A thin organza polyester fabric
By combining a double-layer fabric structure with a nano-metal membrane, the problem of low strength in organza fabric has been solved, enabling the application of high-strength and moisture-wicking clothing fabrics.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIAXING JINGYIFAN TEXTILE TECHNICS CO LTD
- Filing Date
- 2025-05-13
- Publication Date
- 2026-06-02
AI Technical Summary
Existing organza fabrics have low strength, are easily torn and deformed, and cannot be used directly as clothing fabrics.
It adopts a double-layer fabric structure with spliced warp, including an outer warp, an inner warp, and spliced warp. It uses high-strength polyester filament and moisture-wicking polyester filament, and forms a nano-metal film on the surface to improve strength and tear resistance.
It improves the strength and tear resistance of organza fabric, while also providing moisture-wicking properties, making it suitable as a clothing fabric.
Smart Images

Figure CN224313788U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a thin organza polyester fabric, belonging to the field of organza fabric technology. Background Technology
[0002] Organza, also known as organza or organza yarn, is a lightweight, transparent or semi-transparent yarn fabric. It is often used as a lining over satin or silk as a decorative layer. However, due to its single-layer structure, organza is weak, easily torn and deformed, and its transparent or semi-transparent nature makes it unsuitable for direct use in clothing. Therefore, the challenge lies in developing a thin organza fabric suitable for garment application. Utility Model Content
[0003] The purpose of this invention is to provide a thin organza polyester fabric, which uses a double-layered fabric with spliced warp to improve the strength of the fabric and change its characteristics of being easy to tear and deform, making it suitable as a clothing fabric.
[0004] To solve the above-mentioned technical problems, the purpose of this utility model is achieved as follows:
[0005] The present invention relates to a thin organza polyester fabric, which is woven from warp and weft yarns. The warp yarns include an outer warp yarn, a bonding warp yarn, and an inner warp yarn, and the weft yarns include an outer weft yarn and an inner weft yarn.
[0006] The outer layer is formed by interlacing the outer warp and outer weft yarns, with a weight of 15-20 grams per square meter; the inner layer is formed by interlacing the inner warp and inner weft yarns, with a weight of 20-30 grams per square meter.
[0007] The splicing warp connects the outer layer and the inner layer;
[0008] The outer warp yarn is 30-50D fully dull polyester filament, and the outer weft yarn is cupro filament; the inner warp yarn is cool-feeling polyethylene filament, and the inner weft yarn is moisture-wicking polyester filament.
[0009] Based on the above scheme and as a preferred embodiment of the above scheme: the splicing warp yarn is a transparent nylon monofilament.
[0010] Based on the above scheme and as a preferred embodiment of the above scheme: the inner layer warp yarns and the inner layer weft yarns are interwoven in a satin weave.
[0011] Based on the above scheme and as a preferred embodiment of the above scheme: the surface of the outer layer away from the inner layer has a nano-metal film formed by magnetron sputtering.
[0012] Based on the above scheme and as a preferred embodiment of the above scheme: the nano metal film is a nano metal copper film or a nano metal titanium film.
[0013] The beneficial effects of this utility model are as follows: The thin organza polyester fabric involved in this utility model adopts a double-layer fabric with spliced warp, which can improve the strength of the fabric. Furthermore, the spliced warp yarns used can improve the fabric's tear resistance and resistance to deformation. In addition, the use of moisture-wicking polyester filaments and cupro filaments gives the fabric a moisture-wicking effect. Attached Figure Description
[0014] Figure 1 This is a structural schematic diagram of the thin organza polyester fabric involved in Example 1;
[0015] Figure 2 This is a fabric structure diagram of the thin organza polyester fabric involved in Example 1;
[0016] Figure 3 This is a schematic diagram of the structure of the thin organza polyester fabric involved in Example 2.
[0017] The markings in the diagram are explained as follows: 1-Outer layer; 2-Inner layer; 3-Nano metal film; 101-First outer layer warp yarn; 102-First inner layer warp yarn; 103-First knot warp yarn; 104-Second outer layer warp yarn; 105-Second inner layer warp yarn; 106-Second knot warp yarn; 107-Third outer layer warp yarn; 108-Third inner layer warp yarn; 109-Third knot warp yarn; 110-Fourth outer layer warp yarn; 111-Fourth inner layer warp yarn; 112-Fourth knot warp yarn; 201-First outer layer weft yarn; 202-First inner layer weft yarn; 203-Second outer layer weft yarn; 204-Second inner layer weft yarn; 205-Third outer layer weft yarn; 206-Third inner layer weft yarn; 207-Fourth outer layer weft yarn; 208-Fourth inner layer weft yarn. Detailed Implementation
[0018] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0019] Example 1
[0020] Combination Figure 1 and Figure 2 This embodiment provides a detailed description. The thin organza polyester fabric involved in this embodiment is woven from warp and weft yarns. The warp yarns include surface warp yarns, bonding warp yarns, and inner warp yarns, and the weft yarns include surface weft yarns and inner weft yarns. The surface warp and weft yarns interweave to form surface layer 1, with a weight of 20 grams per square meter; the inner warp and weft yarns interweave to form inner layer 2, with a weight of 30 grams per square meter; the bonding warp yarns connect surface layer 1 and inner layer 2, preventing them from separating.
[0021] The outer layer warp yarns are 50D fully dull polyester filaments, and the outer layer weft yarns are cupro filaments with a fineness of 50D. The inner layer warp yarns are cooling polyethylene filaments, and the inner layer weft yarns are moisture-wicking polyester filaments. The cooling polyethylene filaments give the fabric a cooling sensation upon contact, improving wearing comfort. The moisture-wicking polyester filaments have a cross-shaped cross-section, providing a moisture-wicking effect. The cupro filaments in the outer layer are cellulose fibers with excellent moisture absorption, thus enabling the fabric to wick away moisture.
[0022] Furthermore, the warp yarn used for bonding is a transparent nylon monofilament. The inner warp and weft yarns are interwoven in a twill weave, specifically a 1-up, 3-down twill weave.
[0023] Specifically, the outer layer warp yarns include the first outer layer warp yarn 101, the second outer layer warp yarn 104, the third outer layer warp yarn 107, and the fourth outer layer warp yarn 110; the inner layer warp yarns include the first inner layer warp yarn 102, the second inner layer warp yarn 105, the third inner layer warp yarn 108, and the fourth outer layer warp yarn 111; and the knotting warp yarns include the first knotting warp yarn 103, the second knotting warp yarn 106, the third knotting warp yarn 109, and the fourth knotting warp yarn 112. They are arranged in the order of one outer layer warp yarn, one inner layer warp yarn, and one knotting warp yarn. The outer layer weft yarns include the first outer layer weft yarn 201, the second outer layer weft yarn 203, the third outer layer weft yarn 205, and the fourth outer layer weft yarn 207; the inner layer weft yarns include the first inner layer weft yarn 202, the second inner layer weft yarn 204, the third inner layer weft yarn 206, and the fourth inner layer weft yarn 208. When introducing the weft yarn, introduce it in the order of one outer weft yarn and one inner weft yarn. Figure 2 The symbol ■ indicates the warp weave point when the surface warp and weft yarns interweave; ╳ indicates the warp weave point when the inner warp and weft yarns interweave. △ indicates the interweaving point of the knotted warp yarn and the surface weft yarn; □ indicates the interweaving point of the surface knotted warp yarn and the inner weft yarn; ○ indicates that when the inner warp and weft yarns interweave, the surface warp yarn and the knotted warp yarn are lifted.
[0024] Example 2
[0025] Combination Figure 3 This embodiment will be described in detail below. The thin organza polyester fabric involved in this embodiment differs from that in Embodiment 1 in that the surface of the outer layer 1, away from the inner layer 2, has a nano-metal film 3 formed by magnetron sputtering. The nano-metal film 3 is either a nano-copper film or a nano-titanium film. In this embodiment, a nano-copper film is selected.
[0026] The preferred embodiments of this utility model have been described in detail above. It should be understood that those skilled in the art can make numerous modifications and variations based on the concept of this utility model without creative effort. Therefore, all technical solutions that can be obtained by those skilled in the art based on the concept of this utility model through logical analysis, reasoning, or limited experimentation on the basis of existing technology should be within the scope of protection defined by the claims.
Claims
1. A thin organza polyester fabric, characterized in that, It is made of interwoven warp and weft yarns, wherein the warp yarns include outer warp yarns, knotting warp yarns and inner warp yarns, and the weft yarns include outer weft yarns and inner weft yarns; The outer layer (1) is formed by interlacing the outer warp and outer weft yarns, with a weight of 15-20 grams per square meter; the inner layer (2) is formed by interlacing the inner warp and inner weft yarns, with a weight of 20-30 grams per square meter. The connecting warp yarns connect the outer layer (1) and the inner layer (2); The outer warp yarn is 30-50D fully dull polyester filament, and the outer weft yarn is cupro filament; the inner warp yarn is cool-feeling polyethylene filament, and the inner weft yarn is moisture-wicking polyester filament.
2. The thin organza polyester fabric according to claim 1, characterized in that, The warp yarn used for bonding is a transparent nylon monofilament.
3. The thin organza polyester fabric according to claim 1, characterized in that, The inner warp and inner weft yarns are interwoven in a twill weave.
4. The thin organza polyester fabric according to claim 1, characterized in that, The surface of the outer layer (1) away from the inner layer (2) has a nano-metal film (3) formed by magnetron sputtering.
5. A thin organza polyester fabric according to claim 4, characterized in that, The nano-metal film (3) is a nano-metal copper film or a nano-metal titanium film.