Striped anti-static warp-knitted velvet fabric
By introducing a combination of stainless steel fiber blended yarn and white polyester filaments into velvet fabrics, combined with the warp knitted structure and the use of wool yarn, the problem that velvet fabrics affects wear comfort due to electrostatic problems is solved, and excellent anti-static performance and higher weaving efficiency are achieved.
Patent Information
- Application Number
- CN202421934629.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-12
AI Technical Summary
Existing velvet fabrics affect their wear comfort due to electrostatic problems, and they are prone to high voltages to form static electricity due to the accumulation of charge during production and use.
Stainless steel fiber blended yarn is used to combine with white polyester filaments, and knitted warp knitted fabrics to form a black and white striped structure, and the fourth comb is used to pass the wool yarn as a weft liner, floating on the surface of the fabric to improve anti-static properties.
It effectively improves the anti-static performance of velvet fabrics, improves wear comfort, solves the problem of wearing discomfort caused by static electricity, and simplifies the weaving process and improves weaving efficiency.
Smart Images

Figure CN222908236U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of textiles, and particularly relates to a striped anti-static warp-knitted fleece fabric. Background Art
[0002] At present, fleece fabrics such as polar fleece and coral fleece, which are winter clothing fabrics, mostly use polyester fibers. Due to the strong hydrophobicity of polyester fibers, high voltage is easily formed due to charge accumulation during production and use, resulting in static electricity. Common fleece fabrics generally have a weft-knitted loop structure, which is formed into a fleece fabric after shearing and raising, or through a warp-knitted insertion structure, where very thick insertion yarns are periodically inserted between the loop trunks and the extension yarns of the warp-knitted fabric, which are significantly exposed on the fabric surface, and a fleece surface is formed after raising by a raising machine. Summary of the Invention
[0003] The purpose of the utility model is to overcome the deficiencies existing in the prior art and provide a striped anti-static warp-knitted fleece fabric. When designing the utility model, a knitted warp-knitted fleece fabric is adopted, and stainless steel fiber blended yarn is introduced on the basis of the warp-knitted fabric to improve the problem that the wearing comfort of fleece fabrics on the market is affected by static electricity problems. The fleece fabric of the utility model is knitted by four guide bars. Among them, the first guide bar, the second guide bar, and the third guide bar form a basic warp-knitted organizational structure, and one of them is threaded with stainless steel fiber blended yarn, and the other two guide bars are threaded with white polyester filament. Through structural design, a black-and-white striped structure is formed. The fourth guide bar is threaded with polyester yarn as the insertion yarn, so it floats on the fabric surface to form a fleece fabric.
[0004] To achieve the above technical purposes, the technical solution adopted in the embodiment of the utility model is:
[0005] A striped anti-static warp-knitted fleece fabric, the fabric includes a first guide bar GB1, a second guide bar GB2, a third guide bar GB3, and a fourth guide bar GB4. The laying-in yarns of the first row and the second row of the first guide bar GB1 are 2-3 / 1-0 / / , forming a warp pile stitch;
[0006] The laying-in yarns of the first row and the second row of the second guide bar GB2 are 1-0 / 1-2 / / , forming a warp plain stitch;
[0007] The laying-in yarns of the first row and the second row of the third guide bar GB3 are 1-0 / 2-3 / / , which is opposite to the laying-in yarn movement of the first guide bar GB1, forming a warp pile stitch;
[0008] The laying-in yarns of the first row and the second row of the fourth guide bar GB4 are 4-4 / 0-0 / / , forming an insertion stitch.
[0009] Furthermore, the first guide bar GB1 uses white polyester filament, performs a three-needle warp plain laying-in movement, and one is threaded and one is empty;
[0010] The second guide bar GB2 uses white polyester filament, performs a two-needle plain knitting yarn laying motion, and is fully threaded. The yarn laying motion directions of the first guide bar GB1 and the second guide bar GB2 are opposite;
[0011] The third guide bar GB3 is a stainless steel staple fiber / polyester blended yarn, performs a three-needle plain knitting yarn laying, one empty and one threaded, and the motion direction is the same as that of the second guide bar GB2;
[0012] The fourth guide bar GB4 is a plush yarn, performs a four-needle weft insertion motion, and is fully threaded, and finally floats on the fabric surface.
[0013] Furthermore, the specification of the white polyester filament is 75 - 300D;
[0014] In the stainless steel staple fiber / polyester blended yarn, the blending ratio of the stainless steel staple fiber to the polyester is 1 / 49 - 1 / 4, and the yarn count of the blended yarn is 21 - 40s;
[0015] The yarn count of the plush yarn is 8 - 16S.
[0016] The beneficial effects brought by the technical solution provided by the embodiment of the present utility model are:
[0017] In order to improve the common static electricity problem of plush fabrics, on the one hand, the present utility model uses a stainless steel staple fiber / polyester blended yarn to timely conduct static electricity. On the other hand, the special warp knitting structure combined with yarns of different colors has both the appearance of stripes and excellent anti-static performance.
[0018] Weft knitted terry fabrics generally need to go through the process of shearing the pile, while the warp knitted plush fabric of the present utility model can directly insert the plush yarn through the weft insertion weaving method to form a plush fabric, with higher weaving efficiency and simpler processes.
[0019] The first guide bar GB1 and the third guide bar GB3 of the present utility model both perform a three-needle plain knitting motion, but the yarn laying motions are opposite. The first guide bar GB1 has a one-thread and one-empty white polyester filament, and the third guide bar GB3 has a one-empty and one-thread stainless steel staple fiber / polyester blended yarn. The two guide bars form a stable warp knitting structure; the second guide bar GB2 is fully threaded with white polyester filament, and the yarn laying motion is the same as that of the third guide bar GB3. Therefore, the three guide bars form a stripe effect with alternating depths. The fourth guide bar GB4 is a very thick plush yarn, performs a four-needle weft insertion motion, and is fully threaded, and finally floats on the fabric surface. The obtained fabric has good anti-static performance, and solves the problem of discomfort caused by static electricity in plush fabrics on the market in dry winter. Description of the Drawings
[0020] Figure 1 It is the yarn laying digital diagram of the stripe anti-static warp knitted plush fabric in the embodiment of the present utility model.
[0021] Figure 2 This is the threading effect diagram of the striped anti-static warp knitted fleece fabric in the embodiment of the present utility model. Detailed implementation manners
[0022] In order to make the purpose, technical solutions and advantages of the present utility model clearer, the following further details the present utility model in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.
[0023] Embodiment 1
[0024] As Figure 1 shown, a striped anti-static warp knitted fleece fabric, the fabric includes a first comb GB1, a second comb GB2, a third comb GB3 and a fourth comb GB4. The yarn laying of the first row and the second row of the first comb GB1 is 2-3 / 1-0 / / , forming a warp pile stitch;
[0025] The yarn laying of the first row and the second row of the second comb GB2 is 1-0 / 1-2 / / , forming a warp plain stitch;
[0026] The yarn laying of the first row and the second row of the third comb GB3 is 1-0 / 2-3 / / , opposite to the yarn laying movement of the first comb GB1, forming a warp pile stitch;
[0027] The yarn laying of the first row and the second row of the fourth comb GB4 is 4-4 / 0-0 / / , forming a weft insertion stitch.
[0028] As Figure 2 shown, the first comb GB1 uses white polyester filament, performs a three-needle warp plain yarn laying movement, one-in-one-out;
[0029] The second comb GB2 uses white polyester filament, performs a two-needle warp plain yarn laying movement, full threading configuration, and the yarn laying movement directions of the first comb GB1 and the second comb GB2 are opposite;
[0030] The third comb GB3 is a stainless steel staple fiber / polyester blended yarn, performs a three-needle warp plain yarn laying, one-out-one-in, and the movement direction is the same as that of the second comb GB2;
[0031] The fourth comb GB4 is a fluff yarn, performs a four-needle weft insertion movement, full threading configuration, and finally floats on the fabric surface.
[0032] Among them, the fineness of the white polyester filament is 100D / 48F; the blending ratio of stainless steel staple fiber to polyester in the stainless steel staple fiber / polyester blended yarn is 10:90, and the yarn count of the blended yarn is 32s;
[0033] The yarn count of the fluff yarn is 10s.
[0034] Embodiment 2
[0035] A striped anti-static warp knitted velvet fabric, the fabric comprising a first guide bar GB1, a second guide bar GB2, a third guide bar GB3 and a fourth guide bar GB4. The yarn laying of the first row and the second row of the first guide bar GB1 is 2-3 / 1-0 / / , forming a warp pile stitch;
[0036] The yarn laying of the first row and the second row of the second guide bar GB2 is 1-0 / 1-2 / / , forming a warp plain stitch;
[0037] The yarn laying of the first row and the second row of the third guide bar GB3 is 1-0 / 2-3 / / , opposite to the yarn laying movement of the first guide bar GB1, forming a warp pile stitch;
[0038] The yarn laying of the first row and the second row of the fourth guide bar GB4 is 4-4 / 0-0 / / , forming a weft insertion stitch.
[0039] As Figure 2 shown, the first guide bar GB1 uses white polyester filament, performs a three-needle warp plain yarn laying movement, one-in-one-out;
[0040] The second guide bar GB2 uses white polyester filament, performs a two-needle warp plain yarn laying movement, full insertion configuration, and the yarn laying movement directions of the first guide bar GB1 and the second guide bar GB2 are opposite;
[0041] The third guide bar GB3 is a stainless steel staple fiber / polyester blended yarn, performs a three-needle warp plain yarn laying, one-out-one-in, and the movement direction is the same as that of the second guide bar GB2;
[0042] The fourth guide bar GB4 is a plush yarn, performs a four-needle weft insertion movement, full insertion configuration, and finally floats on the fabric surface.
[0043] Among them, the fineness of the white polyester filament is 120D / 72F; the blending ratio of stainless steel staple fiber to polyester in the stainless steel staple fiber / polyester blended yarn is 2:98, and the yarn count of the blended yarn is 21s;
[0044] The yarn count of the plush yarn is 8 s.
[0045] Example 3
[0046] A striped anti-static warp knitted velvet fabric, the fabric comprising a first guide bar GB1, a second guide bar GB2, a third guide bar GB3 and a fourth guide bar GB4. The yarn laying of the first row and the second row of the first guide bar GB1 is 2-3 / 1-0 / / , forming a warp pile stitch;
[0047] The yarn laying of the first row and the second row of the second guide bar GB2 is 1-0 / 1-2 / / , forming a warp plain stitch;
[0048] The yarn laying-in of the first and second courses of the third guide bar GB3 is 1-0 / 2-3 / / , which is opposite to the yarn laying-in movement of the first guide bar GB1, forming a warp pile stitch;
[0049] The yarn laying-in of the first and second courses of the fourth guide bar GB4 is 4-4 / 0-0 / / , forming a weft insertion stitch.
[0050] The first guide bar GB1 uses white polyester filament, making a three-needle warp plain yarn laying-in movement, one-in-one-out;
[0051] The second guide bar GB2 uses white polyester filament, making a two-needle warp plain yarn laying-in movement, full insertion configuration, and the yarn laying-in movement directions of the first guide bar GB1 and the second guide bar GB2 are opposite;
[0052] The third guide bar GB3 is a blended yarn of stainless steel staple fiber / polyester, making a three-needle warp plain yarn laying-in, one-out-one-in, and the movement direction is the same as that of the second guide bar GB2;
[0053] The fourth guide bar GB4 is a plush yarn, making a four-needle weft insertion movement, full insertion configuration, and finally floating on the fabric surface.
[0054] Among them, the fineness of the white polyester filament is 75D / 36F; the blending ratio of stainless steel staple fiber to polyester in the blended yarn of stainless steel staple fiber / polyester is 20:80, and the yarn count of the blended yarn is 40s;
[0055] The yarn count of the plush yarn is 16s.
[0056] Finally, it should be noted that the above specific embodiments are only used to illustrate the technical solutions of the present invention rather than to limit them. Although the present invention has been described in detail with reference to the examples, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered within the scope of the claims of the present invention.
Claims
1. A striped antistatic warp knitted velvet fabric, characterized in that: The fabric comprises a first combing bar GB1, a second combing bar GB2, a third combing bar GB3 and a fourth combing bar GB4, wherein the inlay yarns of the first row and the second row of the first combing bar GB1 are 2-3 / 1-0 / / , forming a warp pile structure; The inlay yarns of the first and second rows of the second combing bar GB2 are 1-0 / 1-2 / / , forming a warp plain weave; The inlay yarns of the first and second rows of the third combing bar GB3 are 1-0 / 2-3 / / , which is opposite to the inlay yarn movement of the first combing bar GB1, forming a warp pile structure; The inlay yarns of the first and second rows of the fourth combing bar GB4 are 4-4 / 0-0 / / , forming a weft insertion structure.
2. The striped antistatic warp knitted fleece fabric according to claim 1, characterized in that: The first combing bar GB1 uses white polyester filaments and performs three-needle warp flat yarn movement, one through and one empty; The second comb bar GB2 uses white polyester filaments and performs two-needle warp flat yarn laying motion, with full penetration configuration. The yarn laying motion directions of the first comb bar GB1 and the second comb bar GB2 are opposite; The third combing bar GB3 is made of stainless steel staple fiber / polyester blended yarn, and is made into three-needle warp flat yarn, one empty and one threaded, and the movement direction is the same as that of the second combing bar GB2; The fourth combing bar GB4 is a pile yarn, which performs a four-needle weft insertion motion, a full-threading configuration, and finally floats on the fabric surface.
3. The striped antistatic warp knitted fleece fabric according to claim 2, characterized in that: The specification of the white polyester filament is 75-300D; The blending ratio of the stainless steel staple fiber to polyester in the stainless steel staple fiber / polyester blended yarn is 1 / 49-1 / 4, and the yarn count of the blended yarn is 21-40s; The yarn count of the fluff yarn is 8-16S.