An anti-wrinkle fabric
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHAOXING PENGYUE TEXTILE CO LTD
- Filing Date
- 2025-08-25
- Publication Date
- 2026-08-07
AI Technical Summary
[0002]传统的抗皱面料多依赖于化学整理,如采用树脂整理剂,虽然有一定效果,但会造成面料手感变硬且织物强度下降的问题
[0013] The different weaves in the first and second warp stripes cause inconsistent stresses, preventing the stress from aligning in one direction and making it difficult for the fabric to wrinkle. The stepped structure of the first region fits snugly with the second region, and the first region is higher than the second, increasing friction between the warp and weft yarns. When the fabric is subjected to external force, the warp and weft yarns in the first and second regions inhibit each other, reducing slippage and minimizing wrinkles. The raised first region creates a textured structure, reducing contact points when the fabric is folded, thus increasing its wrinkle resistance.
Smart Images

Figure CN224605175U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fabrics, and more specifically, to an anti-wrinkle fabric. Background Technology
[0002] Traditional wrinkle-resistant fabrics often rely on chemical finishing, such as the use of resin finishing agents. While these methods have some effect, they can cause the fabric to feel stiff and reduce its strength. Utility Model Content
[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide a wrinkle-resistant fabric. The first and second longitudinal stripe areas have different structures, resulting in inconsistent stress on the first and second longitudinal stripe areas. This prevents the stress from being in one direction, making it difficult for the fabric to form wrinkles. The stepped structure of the first area fits into the second area, and the first area is higher than the second area. This increases the friction between the warp and weft yarns in the first and second areas. When the fabric is subjected to external force, the stepped structure of the first and second areas inhibits the slippage of the warp and weft yarns, thereby reducing the formation of wrinkles. Furthermore, the raised first area creates a textured surface, reducing the number of contact points when the fabric is folded, thus increasing its wrinkle resistance.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: a wrinkle-resistant fabric, comprising a first longitudinal stripe area and a second longitudinal stripe area, wherein the first longitudinal stripe area and the second longitudinal stripe area are arranged alternately and cyclically along the fabric width direction; the first longitudinal stripe area comprises a first region and a second region, wherein the first region and the second region are arranged alternately and cyclically along the fabric length direction; the first region comprises a first end face and a second end face, wherein along the fabric length direction, the first end face is convex and the second end face is stepped; the second region comprises a third end face and a fourth end face, wherein along the fabric length direction, the third end face is stepped and the fourth end face is concave.
[0005] The present invention is further configured such that, along the length direction of the fabric, the first end face mates with the fourth end face, and the second end face mates with the third end face.
[0006] The present invention is further configured such that the first region is higher than the second region, and the second region is at the same height as the second vertical strip region.
[0007] The present invention is further configured such that the width of the first longitudinal strip area is 2 to 3 times the width of the second longitudinal strip area.
[0008] The present invention is further configured such that, along the length direction of the fabric, the length of the first region is greater than the length of the second region.
[0009] The present invention is further configured such that the fabric is woven with 68 warp yarns and 52 weft yarns in one weave cycle, 50 warp yarns and 52 weft yarns interwoven to form the first longitudinal stripe area, and 18 warp yarns and 52 weft yarns interwoven to form the second longitudinal stripe area.
[0010] The present invention is further configured such that 50 warp yarns and 48 weft yarns interweave to form the first region, and 50 warp yarns and 46 weft yarns interweave to form the second region.
[0011] The present invention is further configured such that the first region adopts a square flat weave, and the second region and the second longitudinal stripe region adopt a twill weave.
[0012] In summary, this utility model has the following beneficial effects:
[0013] The different weaves in the first and second warp stripes cause inconsistent stresses, preventing the stress from aligning in one direction and making it difficult for the fabric to wrinkle. The stepped structure of the first region fits snugly with the second region, and the first region is higher than the second, increasing friction between the warp and weft yarns. When the fabric is subjected to external force, the warp and weft yarns in the first and second regions inhibit each other, reducing slippage and minimizing wrinkles. The raised first region creates a textured structure, reducing contact points when the fabric is folded, thus increasing its wrinkle resistance. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of an anti-wrinkle fabric in this embodiment;
[0015] Figure 2 for Figure 1 A sectional view along the A-A direction;
[0016] Figure 3 for Figure 1 A cross-sectional view along the B-B direction;
[0017] Figure 4 This is a partial structural diagram of an anti-wrinkle fabric in this embodiment;
[0018] Figure 5 This is a weave diagram of an anti-wrinkle fabric in this embodiment.
[0019] Reference numerals: First longitudinal strip area 1, Second longitudinal strip area 2, First region 11, Second region 12, First end face 111, Second end face 112, Third end face 121, Fourth end face 122. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0021] like Figure 1 — Figure 4 As shown, this embodiment discloses a wrinkle-resistant fabric. The fabric is woven with 68 warp yarns and 52 weft yarns in one weave cycle. The 1st to 50th warp yarns and the 1st to 52nd weft yarns interweave to form a first longitudinal stripe area 1, and the 51st to 68th warp yarns and the 1st to 52nd weft yarns interweave to form a second longitudinal stripe area 2. Therefore, the fabric includes a first longitudinal stripe area 1 and a second longitudinal stripe area 2. The 50 warp yarns and 52 weft yarns interweave to form the first longitudinal stripe area 1, and the 18 warp yarns and 52 weft yarns interweave to form the second longitudinal stripe area 2. Because the first longitudinal stripe area 1 and the second longitudinal stripe area 2... Although the warp yarns are different, the weft yarns of the first longitudinal stripe area 1 and the second longitudinal stripe area 2 are the same. Therefore, the first longitudinal stripe area 1 and the second longitudinal stripe area 2 are arranged alternately and cyclically along the width of the fabric. Since the first longitudinal stripe area 1 is a combination of twill and plain weave, while the second longitudinal stripe area 2 is only a twill weave, the weaves of the first longitudinal stripe area 1 and the second longitudinal stripe area 2 are different. As a result, the stress on the first longitudinal stripe area 1 is inconsistent with the stress on the second longitudinal stripe area 2. Therefore, the stress cannot be in one direction in the transverse direction, making it difficult for the fabric to form wrinkles.
[0022] In the warp and weft yarns that interweave to form the first longitudinal stripe area 1, warp yarns 1-10 and 41-50 interweave with weft yarns 1-30; warp yarns 11-20 and 31-40 interweave with weft yarns 13-46; warp yarns 21-30 interweave with weft yarns 25-46 to form the first region 11; warp yarns 1-10 and 41-50 interweave with weft yarns 31-52; warp yarns 11-20 and 31-40 interweave with weft yarns 1-12 and 49-52; and warp yarns 21-30 interweave with weft yarns 1-24 and 49-52 to form the second region 12. Therefore, the first longitudinal stripe area 1 includes the first region 11 and the second region 12. 12. Because the first region 11 and the second region 12 use the same warp yarns but different weft yarns, the first region 11 and the second region 12 are arranged alternately and cyclically along the length of the fabric. The first region 11 is formed by 50 warp yarns and 48 weft yarns, and the second region 12 is formed by 50 warp yarns and 46 weft yarns. Because the first region 11 uses a plain weave and the second region 12 uses a twill weave, the weaves of the first region 11 and the second region 12 are different. As a result, the stress on the first region 11 is inconsistent with the stress on the second region 12. Therefore, the stress cannot be in one direction in the longitudinal direction of the first longitudinal stripe area 1, making it difficult for the fabric to form wrinkles.
[0023] The first region 11 includes a first end face 111 and a second end face 112. The first end face 111 is located at the intersection of warp yarns 1-10 and weft yarn 30, warp yarns 11-40 and weft yarn 48, and warp yarns 41-50 and weft yarn 30. The second end face 112 is located at the intersection of warp yarns 1-10 and weft yarn 1, warp yarns 11-20 and weft yarn 13, warp yarns 21-30 and weft yarn 25, warp yarns 31-40 and weft yarn 13, and warp yarns 41-50 and weft yarn 30. At the intersection of the 50th warp yarn and the 1st weft yarn, the first end face 111 is convex along the fabric length, and the second end face 112 is stepped. The second region 12 includes a third end face 121 and a fourth end face 122. The third end face 121 is located at the intersections of the 1st-10th warp yarn and the 52nd weft yarn, the 11th-20th warp yarn and the 12th weft yarn, the 21st-30th warp yarn and the 24th weft yarn, the 31st-40th warp yarn and the 12th weft yarn, and the 41st-50th warp yarn and the 52nd weft yarn. At the interlacing points, the fourth end face is located at the interlacing points of warp yarns 1-10 and weft yarn 31, warp yarns 11-40 and weft yarn 49, and warp yarns 41-50 and weft yarn 31. Therefore, along the fabric length direction, the third end face 121 is stepped, and the fourth end face 122 is concave. Furthermore, along the fabric length direction, the first end face 111 mates with the fourth end face 122, and the second end face 112 mates with the third end face 121. This causes the first region 11 and the second region 12 to form along the fabric length direction... The mating structure, which is both stepped and concave-convex, is designed so that when the fabric is subjected to external force, the mating structure of the first region 11 and the second region 12 causes the interlacing points of the warp and weft yarns in the first region 11 and the second region 12 to become misaligned. Therefore, when the fabric is subjected to external force and the external force attempts to make the yarns slide, the misalignment of the interlacing points of the warp and weft yarns prevents the warp and weft yarns in the first region 11 and the second region 12 from moving. This inhibits the slippage of the warp and weft yarns in the first region 11 and the second region 12, thereby reducing the formation of wrinkles in the fabric.
[0024] Because the first region 11 uses a plain weave, while the second region 12 and the second longitudinal stripe region 2 use a twill weave, the yarn density of the first region 11 is greater than that of the second region 12 and the second longitudinal stripe region 2. Since the second region 12 and the second longitudinal stripe region 2 are twill weaves, the first region 11 will be higher due to the density between the yarns. Therefore, the first region 11 is higher than the second region 12, and the second region 12 is at the same height as the second longitudinal stripe region 2. This creates a three-dimensional structure with varying heights in the fabric. This change in the weave between the first region 11 and the second region 12 increases the friction between the warp and weft yarns in the first region 11 and the second region 12, thereby reducing the slippage of the warp and weft yarns in the first region 11 and the second region 12. At the same time, because the first region 11 is higher, the number of contact points in the fabric is reduced when folding, thus reducing the area of friction and making the yarn more elastic after folding, thereby increasing the fabric's wrinkle resistance.
[0025] Because the width of the first longitudinal stripe area 1 is the width of 50 warp yarns, and the width of the second longitudinal stripe area 2 is the width of 18 warp yarns, the width of the first longitudinal stripe area 1 is 2-3 times the width of the second longitudinal stripe area 2. Preferably, the width of the first longitudinal stripe area 1 is 2.7 times the width of the second longitudinal stripe area 2. In the first longitudinal stripe area 1, along the fabric length direction, the first region 11 has a weft yarn length of 48, and the second region 12 has a weft yarn length of 46. Therefore, the length of the first region 11 is greater than the length of the second region 12. Because the weave of the first region 11 and the second region 12 in the first longitudinal stripe area 1 is different, the slippage of the yarns in the first region 11 and the second region 12 is restricted. The second longitudinal stripe area 2... Since the first longitudinal stripe zone 1 uses the same weft yarn, the second longitudinal stripe zone 2, along the fabric length direction, experiences varying stresses due to the inconsistent stress distribution within the first longitudinal stripe zone 1. Furthermore, the width of the first longitudinal stripe zone 1 is greater than that of the second longitudinal stripe zone 2, causing it to absorb most of the stress. This, in turn, inhibits the slippage of warp and weft yarns within the second longitudinal stripe zone 2 as the stress in the first longitudinal stripe zone 1 changes. This increases the overall wrinkle resistance of the fabric. Simultaneously, because no chemical finishing agents are used, the fabric remains soft to the touch, and the weave structure maintains the fabric's strength.
[0026] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected by this utility model. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.
Claims
1. A wrinkle-resistant fabric, characterized in that, It includes a first longitudinal stripe area (1) and a second longitudinal stripe area (2), which are arranged alternately and cyclically along the fabric width direction. The first longitudinal stripe area (1) includes a first region (11) and a second region (12), which are arranged alternately and cyclically along the fabric length direction. The first region (11) includes a first end face (111) and a second end face (112). Along the fabric length direction, the first end face (111) is convex and the second end face (112) is stepped. The second region (12) includes a third end face (121) and a fourth end face (122). Along the fabric length direction, the third end face (121) is stepped and the fourth end face (122) is concave.
2. The wrinkle-resistant fabric according to claim 1, characterized in that, Along the length of the fabric, the first end face (111) mates with the fourth end face (122), and the second end face (112) mates with the third end face (121).
3. The wrinkle-resistant fabric according to claim 1, characterized in that, The first region (11) is higher than the second region (12), and the second region (12) is at the same height as the second vertical strip region (2).
4. The wrinkle-resistant fabric according to claim 1, characterized in that, The width of the first vertical strip area (1) is 2 to 3 times the width of the second vertical strip area (2).
5. The wrinkle-resistant fabric according to claim 1, characterized in that, Along the length of the fabric, the length of the first region (11) is greater than the length of the second region (12).
6. The wrinkle-resistant fabric according to claim 1, characterized in that, The fabric is woven with 68 warp yarns and 52 weft yarns in one weave cycle. 50 warp yarns and 52 weft yarns are woven together to form the first longitudinal stripe area (1), and 18 warp yarns and 52 weft yarns are woven together to form the second longitudinal stripe area (2).
7. The wrinkle-resistant fabric according to claim 1, characterized in that, The first region (11) is formed by interlacing 50 warp yarns and 48 weft yarns, and the second region (12) is formed by interlacing 50 warp yarns and 46 weft yarns.
8. The wrinkle-resistant fabric according to claim 1, characterized in that, The first region (11) adopts a square flat weave, and the second region (12) and the second longitudinal stripe region (2) adopt a twill weave.