Four-side elastic non-ironing fabric
By combining a double-layer fabric structure and yarn combination with a hydrogel printing layer, the problems of insufficient elasticity, wrinkle-free properties and antibacterial properties in existing technologies are solved, realizing the multi-functionality of four-way stretch fabric and meeting consumer needs.
Patent Information
- Application Number
- CN202423021886.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-09
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-09
AI Technical Summary
Existing technologies make it difficult to provide a four-way stretch fabric that has both good elasticity and wrinkle-free properties, as well as antibacterial and heat-generating effects.
The fabric employs a double-layer structure, combining different yarns, including composite yarns, elastic twisted yarns, antibacterial composite yarns, and elastic open-knit yarns, along with a hydrogel printing layer, to achieve multifunctionality.
It achieves high elasticity, wrinkle-free properties, antibacterial properties, and skin-friendly properties in the fabric, meeting consumers' needs for comfortable, easy-care, and healthy wear.
Smart Images

Figure CN223522752U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of textile technology, concretely relates to a four-way stretch fabric which not only has good elasticity, good ironing-free property, but also has antibacterial effect, heating effect and skin-friendly effect. BACKGROUND
[0002] Influenced by the era of scientific and technological revolution, the scientific research technology of the textile industry is increasingly developed and refined, and the textile products gradually move towards "functionalization" and "intelligentization", in order to meet the demand of the consumer market, the products of comfortable wearing, easy care and healthy wearing emerge as the times require.
[0003] It is the main research direction of the rapid development of the textile field at present to fully utilize the new technology of the new era and produce multifunctional and high-performance textiles in combination with market demand. SUMMARY
[0004] The utility model relates to a four-way stretch fabric which not only has good elasticity, good ironing-free property, but also has antibacterial effect, heating effect and skin-friendly effect.
[0005] The utility model provides a kind of four-way stretch ironing-free fabric, including fabric body, the fabric body includes surface layer and inner layer, the surface layer is by surface layer warp yarn and surface layer weft yarn vertical interweave;The inner layer is by inner layer warp yarn and inner layer weft yarn vertical interweave;The surface layer and inner layer are connected by jointing;The surface layer warp yarn is composite yarn, and the composite yarn includes inner core yarn, intermediate yarn and outer layer yarn sequentially arranged on the outer side of inner core yarn from inside to outside;The inner layer warp yarn is elastic and twisted yarn, including first elastic yarn and second elastic yarn;The surface layer weft yarn is antibacterial composite yarn, including composite core yarn and antibacterial yarn arranged on the outer side of composite core yarn;The inner layer weft yarn is elastic empty package yarn;The upper end of surface layer is provided with hydrogel printing layer.
[0006] Further, the hydrogel printing layer is printed on the surface of the surface layer by the hydrogel through the coating printing.
[0007] Further, the total area of the hydrogel printing layer is not more than 50% of the area of the surface layer.
[0008] Further, the inner core yarn is spandex monofilament with a fineness of 30D;The intermediate yarn is far-infrared polyester yarn with a fineness of 60S;The outer layer yarn is Tencel / cotton blended yarn with a fineness of 60S.
[0009] Further, the first elastic yarn is SORONA filament with a fineness of 100D;The second elastic yarn is spandex monofilament with a fineness of 30D.
[0010] Further, the composite core yarn is a core-sheath structure filament with a core layer of polyurethane and a sheath layer of polyamide.
[0011] Further, the fineness of the composite core yarn is 100D, and the weight ratio of polyurethane is 30%.
[0012] Further, in the Tencel / cotton blended yarn, the weight ratio of Tencel is 50%.
[0013] Further, the elastic empty covered yarn is formed by air covering and combining spandex with a fineness of 20D and polyester with a fineness of 100D.
[0014] Compared with the prior art, the utility model has the advantages that:
[0015] (1) the fabric body of the utility model is double-layer fabric structure knitting, and various functions of the fabric body are realized through the combination of different yarns.
[0016] (2) the warp and weft yarns of the fabric of the utility model are all elastic yarns, so that the fabric has the effects of four-way stretch and ironing-free.
[0017] (3) the fabric of the utility model is provided with a hydrogel printing layer, the performance of hydrogel is fully utilized, and the fabric is endowed with better skin-friendly performance. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 is the structure schematic view of the fabric provided by the utility model.
[0019] Figure 2 is the structure schematic view of the composite yarn in the embodiment of the utility model.
[0020] Figure 3 is the structure schematic view of the elastic cabled yarn in the embodiment of the utility model.
[0021] Figure 4 is the structure schematic view of the antibacterial composite yarn in the embodiment of the utility model.
[0022] Figure 5 is the weave diagram of the fabric body in the embodiment of the utility model.
[0023] Figures 1-4 in the embodiment, 1, fabric body; 2, inner core yarn; 3, intermediate yarn; 4, outer layer yarn; 5, first elastic yarn; 6, second elastic yarn; 7, composite core yarn; 8, antibacterial yarn; 9, hydrogel printing layer; 11, surface layer; 12, inner layer.
[0024] Figure 5In the diagram, 1, 2, 3, 4, 5, and 6 on the left are the outer layer weft yarns, and 1, 2, 3, 4, 5, and 6 on the bottom are the outer layer warp yarns; 1, II, III, IV, V, and VI on the left are the inner layer weft yarns, and 1, II, III, W, V, and VI on the bottom are the inner layer warp yarns; "■" indicates an outer layer warp float; "○" indicates that the outer layer warp is raised when the inner weft is woven in; "x" indicates that the inner layer warp is raised when the inner weft is woven in; "△" indicates a junction point where the inner weft is above the outer layer warp. Detailed Implementation
[0025] The present invention will be further described in detail below with reference to the accompanying drawings. The embodiments described are exemplary and intended to explain the present invention, and should not be construed as limiting the present invention. The textual descriptions in this embodiment correspond to the accompanying drawings, and the descriptions involving orientation are also based on the descriptions in the accompanying drawings, and should not be construed as limiting the scope of protection of the present invention.
[0026] like Figures 1-5 As shown, a four-way stretch wrinkle-free fabric includes a fabric body 1, which includes an outer layer 11 and an inner layer 12. The outer layer 11 is formed by vertically interlacing outer warp yarns and outer weft yarns; the inner layer 12 is formed by vertically interlacing inner warp yarns and inner weft yarns; the outer layer 11 and inner layer 12 are connected by a splice; the outer warp yarn is a composite yarn, which includes an inner core yarn 2, an intermediate yarn 3 and an outer layer yarn 4 arranged sequentially from the inside to the outside of the inner core yarn 2; the inner warp yarn is an elastic twisted yarn, which includes a first elastic yarn 5 and a second elastic yarn 6; the outer weft yarn is an antibacterial composite yarn, which includes a composite core yarn 7 and an antibacterial yarn 8 arranged outside the composite core yarn 7; the inner weft yarn is an elastic air-wrapped yarn, which is formed by air-wrapping and combining 20D spandex and 100D polyester. A hydrogel printing layer 9 is provided on the upper end of the surface layer 11; the hydrogel printing layer 9 is printed on the surface of the surface layer 11 by hydrogel through coating printing; the total area of the hydrogel printing layer 9 is not greater than 50% of the area of the surface layer 11. The inner core yarn 2 is a 30D spandex monofilament; the middle yarn 3 is a 60S far-infrared polyester yarn; the outer yarn 4 is a 60S Tencel / cotton blended yarn; in the Tencel / cotton blended yarn, the weight ratio of Tencel is 50%. The first elastic yarn 5 is a 100D SORONA filament; the second elastic yarn 6 is a 30D spandex monofilament. The composite core yarn 7 is a core-sheath structure filament with a polyurethane core and a polyamide sheath; the composite core yarn 7 has a fineness of 100D and the weight ratio of polyurethane is 30%; the antibacterial yarn 8 is a 60S copper ion modified polyester fiber yarn.
[0027] The fabric body 1 has a double-layer structure with warp and outer layers. The outer layer uses a 2 / 1 twill weave and the inner layer uses a 1 / 2 twill weave. The ratio of the outer and inner weft yarns is 1:1. The warp and outer layers are joined using a 1 / 5 twill weave.
[0028] In addition to the above-mentioned embodiments, the utility model also includes other implementation manners, and the technical scheme formed by using equivalent transformation or equivalent replacement should fall within the protection scope of the utility model claims.
Claims
1. A stretch-woven non-iron fabric comprising a fabric body (1), characterized in that, The fabric body (1) comprises a surface layer (11) and an inner layer (12), the surface layer (11) is vertically interwoven by surface layer warp yarns and surface layer weft yarns; the inner layer (12) is vertically interwoven by inner layer warp yarns and inner layer weft yarns; the surface layer (11) and the inner layer (12) are connected by bonding; the surface layer warp yarns are composite yarns, the composite yarns comprise an inner core yarn (2), an intermediate yarn (3) and an outer layer yarn (4) arranged outside the inner core yarn (2) in sequence from inside to outside; the inner layer warp yarns are elastic and twisted yarns, comprising a first elastic yarn (5) and a second elastic yarn (6); the surface layer weft yarns are antibacterial composite yarns, the antibacterial composite yarns comprise a composite core yarn (7) and an antibacterial yarn (8) arranged outside the composite core yarn (7); the inner layer weft yarns are elastic empty package yarns; the upper end of the surface layer (11) is provided with a hydrogel printing layer (9).
2. The four-way stretch non-iron fabric of claim 1, wherein, The hydrogel printing layer (9) is printed on the surface of the surface layer (11) by printing hydrogel through paint.
3. The four-way stretch non-iron fabric of claim 1, wherein, The total area of the hydrogel printing layer (9) is not greater than 50% of the area of the surface layer (11).
4. The four-way stretch noniron fabric of claim 1, wherein, The inner core yarn (2) is a spandex monofilament with a fineness of 30D; the intermediate yarn (3) is a far infrared polyester yarn with a fineness of 60S; and the outer layer yarn (4) is a Tencel / cotton blended yarn with a fineness of 60S.
5. The four-way stretch noniron fabric of claim 1, wherein, The first elastic yarn (5) is a SORONA filament with a fineness of 100D; and the second elastic yarn (6) is a spandex monofilament with a fineness of 30D.
6. The four-way stretch noniron fabric of claim 1, wherein, The composite core yarn (7) is a skin-core structure filament with a core layer of polyurethane and a skin layer of polyamide.