High-permeability moisture-absorption peach skin
By employing a perforated structure and a plush layer design in peach skin fabric, and utilizing microfiber materials to improve breathability and moisture absorption, the problem of poor breathability of peach skin fabric is solved, thereby enhancing user comfort and mechanical properties.
Patent Information
- Application Number
- CN202423128896.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-18
AI Technical Summary
Peach skin velvet fabric has poor breathability and cannot effectively absorb sweat from the skin's surface, resulting in a poor user experience.
The inner and outer layers are both porous structures, with a plush layer on the outer surface composed of ultrafine nylon and ultrafine vinylon fibers. The plush layer has good straightness, and the inner and outer layers have through holes. The weaving density and structure cycle design are optimized to form a highly breathable structure.
It improves the breathability and moisture absorption of the fabric, increases the comfort of use, prevents stuffiness, and enhances the mechanical properties and service life of the fabric.
Smart Images

Figure CN223686129U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of fabric, specifically to high moisture absorption peach skin fabric. BACKGROUND
[0002] Peach skin fabric is a kind of thin fabric composed of superfine fibers, and it is a novel thin pile fabric in superfine fiber fabric, which is derived from artificial suede, and the texture is softer because it is not treated by polyurethane wet method.
[0003] Because peach skin fabric is relatively light and thin, and needs to be polished, the mechanical properties of the fabric itself are poor, therefore, peach skin fabric generally uses multi-layer structure to increase the mechanical properties of the fabric, increase the comfort and service life of the fabric, but the peach skin fabric is affected by the tight weaving density, multi-layer structure and surface pile, so that the fabric has poor air permeability, and the sweat on the surface of the skin cannot be absorbed when wearing, resulting in poor use experience of peach skin fabric.
[0004] Therefore, high moisture absorption peach skin fabric is needed to solve the problem of poor air permeability of peach skin fabric. UTILITY MODEL CONTENT
[0005] In view of the deficiencies of the prior art, the purpose of the utility model is to provide high moisture absorption peach skin fabric.
[0006] The above technical purpose of the utility model is realized by the following technical scheme: the high moisture absorption peach skin fabric comprises an inner layer and a surface layer fixed on the surface of the inner layer, the surface layer is woven by first yarn, the inner layer is woven by second yarn, the inner layer and the surface layer are both provided with a plurality of through holes, and the surface of the surface layer away from the inner layer is further provided with a pile layer, the distribution area of the pile layer is the same as the surface area of the surface layer, and the pile on the pile layer is arranged in a straight line away from the surface layer to reduce the sealing property of the gap between the piles.
[0007] The utility model is further provided as follows: the inner layer and the surface layer are both transparent hole organizations, and the through holes are formed by weaving the transparent hole organizations.
[0008] The utility model is further provided as follows: the transparent hole organization is 10 pages of harness, the warp organization points of the transparent hole organization are floating, the weft organization points of the transparent hole organization are sinking, and the organization cycle of the transparent hole organization is as follows: sinking floating sinking floating sinking floating sinking floating, floating floating floating floating sinking sinking sinking sinking sinking, sinking floating sinking floating floating sinking floating sinking floating, floating floating floating floating sinking sinking sinking sinking sinking, sinking sinking floating sinking sinking floating sinking floating, sinking sinking sinking sinking floating floating floating floating, floating sinking floating sinking sinking sinking sinking sinking, sinking sinking sinking sinking sinking floating floating floating floating, floating sinking floating sinking sinking sinking sinking sinking, sinking sinking sinking sinking sinking floating floating floating floating.
[0009] The utility model further sets up: the weaving density of surface layer in warp direction is 49 root / cm, its weft direction weaving density is 35 root / cm, the weaving density of inner layer in warp direction is 28 root / cm, its weft direction weaving density is 30 root / cm.
[0010] The utility model further sets up: the first yarn is twisted by a bundle of first silk, three bundles of second silk and three bundles of third silk, and its twist is 26-31 twist / cm, the second yarn is twisted by a bundle of third silk and a bundle of fourth silk, and its twist is 20-23 twist / cm.
[0011] The utility model further sets up: the first yarn count is 66, the second yarn count is 41.
[0012] The utility model further sets up: the first silk and fourth silk are all superfine dacron fiber material, the fourth silk cross section is "*" shape, and the first silk cross section area is three times fourth silk cross section area, the second silk is superfine nylon fiber material, and its cross section is "*" shape, the third silk is superfine vinylon fiber material, and its cross section is "*" shape.
[0013] The utility model further sets up: the plush layer is formed by the surface grinding of surface layer, and the pile is composed of the broken second silk and third silk short fibers of first yarn.
[0014] In conclusion, the utility model has the advantages of:
[0015] The through hole structure of the inner layer and the surface layer forms a plurality of through holes on the surfaces of the inner layer and the surface layer, the surface of the surface layer is ground and a plush layer is formed, the first yarn is ground to form pile, the pile short fibers are mainly composed of superfine nylon fiber material and superfine vinylon fiber material, the straightness of the pile is good due to the good elasticity and high toughness of the nylon fiber, the pile is in a straight state, the opening of the gap between the adjacent piles is prevented from being blocked by the curved pile, the sealing property of the pile gap is reduced, and the air permeability of the fabric is improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is the structural schematic diagram of the utility model;
[0017] Figure 2 It is the weaving diagram of the inner layer in the utility model;
[0018] Figure 3 It is the structural schematic diagram of the first yarn in the utility model;
[0019] Figure 4 It is the structural schematic diagram of the second yarn in the utility model.
[0020] In the picture:
[0021] 11. First filament; 12. Second filament; 13. Third filament; 14. Fourth filament; 15. Inner layer; 16. Outer layer; 17. Plush layer. Detailed Implementation
[0022] The present invention will now be described in detail with reference to the accompanying drawings of the embodiments thereof.
[0023] Example:
[0024] This highly breathable and moisture-wicking peach skin velvet, such as Figures 1 to 3 As shown, the structure includes an inner layer 15 and a surface layer 16 fixed thereon. The surface layer 16 is woven from a first yarn, and the inner layer 15 is woven from a second yarn. A pile layer 17 is also provided on the side of the surface layer 16 away from the inner layer 15. The pile layer 17 is formed by abrading the surface of the surface layer 16, creating pile by breaking the fibers of the first yarn on the surface layer 16. The first yarn is formed by twisting a bundle of first filament 11, three bundles of second filament 12, and three bundles of third filament 13. The first filament 11 is made of ultrafine polyester fiber, the second filament 12 is made of ultrafine nylon fiber with a cross-section of "*", and the third filament 13 is made of ultrafine vinylon fiber with a cross-section of "*". The three bundles of second filament 12 and the three bundles of third filament 13 are positioned outside the first filament 11, so that when the first yarn is broken and piled, it forms the pile layer 17. The main materials of the pile are ultra-fine nylon staple fiber and ultra-fine vinylon staple fiber. The strong elasticity and toughness of ultra-fine nylon staple fiber make the pile more straight, that is, the pile extends outward in a straight line relative to the surface layer 16, preventing the pile from overlapping and forming several closed spaces, which is conducive to air flow on both sides of the pile layer 17, thereby increasing the breathability of the fabric. The inner layer 15 and the surface layer 16 are both perforated with several through holes. Both the inner layer 15 and the surface layer 16 are perforated structures. The through holes are formed by the perforated structure weaving. The distribution area of the pile layer 17 is the same as the surface area exposed by the surface layer 16. By utilizing the perforated structure of the surface layer 16, several through holes are formed on the surface of the surface layer 16, which reduces the surface area of the surface layer 16 and reduces the density of the pile. This increases the breathability of the fabric by both increasing the perforation and reducing the density of the pile.
[0025] like Figure 2As shown, the through-hole tissue is 10 pages of the total, and the warp tissue point is floating, the weft tissue point of the through-hole tissue is sinking, and the tissue cycle of the through-hole tissue is: sink-float-sink-float-sink-float-sink-float, float-float-float-float-sink-sink-sink-sink, sink-float-sink-float-float-sink-float-sink-float, float-float-float-float-sink-sink-sink-sink, sink-sink-float-sink-sink-float-sink-float-sink, sink-sink-sink-sink-float-float-float-float, float-sink-float-sink-sink-float-sink-sink, the weaving density of the surface layer 16 in the warp direction is 49 / cm, and the weaving density in the weft direction is 35 / cm, the weaving density of the inner layer 15 in the warp direction is 28 / cm, and the weaving density in the weft direction is 30 / cm, the weaving density and the weaving structure of the surface layer 16 can make the surface layer 16 not only have tight nap to increase the touch feeling of use, but also reduce the overall distribution of the nap on the fabric, thereby increasing the air permeability of the fabric, wherein the first yarn count is 66, and the second yarn count is 41, further increasing the air tightness and the use of the body feeling.
[0026] As shown in Figures 2 to 4 The first yarn is twisted from a bundle of first filaments 11, three bundles of second filaments 12 and three bundles of third filaments 13, and the twist is 26-31 twists / cm, the second yarn is twisted from a bundle of third filaments 13 and a bundle of fourth filaments 14, and the twist is 20-23 twists / cm, the first filaments 11 and the fourth filaments 14 are both superfine polyester fiber materials, the fourth filaments 14 have a cross-section of "*" shape, and the cross-sectional area of the first filaments 11 is three times that of the fourth filaments 14, the second filaments 12 are superfine nylon fiber materials, and the cross-section is "*" shape, the third filaments 13 are superfine vinylon fiber materials, and the cross-section is "*" shape, the use of superfine vinylon fiber and superfine nylon fiber increases the toughness of the nap of the nap layer 17, increases the air permeability of the fabric, and the use of the elasticity and mechanical strength of the superfine polyester fiber increases the mechanical properties of the surface layer 16 as a whole, prevents the fabric from breaking, and the use of superfine weft fiber and superfine polyester fiber to weave the inner layer 15 increases the water absorption of the inner layer 15, so that the sweat on the surface of the skin can be quickly absorbed by the fabric, thereby increasing the comfort of the user, preventing the user from feeling hot, and the first filaments 11, the third filaments 13 and the fourth filaments 14 all use "*" cross-section, which helps to increase the moisture permeability of the fabric and thereby increase the sweat absorption effect of the fabric.
[0027] Three second filaments 12, three third filaments 13 and one first filament 11 are twisted to form a first yarn by using a ring spinning machine, and the second filaments 12 and the third filaments 13 are arranged outside the first filament 11. One third filament 13 and one fourth filament 14 are twisted to form a second yarn by using the ring spinning machine. A water jet loom is used to weave a surface layer 16 of a through-hole weave by using the first yarn as a raw material and to weave an inner layer 15 of a through-hole weave by using the second yarn as a raw material. A sanding machine is used to sand one surface of the surface layer 16. The unsanded surface of the surface layer 16 is covered on the surface of the inner layer 15. A sewing machine is used to sew the inner layer 15 and the surface layer 16 together, and the preparation is completed.
[0028] The preferred embodiments of the present application have been described above, but the scope of protection of the present application is not limited to the above-mentioned embodiments. Any technical solutions falling within the concept of the present application shall fall within the scope of protection of the present application. It should be noted that, for ordinary skilled persons in the technical field, some improvements and refinements can be made without departing from the principles of the present application, and these improvements and refinements shall also be considered within the scope of protection of the present application.
Claims
1. Highly transparent and moisture-absorbing peach skin fabric comprising an inner layer (15) and a surface layer (16) fixed on the surface thereof, said surface layer (16) being woven with first yarns, said inner layer (15) being woven with second yarns, characterized in that: The inner layer (15) and the surface layer (16) are both through-hole organizations, and the through holes are formed by the through-hole organization shuttle.
2. The highly transparent moisture absorbing peach skin fabric according to claim 1, wherein: The through-hole organization is 10 pages of harness, and the warp organization points of the through-hole organization are floating, the weft organization points of the through-hole organization are sinking, and the organization cycle of the through-hole organization is: sinking floating sinking floating sinking floating sinking floating, floating floating floating floating sinking sinking sinking sinking sinking, sinking floating sinking floating floating sinking floating sinking floating, floating floating floating floating sinking sinking sinking sinking sinking, sinking sinking floating sinking sinking floating sinking floating, sinking sinking sinking sinking floating floating floating floating, floating sinking floating sinking sinking sinking sinking sinking, sinking floating sinking floating sinking floating sinking floating.
3. The highly transparent moisture absorbing peach skin fabric according to claim 2, wherein: The weaving density of the surface layer (16) in the warp direction is 49 roots / cm, and the weaving density in the weft direction is 35 roots / cm, the weaving density of the inner layer (15) in the warp direction is 28 roots / cm, and the weaving density in the weft direction is 30 roots / cm.
4. The highly transparent moisture absorbing peach skin fabric according to claim 3, wherein: The first yarn is twisted by a bundle of first silk (11), three bundles of second silk (12) and three bundles of third silk (13), and the twist is 26-31 twists / cm, the second yarn is twisted by a bundle of third silk (13) and a bundle of fourth silk (14), and the twist is 20-23 twists / cm.
5. The highly transparent moisture absorbing peach skin fabric according to claim 1, wherein: The first yarn count is 66, and the second yarn count is 41.
6. The highly transparent moisture absorbing peach skin fabric according to claim 1, wherein: The first silk (11) and the fourth silk (14) are both superfine polyester fiber materials, the fourth silk (14) cross section is "*", and the first silk (11) cross section area is three times the fourth silk (14) cross section area, the second silk (12) is superfine nylon fiber material, and the cross section is "*", the third silk (13) is superfine vinylon fiber material, and the cross section is "*".
7. The highly transparent moisture absorbing peach skin fabric according to claim 5, wherein: The surface of the surface layer (16) is ground, and the nap is composed of the broken second silk (12) and the third silk (13) short fibers on the first yarn.
8. The highly transparent moisture absorbing peach skin fabric according to claim 5, wherein: