A high-elastic antibacterial fabric based on silver fibers
Patent Information
- Application Number
- CN202522402048.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-12
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-11-12
AI Technical Summary
[0003]本实用新型的目的在于提供一种基于银纤维的高弹抗菌面料,旨在解决现有技术中传统的内衣面料弹性和抗菌性差的问题
[0012] This invention provides a high-elasticity antibacterial fabric based on silver fiber. Compared to existing technologies, spandex, as an elastic fiber, is added to both the warp and weft yarns, allowing the fabric to exhibit excellent elasticity in both the horizontal and vertical directions. The fabric can stretch and contract freely with body movement, providing the wearer with a high degree of freedom of movement. The silver fiber in the warp yarns and the bamboo fiber in the weft yarns work together to form a multi-layered antibacterial defense line, possessing highly efficient antibacterial and bacteriostatic functions. This effectively reduces bacterial growth on the fabric, lowering the risk of odors and skin allergies caused by bacterial infections, thus protecting the wearer's health. At the same time, the good breathability and moisture absorption of cotton and modal fibers help keep the fabric dry, reducing the environment for bacterial growth and further enhancing the fabric's antibacterial durability.
Smart Images

Figure CN224768961U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fabric technology, and in particular to a high-elasticity antibacterial fabric based on silver fiber. Background Technology
[0002] In the field of underwear fabrics, with the continuous improvement of people's quality of life and increasing emphasis on healthy and comfortable clothing, the demand for fabrics that simultaneously possess high elasticity and excellent antibacterial properties is becoming increasingly urgent. However, while traditional underwear fabrics are soft and breathable, they lack sufficient elasticity, making the garments prone to wrinkles and deformation. Furthermore, after repeated wear and washing, the elasticity gradually diminishes, resulting in loose, ill-fitting garments that severely impact comfort and aesthetics. Simultaneously, traditional underwear fabrics lack effective antibacterial properties, allowing bacteria to easily proliferate on the clothing, not only producing unpleasant odors but also potentially causing health problems such as skin allergies. Therefore, it is necessary to improve existing technologies to address these issues. Utility Model Content
[0003] The purpose of this invention is to provide a high-elasticity antibacterial fabric based on silver fiber, which aims to solve the problem of poor elasticity and antibacterial properties of traditional underwear fabrics in the prior art.
[0004] To achieve the above objectives, this utility model provides a high-elasticity antibacterial fabric based on silver fiber, which is woven from warp and weft yarns. The minimum cycle structure is woven from eight warp yarns and eight weft yarns. Within the minimum cycle structure, the warp yarns include a first warp yarn and a second warp yarn, which are arranged in a 1:1 ratio. The weft yarns include a first weft yarn and a second weft yarn, which are also arranged in a 1:1 ratio. The first warp yarn has three warp weft points and five weft weft points, and the second warp yarn has seven warp weft points and one weft weft point. The first weft yarn has six warp weft points and two weft weft points, and the second weft yarn has four warp weft points and four weft weft points. Both the first and second warp yarns are made of silver fiber, modal fiber, and spandex blended yarns, and both the first and second weft yarns are made of cotton fiber, spandex, and bamboo fiber blended yarns.
[0005] Furthermore, the weaving points on the first warp are sequentially set to five weft weaving points and three warp weaving points, and the weaving points on the second warp are sequentially set to seven warp weaving points and one weft weaving point.
[0006] Furthermore, the weaving points on the first weft yarn are sequentially set as five warp weaving points, one weft weaving point, one warp weaving point, and one weft weaving point, while the weaving points on the second weft yarn are sequentially set as two warp weaving points, two weft weaving points, one warp weaving point, one weft weaving point, one warp weaving point, and one weft weaving point.
[0007] Furthermore, the number of weft yarns between the same weft points on adjacent first warp yarns is two, and the number of weft yarns between the same weft points on adjacent second warp yarns is two.
[0008] Furthermore, the yarn count of the first and second warp yarns is 35S-45S, and the yarn count of the first and second weft yarns is 25S-35S.
[0009] Furthermore, the yarn count of the first warp yarn and the second warp yarn is 40S, and the yarn count of the first weft yarn and the second weft yarn is 30S.
[0010] Furthermore, the density of the first warp yarn and the second warp yarn is both 70-90 threads / inch, and the density of the first weft yarn and the second weft yarn is both 50-70 threads / inch.
[0011] Furthermore, the density of the first and second warp yarns is 80 threads / inch, and the density of the first and second weft yarns is 60 threads / inch.
[0012] This invention provides a high-elasticity antibacterial fabric based on silver fiber. Compared to existing technologies, spandex, as an elastic fiber, is added to both the warp and weft yarns, allowing the fabric to exhibit excellent elasticity in both the horizontal and vertical directions. The fabric can stretch and contract freely with body movement, providing the wearer with a high degree of freedom of movement. The silver fiber in the warp yarns and the bamboo fiber in the weft yarns work together to form a multi-layered antibacterial defense line, possessing highly efficient antibacterial and bacteriostatic functions. This effectively reduces bacterial growth on the fabric, lowering the risk of odors and skin allergies caused by bacterial infections, thus protecting the wearer's health. At the same time, the good breathability and moisture absorption of cotton and modal fibers help keep the fabric dry, reducing the environment for bacterial growth and further enhancing the fabric's antibacterial durability. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the minimum cyclic tissue structure of this utility model.
[0014] Explanation of reference numerals in the attached figures:
[0015] 11. First warp yarn; 12. Second warp yarn; 13. Warp weft point; 21. First weft yarn; 22. Second weft yarn; 23. Weft weft point. Detailed Implementation
[0016] The present invention will be described in detail below with reference to specific embodiments.
[0017] In this utility model, unless otherwise explicitly specified and limited, when terms such as "set in," "connected," or "linked" appear, these terms should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or a connection through one or more intermediate media. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances. The directional terms appearing in this utility model are for the purpose of better describing the characteristics of the features and the relationships between them. It should be understood that when the placement direction of this utility model changes, the direction of the characteristics of the features and the relationships between them also changes accordingly. Therefore, directional terms do not constitute an absolute limitation on the characteristics of the features and the relationships between them in space, but only a relative limitation.
[0018] This invention provides a highly elastic antibacterial fabric based on silver fiber, such as... Figure 1 As shown, it is woven from warp and weft yarns. The minimum repeat structure is woven from eight warp yarns and eight weft yarns. Within the minimum repeat structure, the warp yarns include a first warp yarn 11 and a second warp yarn 12, which are arranged in a 1:1 ratio. The weft yarns include a first weft yarn 21 and a second weft yarn 22, which are also arranged in a 1:1 ratio. The first warp yarn 11 has three warp weft points 13 and five weft weft points 23. The second warp yarn 12 has seven warp weft points 13 and one weft weft point 23. The first weft yarn 21 has six warp weft points 13 and two weft weft points 23. The second weft yarn 22 has four warp weft points 13 and four weft weft points 23. The above structure makes the fabric evenly stressed, enhances the structural stability of the fabric, and improves its tensile strength and abrasion resistance.
[0019] The first warp yarn 11 and the second warp yarn 12 are both made of silver fiber, modal fiber and spandex blended yarn, and the first weft yarn 21 and the second weft yarn 22 are both made of cotton fiber, spandex and bamboo fiber blended yarn.
[0020] Based on the above structural design, spandex, as an elastic fiber, is added to both the warp and weft yarns, allowing the fabric to exhibit excellent elasticity in both the horizontal and vertical directions. The fabric can stretch and contract freely with body movement, providing the wearer with a high degree of freedom of movement. The silver fibers in the warp yarns and the bamboo fibers in the weft yarns work together to form a multi-layered antibacterial defense line, which has highly efficient antibacterial and bacteriostatic functions, effectively reducing the growth of bacteria on the fabric and reducing problems such as odor and skin allergies caused by bacterial infection, thus protecting the wearer's health. At the same time, the good breathability and moisture absorption of cotton and modal fibers help keep the fabric dry, reducing the environment for bacterial growth and further enhancing the fabric's antibacterial durability.
[0021] In this embodiment, the weaving points on the first warp 11 are sequentially set to five weft weaving points 23 and three warp weaving points 13, and the weaving points on the second warp 12 are sequentially set to seven warp weaving points 13 and one weft weaving point 23.
[0022] In this embodiment, the weaving points on the first weft yarn 21 are sequentially set as five warp weaving points 13, one weft weaving point 23, one warp weaving point 13 and one weft weaving point 23, and the weaving points on the second weft yarn 22 are sequentially set as two warp weaving points 13, two weft weaving points 23, one warp weaving point 13, one weft weaving point 23, one warp weaving point 13 and one weft weaving point 23.
[0023] In this embodiment, the number of weft yarns between the same weft points on adjacent first warp yarns 11 is two, and the number of weft yarns between the same weft points on adjacent second warp yarns 12 is two.
[0024] The arrangement of the above-mentioned weft yarns gives the fabric a certain degree of elasticity. When the fabric is stretched by external force, the interlacing structure between the warp and weft yarns can undergo a certain deformation. The same spacing of the weft yarns ensures that the fabric can quickly return to its original state after deformation. At the same time, the reasonable arrangement of the weft yarns gives the fabric good breathability and moisture permeability.
[0025] In this embodiment, the yarn count of the first warp 11 and the second warp 12 is 35S-45S. More preferably, the yarn count of the first warp 11 and the second warp 12 is 40S. The yarn count of the first weft 21 and the second weft 22 is 25S-35S. More preferably, the yarn count of the first weft 21 and the second weft 22 is 30S.
[0026] In this embodiment, the density of the first warp yarn 11 and the second warp yarn 12 is both 70 threads / inch to 90 threads / inch, and more preferably, the density of the first warp yarn 11 and the second warp yarn 12 is both 80 threads / inch. The density of the first weft yarn 21 and the second weft yarn 22 is both 50 threads / inch to 70 threads / inch, and more preferably, the density of the first weft yarn 21 and the second weft yarn 22 is both 60 threads / inch.
[0027] Fabrics made with the aforementioned yarn count and yarn density are more delicate and smooth, and more comfortable to wear, thus improving the wearer's experience.
[0028] In summary, this silver fiber-based high-elasticity antibacterial fabric can solve the problems of poor elasticity and antibacterial properties in traditional underwear fabrics in existing technologies.
[0029] Where there is no conflict, the above embodiments and features can be combined with each other.
[0030] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit the scope of protection of this utility model. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the essence and scope of the technical solutions of this utility model.
Claims
1. A highly elastic antibacterial fabric based on silver fiber, characterized in that: It is woven from warp and weft yarns. The minimum repeat structure is woven from eight warp yarns and eight weft yarns. In the minimum repeat structure, the warp yarns include the first warp yarn (11) and the second warp yarn (12), which are arranged in a 1:1 ratio. The weft yarns include the first weft yarn (21) and the second weft yarn (22), which are arranged in a 1:1 ratio. The first warp yarn (11) has three warp weft points (13) and five weft weft points (23). The second warp yarn (12) has seven warp weft points (13) and one weft weft point (23). The first weft yarn (21) has six warp weft points (13) and two weft weft points (23). The second weft yarn (22) has four warp weft points (13) and four weft weft points (23). The first warp yarn (11) and the second warp yarn (12) are both made of silver fiber, modal fiber and spandex blended yarn, and the first weft yarn (21) and the second weft yarn (22) are both made of cotton fiber, spandex and bamboo fiber blended yarn.
2. The high-elasticity antibacterial fabric based on silver fiber according to claim 1, characterized in that: The first warp yarn (11) has five weft ...
3. The high stretch antibacterial fabric based on silver fibers according to claim 2, characterized in that: The weft yarn (21) has five warp weft ...
4. The high-elasticity antibacterial fabric based on silver fiber according to claim 3, characterized in that: The number of weft yarns between the same weft points on adjacent first warp yarns (11) is two, and the number of weft yarns between the same weft points on adjacent second warp yarns (12) is two.
5. The high-elasticity antibacterial fabric based on silver fiber according to claim 1, characterized in that: The yarn count of the first warp yarn (11) and the second warp yarn (12) is 35S-45S, and the yarn count of the first weft yarn (21) and the second weft yarn (22) is 25S-35S.
6. The high-elasticity antibacterial fabric based on silver fiber according to claim 5, characterized in that: The first warp yarn (11) and the second warp yarn (12) both have a yarn count of 40S, and the first weft yarn (21) and the second weft yarn (22) both have a yarn count of 30S.
7. The high-elasticity antibacterial fabric based on silver fiber according to claim 1, characterized in that: The density of the first warp yarn (11) and the second warp yarn (12) is 70-90 threads / inch, and the density of the first weft yarn (21) and the second weft yarn (22) is 50-70 threads / inch.
8. The high-elasticity antibacterial fabric based on silver fiber according to claim 7, characterized in that: The density of the first warp yarn (11) and the second warp yarn (12) is 80 threads / inch, and the density of the first weft yarn (21) and the second weft yarn (22) is 60 threads / inch.