1021 arranged in parallel. The first warp yarns 1011 and the first weft yarns 1021 are interwoven and connected. The first warp yarns 1011 and the first weft yarns 1021 are interwoven to form a tight grid structure, enabling the fabric to withstand tensile and compressive forces from different directions and being not easily deformed or damaged. Whether in daily wear or in a relatively harsh use environment, it can maintain a good shape. By interweaving the first warp yarns 1011 and the first weft yarns 1021 with different materials, colors, and thicknesses, a unique visual experience can be presented, meeting different aesthetic needs. At the same time, this weaving method can also make the fabric surface smoother and flatter, which is beneficial to improving the overall texture. Moreover, by the mutual support and restraint of the first warp yarns 1011 and the first weft yarns 1021, the tensile and friction resistance of the fabric is enhanced, and the service life of the fabric is extended. Therefore, the method of interweaving and connecting the first warp yarns 1011 and the first weft yarns 1021 is not only beneficial to ensuring the high stability of the fabric, but also can create rich and diverse texture and pattern effects, and is also helpful to improve the strength and wear resistance of the fabric.
[0045] Please refer to Figures 1 to 8In one embodiment of the present application, the antibacterial fabric layer 200 includes a second warp yarn layer 201 and a second weft yarn layer 202, the second warp yarn layer 201 includes a plurality of second warp yarns 2011 arranged in parallel, the second weft yarn layer 202 includes a plurality of second weft yarns 2021 arranged in parallel, the second warp yarns 2011 and the second weft yarns 2021 are interlaced and woven, and the second warp yarns 2011 and the first weft yarns 1021 are interlaced and woven. The antibacterial fabric layer 200 formed by interlacing and weaving the second warp yarns 2011 and the second weft yarns 2021 can effectively inhibit bacterial growth and provide reliable antibacterial protection for users. The interlaced woven structure gives the fabric a soft touch, which is very comfortable when in contact with the skin and does not cause irritation or discomfort. At the same time, good air permeability allows air to flow freely in the fabric, allowing the skin to breathe, greatly reducing the feeling of stuffiness, and the second warp yarn 2011 and the first weft yarn 1021 are combined in an interwoven manner, which can also increase the connection strength between the graphene fabric layer 100 and the antibacterial fabric layer 200, thereby increasing the firmness and durability of the fabric during use.
[0046] Please refer to Figures 1 to 8 In one embodiment of the present application, the cool fabric layer 300 includes a third warp yarn layer 301 and a third weft yarn layer 302, the third warp yarn layer 301 includes a plurality of third warp yarns 3011 arranged in parallel, the third weft yarn layer 302 includes a plurality of third weft yarns 3021 arranged in parallel, the third warp yarn 3011 is interlaced and woven with the third weft yarn 3021, and the third weft yarn 3021 is interlaced and woven with the first warp yarn 1011. The cool fabric layer 300 formed by the interlaced weaving connection of the third warp yarn layer 301 and the third weft yarn layer 302 can quickly dissipate body heat and bring a continuous cool feeling to the wearer. The thermal conductivity and moisture conductivity of the cool fabric layer 300 can not only allow the heat generated by the human body to be quickly conducted away, but also allow the human body sweat to be quickly conducted to the outer layer of the fabric, and the rapid volatilization of sweat will take away a large amount of heat, further enhancing the cool and comfortable experience.
[0047] Please refer to Figures 1 to 8, in an embodiment of the present application, air holes 103 are formed at the intersection joints of the first warp yarn layer 101 and the first weft yarn layer 102 with the second warp yarn 2011 and the second weft yarn 2021, as well as the third warp yarn 3011 and the third weft yarn 3021. The air holes 103 penetrate through the graphene fabric layer 100, the antibacterial fabric layer 200, and the cool-sensation fabric layer 300. The air holes 103 formed at the intersection joints of the warp yarn layer and the weft yarn layer greatly enhance the breathability of the fabric. The air holes 103 can promote the free flow of air in the fabric, allowing the skin to breathe fresh air smoothly. Whether in daily activities or in a more intense exercise state, it can effectively regulate the body temperature, reduce the stuffiness and discomfort, and greatly improve the wearing comfort. At the same time, when the human body sweats, the air holes can quickly discharge the moisture and keep the skin dry. The air holes 103 can meet the breathability requirements of users in high-intensity activities and improve the sports performance and outdoor experience.
[0048] Please refer to Figures 1 to 8 , in an embodiment of the present application, both the first warp yarn 1011 and the first weft yarn 1021 are made of a blend of graphene fibers and elastic fibers. The first warp yarn 1011 and the first weft yarn 1021 made of a blend of graphene and elastic fibers have many important functions.
[0049] In terms of performance improvement, the addition of graphene combined with elastic fibers greatly enhances the strength of the yarn. Graphene itself has extremely high strength, making the warp yarns and weft yarns more durable during use, not easily damaged, able to withstand greater tensile and frictional forces, and extending the service life of the fabric. At the same time, the elastic fibers endow the yarn with good elasticity, enabling the fabric to stretch and recover within a certain range, conforming to the movement and morphological changes of the human body, providing a comfortable wearing experience, and not generating a tight or restrictive feeling.
[0050] In terms of functional characteristics, the unique properties of graphene bring many advantages to the fabric. Graphene has excellent thermal conductivity and can transfer heat quickly and evenly, enabling the fabric to have good temperature regulation function. In a cold environment, it can preserve the heat dissipated by the human body and play a role in keeping warm; in a hot environment, it can quickly dissipate the heat and keep cool. In addition, graphene also has good antibacterial properties, which can effectively inhibit the growth and reproduction of bacteria, reduce the odor and health problems caused by bacterial growth, and make the fabric more hygienic.
[0051] In terms of the overall effect, the fabric woven from such blended warp and weft yarns combines various properties such as strength, elasticity, heat conduction, and antibacterial properties, and is suitable for various different application scenarios. Whether it is clothing for daily wear, or in the fields of sports equipment, household items, etc., it can exert its unique advantages and bring more convenience and comfort to people's lives.
[0052] In a specific embodiment of the present application, the elastic fiber includes spandex fiber. In terms of elastic properties, spandex exhibits extremely excellent characteristics. It has high extensibility and can be stretched to 4-7 times its original length, and has a high recovery rate after stretching and can quickly return to its original state. This enables the fabric containing spandex fiber to closely fit the human body surface, change with the movement and shape of the human body, and has very little restraint on the human body, providing great comfort for the wearer. Whether it is slight movements in daily activities or large stretches during strenuous exercise, spandex fiber can ensure that the fabric always maintains good elasticity and does not affect the free movement of the body.
[0053] From the perspective of durability, spandex fiber has excellent durability. It can withstand multiple stretches and recoveries without being easily damaged, maintaining its elastic properties stable for a long time. This makes the fabric using spandex fiber have a long service life, is not prone to weakening or loss of elasticity, and reduces the waste caused by frequent clothing replacement.
[0054] In terms of combination with other fibers, spandex fiber has good compatibility. It can be blended with various natural fibers and synthetic fibers, and adjust the proportion of spandex according to different requirements and application scenarios to achieve the best elastic effect and other performance requirements. For example, blending with cotton fiber can increase the elasticity and comfort of cotton fabric; blending with polyester fiber can improve the strength and elastic recovery of the fabric.
[0055] In addition, spandex fiber also has certain moisture absorption and breathability. Although not as significant as some specialized moisture-absorbing and breathable fibers, to a certain extent, it can help keep the skin dry and improve the comfort of wearing.
[0056] Using spandex fiber as the elastic fiber has outstanding advantages in terms of elastic properties, durability, compatibility, as well as moisture absorption and breathability, providing a reliable choice for the design and production of various textiles.
[0057] Please refer to Figures 1 to 8 , in an embodiment of the present application, the second warp yarn 2011 is made of a blend of silver ion fiber and cotton fiber. The second warp yarn 2011 made of a blend of silver ion fiber and cotton fiber has significant advantages in many aspects.
[0058] In terms of antibacterial performance, it is extremely outstanding. Silver ions have a powerful antibacterial ability and can effectively inhibit the growth of various bacteria, fungi, and viruses. After being blended with cotton fibers, this powerful antibacterial performance is retained, enabling the second warp yarn 2011 to have a lasting antibacterial effect. In daily use, whether in contact with the skin or exposed to the external environment, it can continuously exert its antibacterial effect and reduce bacterial growth. Even after multiple washes, the antibacterial performance will not be significantly weakened, ensuring the long-term hygiene and health of the fabric.
[0059] From the perspective of comfort, the addition of cotton fibers endows the warp yarn with good softness and moisture absorption. Cotton fibers are naturally skin-friendly, soft and comfortable, and feel gentle when in contact with the skin. At the same time, it has good moisture absorption, can absorb the sweat and moisture excreted by the human body, and keep the skin dry. After being blended with silver ion fibers, it not only gives play to the antibacterial advantages of silver ions but also combines the comfortable characteristics of cotton fibers, providing a comfortable experience for the wearer.
[0060] In terms of durability, the blending of the two fibers enhances the strength and abrasion resistance of the warp yarn. Silver ion fibers usually have a certain strength, and cotton fibers are also known for their durability. The blended warp yarn can withstand external forces such as pulling and friction more during use, is not easily damaged, and extends the service life of the fabric.
[0061] In addition, this blended warp yarn also has certain advantages in appearance. Through different textile processes and post-finishing methods, various textures and colors can be presented to meet different design requirements and aesthetic demands.
[0062] The second warp yarn 2011 made by blending silver ion fibers and cotton fibers performs excellently in terms of antibacterial performance, comfort, durability, and appearance, providing a high-quality material choice for the production of various textiles.
[0063] Please also refer to Figures 1 to 8 , in an embodiment of the present application, the second weft yarn 2021 is made by blending chitin fibers and cotton fibers. The second weft yarn 2021 made by blending chitin fibers and cotton fibers has many significant advantages.
[0064] In terms of antibacterial performance, chitin fibers exhibit a powerful natural antibacterial ability. It has a significant inhibitory effect on various bacteria and fungi, can effectively reduce bacterial growth, and reduce odors and health risks caused by bacteria. After being blended with cotton fibers, this antibacterial performance continues, endowing the second weft yarn 2021 with a lasting antibacterial effect. Whether in daily wear or in a specific environment, it can provide hygiene and health protection for users.
[0065] From the perspective of comfort, the addition of cotton fiber brings a soft touch and good hygroscopicity to the weft yarn. Cotton fiber is naturally skin-friendly, soft and comfortable, feeling gentle when in contact with the skin. At the same time, it can absorb the sweat and moisture excreted by the human body, keep the skin dry, and improve the wearing comfort. The blending of chitin fiber and cotton fiber not only gives play to the antibacterial advantages of chitin but also combines the comfort characteristics of cotton fiber, making the second weft yarn 2021 more comfortable and pleasant to use.
[0066] In terms of environmental friendliness, chitin fiber is a natural biodegradable material, which is friendly to the environment. After blending with cotton fiber, the dependence on synthetic fiber is reduced, and the negative impact on the environment is lowered. At the same time, more environmentally friendly processes can also be adopted in the production process of this blended weft yarn, further reducing environmental pollution.
[0067] In terms of durability, the blending of the two fibers enhances the strength and abrasion resistance of the weft yarn. Chitin fiber has a certain strength and toughness, and cotton fiber is also well-known for its durability. The blended weft yarn can better withstand external forces such as pulling and friction during use, is not easily damaged, and extends the service life of the fabric.
[0068] In addition, this blended weft yarn also has certain characteristics in appearance. Through different textile processes and post-treatment methods, it can present unique textures and colors, meeting different design needs and aesthetic requirements.
[0069] The second weft yarn 2021 made by blending chitin fiber and cotton fiber performs excellently in terms of antibacterial performance, comfort, environmental friendliness, durability and appearance, providing a high-quality material choice for the production of various textiles.
[0070] Please also refer to Figures 1 to 8 , in an embodiment of the present application, the third warp yarn 3011 is made by blending mica fiber and cotton fiber. The third warp yarn 3011 made by blending mica fiber and cotton fiber can not only endow the fabric with good heat conduction performance but also improve the softness and comfort of the fabric.
[0071] On the one hand, mica fiber has excellent heat conductivity and can quickly dissipate the heat generated by the human body, bringing a cool feeling. Especially in a hot environment or during high-intensity activities, it can effectively relieve the stuffy feeling. After blending with cotton fiber, this heat conduction performance is retained, making the fabric made of the third warp yarn 3011 have good heat dissipation effect.
[0072] On the other hand, the addition of cotton fibers brings a natural soft touch to the warp yarns. Cotton fibers are soft and skin-friendly, comfortable to contact with the skin, and can reduce the irritation of friction to the skin. The third warp yarn 3011 after blending combines the functionality of mica fibers and the comfort of cotton fibers, enabling the fabric to have a cool feeling while also providing a comfortable wearing experience for users.
[0073] In addition, cotton fibers also have good hygroscopicity, can absorb the sweat discharged by the human body, keep the skin dry, and further improve the comfort of the fabric.
[0074] Please refer to Figures 1 to 8 , in an embodiment of the present application, the third weft yarn 3021 is made by blending jade fibers and polyester fibers. The third weft yarn 3021 made by blending jade fibers and polyester fibers can not only endow the fabric with a unique cool feeling effect, but also increase the strength and durability of the fabric.
[0075] On the one hand, jade fibers have good heat conduction performance, can quickly absorb and dissipate the heat of the human body, and bring a cool and comfortable wearing feeling. Especially in hot weather or high-temperature environments, this cool feeling characteristic can effectively relieve the stuffy discomfort and improve the wearing comfort. The third weft yarn 3021 after blending incorporates the cool feeling advantage of jade fibers, making the fabric have excellent heat dissipation performance.
[0076] On the other hand, polyester fibers have high strength and wear resistance. After blending with jade fibers, they can significantly enhance the strength and durability of the fabric. This enables the fabric to withstand external forces such as friction and pulling more easily during daily use, is not easily damaged, and extends the service life of the fabric. At the same time, polyester fibers also have good shape retention, which can help the fabric maintain a good shape and appearance and is not easily deformed.
[0077] In addition, this blended third weft yarn 3021 can also combine other characteristics of the two fibers, such as the wrinkle resistance of polyester fibers and certain health care effects of jade fibers, etc., bringing more functions and values to the fabric.
[0078] Please refer to Figures 1 to 8 , in an embodiment of the present application, a radiation protection layer 400 is interwoven on the side of the antibacterial fabric layer 200 facing away from the graphene fabric layer 100. The radiation protection layer 400 interwoven on the antibacterial fabric layer 200 has many important functions.
[0079] In terms of the protective function, the radiation protection layer can play a powerful role in preventing radiation. In the current era when electronic devices are widely used, people are constantly exposed to various electromagnetic radiation environments. The radiation protection layer can effectively block the electromagnetic radiation generated by mobile phones, computers, electrical appliances, etc., greatly reducing the potential harm of radiation to the human body. It provides important protection for human health and reduces the risk of various health problems that may be caused by long-term exposure to radiation, such as insomnia, headaches, and decreased immunity.
[0080] In terms of the combination with the antibacterial fabric layer, the two complement each other. The antibacterial fabric layer itself has the function of inhibiting the growth of bacteria and maintaining cleanliness, and the addition of the radiation protection layer further enhances the functionality of the entire fabric. This intertwined structure enables the fabric to have antibacterial properties while adding the characteristic of radiation protection, providing more comprehensive protection for users. Whether in daily life or in some specific working environments, such as offices, hospitals, etc., this multifunctional fabric can meet people's needs for health and safety.
[0081] In terms of the use experience, the presence of the radiation protection layer does not affect the comfort of the fabric. It can be well integrated with the antibacterial fabric layer and other fabric layers, maintaining a soft touch and good breathability. When users wear or use products made of this fabric, they can enjoy the benefits of radiation protection and antibacterial properties without feeling discomfort, greatly improving the use experience.
[0082] The radiation protection layer 400 intertwined on the antibacterial fabric layer 200 performs excellently in terms of protective function, combination with the antibacterial layer, and use experience, providing people with a functional fabric with high added value.
[0083] Please also refer to Figures 1 to 8 , in an embodiment of the present application, a skin-friendly layer 500 is intertwined on the side of the cool-sensing fabric layer 300 facing away from the graphene fabric layer 100. Intertwining the skin-friendly layer 500 on the cool-sensing fabric layer 300 has significant effects in many aspects.
[0084] In terms of comfort, the skin-friendly layer 500 greatly enhances the overall wearing experience. The skin-friendly layer 500 is generally made of soft fiber materials, which can bring an extremely comfortable touch when contacting the skin, as if being gently cared for. Whether in daily activities or during rest and sleep, it will not cause any irritation or discomfort to the skin, keeping people in a relaxed state at all times. At the same time, the skin-friendly layer 500 can also reduce the friction between the fabric and the skin, further enhancing the comfort. Especially for people with relatively sensitive skin, it is a considerate design.
[0085] From a functional perspective, the combination of the skin-friendly layer and the cool-sensing fabric layer complements each other perfectly. The cool-sensing fabric layer itself has good heat dissipation performance, which can quickly take away the body heat and bring a cool feeling. While the skin-friendly layer maintains this cool feeling, it provides a gentle protection for the skin. It can prevent the discomfort that may be caused by the direct contact between the cool-sensing fabric layer and the skin, and helps to maintain the moisture of the skin, avoiding skin dryness caused by excessive heat dissipation. In the hot summer or during high-intensity exercise, this combination can keep the user always fresh and comfortable, improving the durability and pleasure of activities.
[0086] In addition, the skin-friendly layer can also add aesthetic value to the entire fabric. Skin-friendly layer materials with different colors, textures and textures can be selected and matched with the cool-sensing fabric layer to create a rich and diverse visual effect. Whether it is a simple and fashionable design or a gorgeous and exquisite style, it can be achieved through the selection and matching of the skin-friendly layer, meeting the aesthetic needs of different people.
[0087] The above are all the preferred embodiments of this application, and the protection scope of this application is not limited by this. Therefore, all equivalent changes made according to the structure, shape and principle of this application shall be covered within the protection scope of this application.
Claims
1. A graphene antibacterial and cool-sensation fabric, characterized in that: The invention comprises a graphene fabric layer (100), an antibacterial fabric layer (200), and a cool fabric layer (300), wherein the antibacterial fabric layer (200) is interwoven with one side of the graphene fabric layer (100), and the cool fabric layer (300) is interwoven with one side of the graphene fabric layer (100) that is away from the antibacterial fabric layer (200).
2. The graphene antibacterial and cool-sensation fabric according to claim 1, wherein: The graphene fabric layer (100) comprises a first warp yarn layer (101) and a first weft yarn layer (102); the first warp yarn layer (101) comprises a plurality of first warp yarns (1011) arranged in parallel; the first weft yarn layer (102) comprises a plurality of first weft yarns (1021) arranged in parallel; the first warp yarns (1011) and the first weft yarns (1021) are connected by interlaced weaving.
3. The graphene antibacterial and cool-sensation fabric according to claim 2, wherein: The antibacterial fabric layer (200) comprises a second warp yarn layer (201) and a second weft yarn layer (202); the second warp yarn layer (201) comprises a plurality of second warp yarns (2011) arranged in parallel; the second weft yarn layer (202) comprises a plurality of second weft yarns (2021) arranged in parallel; the second warp yarns (2011) and the second weft yarns (2021) are connected by interlaced weaving; and the second warp yarns (2011) and the first weft yarns (1021) are connected by interlaced weaving.
4. The graphene antibacterial and cool-sensation fabric according to claim 3, wherein: The cool fabric layer (300) comprises a third warp yarn layer (301) and a third weft yarn layer (302); the third warp yarn layer (301) comprises a plurality of third warp yarns (3011) arranged in parallel; the third weft yarn layer (302) comprises a plurality of third weft yarns (3021) arranged in parallel; the third warp yarns (3011) and the third weft yarns (3021) are connected by interlaced weaving; and the third weft yarns (3021) and the first warp yarns (1011) are connected by interlaced weaving.
5. The graphene antibacterial and cool-sensation fabric according to claim 4, wherein: Air holes (103) are formed at the interlaced connection between the first warp yarn layer (101) and the first weft yarn layer (102) and the second warp yarn (2011) and the second weft yarn (2021), and the third warp yarn (3011) and the third weft yarn (3021), and the air holes (103) penetrate the graphene fabric layer (100), the antibacterial fabric layer (200), and the cool fabric layer (300).
6. The graphene antibacterial and cool-sensation fabric according to claim 2, wherein: The first warp yarn (1011) and the first weft yarn (1021) are both made by blending graphene fiber and elastic fiber, and the elastic fiber includes spandex fiber.
7. The graphene antibacterial and cool-sensation fabric according to claim 3, wherein: The second warp yarn (2011) is made of a blend of silver ion fiber and cotton fiber, and the second weft yarn (2021) is made of a blend of chitin fiber and cotton fiber.
8. The graphene antibacterial and cool-sensation fabric according to claim 4, wherein: The third warp yarn (3011) is made of a blend of mica fiber and cotton fiber, and the third weft yarn (3021) is made of a blend of jade fiber and polyester fiber.
9. A graphene antibacterial and cool-sensing fabric according to any one of claims 1-8, characterized in that: A radiation protection layer (400) is interwoven on a side of the antibacterial fabric layer (200) that is away from the graphene fabric layer (100).
10. A graphene antibacterial and cool-sensation fabric according to any one of claims 1-8, characterized in that: On one side of the cool feeling fabric layer (300) facing away from the graphene fabric layer (100), a skin-friendly layer (500) is interwoven.