Oxford fabric

By weaving and tufting the base fabric layer of Oxford cloth to form a loop structure and laying elastic yarn bundles on the surface, the problem of easy peeling between the base fabric layer and the coating layer is solved, achieving good peel resistance and deformation recovery effect.

CN223835184UActive Publication Date: 2026-01-27WUJIANG XINXING WEAVING CO LTD
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Patent Information

Application Number
CN202520044004.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-09
Publication Date
2026-01-27
Estimated Expiration
2035-01-09

AI Technical Summary

Technical Problem

Existing Oxford cloth is prone to peeling between the base fabric layer and the coating layer due to repeated deformation when subjected to blunt force, resulting in a decrease in durability.

Method used

The base fabric layer is made of interwoven ground and wool fabrics, coated with a loop structure, and parallel elastic yarn bundles are laid on the surface of the base fabric layer to provide a restoring force in the length direction, thereby enhancing the connection strength and deformation capability between the base fabric layer and the coating.

Benefits of technology

It improves the peel resistance and deformation recovery ability of the base fabric layer and coating, ensuring that the Oxford cloth is not easily peeled off under external force and can quickly return to its original shape.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an oxford fabric, which relates to textile fabrics, and is characterized in that the oxford fabric comprises an S-shaped base fabric layer, coatings are coated on two sides of the base fabric layer, the base fabric layer is formed by weaving a ground weave and a wool weave, a plurality of terry structures are formed on the surface of the wool weave and the surface of the base fabric layer, and the terry structures are arranged on the surface of the base fabric layer. And the coating coats the looped pile structure when being formed outside the base cloth layer in a coating manner. The base cloth layer is formed by weaving the ground weave and the wool weave on the weave structure, and a looped pile structure can be formed on the surface of the base cloth layer through the weave structure of the wool weave, so that the contact area between the base cloth layer and the coating is increased, and after the coating is flatly and thickly coated, the base cloth layer and the coating have good anti-stripping performance.
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Description

Technical Field

[0001] This utility model relates to textile fabrics, and more specifically, to an Oxford cloth. Background Technology

[0002] Oxford cloth, also known as Oxford weave, is a versatile and widely used fabric. The main varieties on the market include: checkered, full stretch, nylon, and jacquard. It is also commonly used in the production of shirts, clothing, various bags, flood and rain protection products, and other fields.

[0003] Chinese Patent Publication No. CN217553370U discloses a coated Oxford cloth, the key technical points of which are: it includes an outer coating layer, a base fabric layer and an inner coating layer stacked sequentially from top to bottom. The base fabric layer is S-shaped and includes an upper connecting portion and a lower connecting portion. The coating layer includes a plurality of continuous U-shaped units, each U-shaped unit including a bottom and a vertical portion. The lower bottom surface of the U-shaped unit of the outer coating layer is connected to the upper surface of the upper connecting portion of the base fabric, and the inner surface of the vertical portion of the U-shaped unit of the outer coating layer is connected to the vertical connecting portion. The upper bottom surface of the U-shaped unit of the inner coating layer is connected to the lower surface of the lower connecting portion of the base fabric, and the inner surface of the vertical portion of the U-shaped unit of the inner coating layer is connected to the vertical connecting portion.

[0004] The S-structure in the above scheme gives Oxford cloth considerable extensibility, allowing it to avoid being punctured when struck by a blunt object. However, in existing Oxford cloth, when the surface is coated, the outer and inner coating layers are formed outside the S-shaped base fabric layer. When struck by a blunt object, the base fabric layer can deform in an S-shape to prevent the Oxford cloth from being punctured. However, due to the deformation of the base fabric layer, the inner or outer coating layer will also deform under stress. Repeated deformation can easily cause the base fabric layer to peel off from the outer or inner coating layer.

[0005] Therefore, a new solution is needed to address this problem. Utility Model Content

[0006] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide an Oxford cloth.

[0007] The above-mentioned technical objective of this utility model is achieved through the following technical solution: Oxford cloth, including a base fabric layer arranged in an S-shape, with a coating on both sides of the base fabric layer, the base fabric layer being woven from a ground fabric and a wool fabric, the wool fabric forming a plurality of loop structures on the surface of the base fabric layer, and the coating coating covering the loop structures when it is applied to the outside of the base fabric layer.

[0008] The present invention is further configured such that: a plurality of elastic wire bundles extending along the bending and folding direction are provided outside the base fabric layer, and the plurality of elastic wire bundles are wrapped in the coating and arranged parallel to each other, for providing the base fabric layer or coating with a restoring force along its length direction.

[0009] The present invention is further configured such that: the ground structure is woven from warp and weft yarns of two systems, the warp yarns include fine yarns and roving yarns, a plurality of the fine yarns are interwoven with the warp and weft yarns of the same system, and the roving yarns are interwoven with the warp and weft yarns of another system.

[0010] The present invention is further configured such that: the thickness of the roving is greater than the thickness of the fine yarn; the wool structure includes warp and weft yarns interwoven by the roving and fine yarns as a system; the other fine yarn is interwoven with the weft yarn; and the weft yarn forms a loop structure on the side where the roving and fine yarns are the warp yarns.

[0011] The present invention is further configured such that: the fine yarn is made of several strands of polyester fiber twisted together, the roving is made of several strands of Kevlar fiber twisted together, and the weft yarn is made of several strands of nylon fiber twisted together.

[0012] The present invention is further configured such that the elastic cord is formed by twisting several strands of spandex fibers.

[0013] In summary, this utility model has the following beneficial effects:

[0014] The base fabric layer in this application is woven from ground and wool structures. The wool structure can form loop structures on the surface of the base fabric layer, thereby increasing the contact area between the base fabric layer and the coating. As a result, after the coating is applied smoothly and thickly, the base fabric layer and the coating have good anti-peel properties.

[0015] Several elastic cords are laid flat on the surface of the base fabric layer. The elastic cords provide a restoring force along their length direction. When the Oxford cloth is punctured by an external force, the base fabric layer and the coating layer deform. The S-shaped base fabric layer has good deformation ability, and the elastic cords can provide a restoring force when shrinking. Thus, after the external force is removed, the coating layer and the base fabric layer can be well restored. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 This is a diagram of the organizational structure of this utility model.

[0018] In the diagram: 1. Base fabric layer; 2. Coating layer; 3. Loop structure; 4. Elastic yarn bundle; 5. Medium yarn; 6. Roving. Detailed Implementation

[0019] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0020] like Figure 1 As shown, Oxford cloth includes an S-shaped base fabric layer 1, with coatings 2 applied to both sides of the base fabric layer 1. The base fabric layer 1 is woven from a ground weave and a wool weave. The wool weave and the surface of the base fabric layer 1 form several loop structures 3. When the coating 2 is applied to the outside of the base fabric layer 1, it covers the loop structures 3. Several elastic yarn bundles 4 are provided outside the base fabric layer 1, extending along its bending and folding direction. The elastic yarn bundles 4 are wrapped inside the coating 2 and arranged parallel to each other to provide restoring force to the base fabric layer 1 or the coating 2 along its length direction.

[0021] like Figure 2 As shown, the ground structure is woven from two systems of warp and weft yarns. The warp yarns include fine yarn 5 and roving 6. Several fine yarns 5 are interwoven with the weft yarns as warp yarns of the same system, and the roving 6 is interwoven with the weft yarns of another system. Specifically, in this embodiment, the weft yarns and fine yarns 5 are woven in a 2 / 1 structure, while the roving 6 and the weft yarns are woven in an up-down structure on the basis of the weft yarns and fine yarns 5, thus forming a ground structure structure woven from two fine yarns 5 and one roving 6 with the weft yarns. The wool structure is woven from the warp and weft yarns of the roving 6 and fine yarns 5 as one system, and another fine yarn 5 is interwoven with the weft yarns. The weft yarns form loop structures 3 on the side where the roving 6 and fine yarns 5 are warp yarns, wherein the thickness of the roving 6 is greater than the thickness of the fine yarns 5.

[0022] Among them, the fine yarn 5 is made of several strands of polyester fiber twisted together, the roving 6 is made of several strands of Kevlar fiber twisted together, the weft yarn is made of several strands of nylon fiber twisted together, and the elastic yarn bundle 4 is made of several strands of spandex fiber twisted together. Specifically, the fine yarn 5 is made of 300D semi-dull polyester FDY produced by Zhejiang Guxiandao Green Fiber Co., Ltd., with a breaking strength of 4.0cN / dtex. The roving 6 is made of 400D Kevlar yarn, the weft yarn is made of 210D nylon yarn, and the weft yarn is made of 105D spandex yarn.

[0023] Working principle: By wrinkling the base fabric layer 1 to form an S-shaped structure, the Oxford cloth can have good elongation along the wrinkle direction. In this application, the base fabric layer 1 is modified in terms of its weave structure. Through the weave structure of ground weave and pile weave, the base fabric layer 1 of the Oxford cloth has a high weave density. At the same time, the loop structure 3 formed on the surface of the base fabric layer 1 by the pile weave can achieve full contact between the loop structure 3 on the surface of the base fabric layer 1 and the coating material when the coating 2 is applied to the surface of the base fabric layer 1, thereby improving the peel resistance of the base fabric layer 1 and the coating 2. Furthermore, several elastic yarn bundles 4 are laid flat on the surface of the base fabric layer 1 along the wrinkle direction of the base fabric layer 1, thereby providing elastic recovery force along the length direction of the elastic yarn bundles 4. When the Oxford cloth is punctured by external force, the coating 2 and the base fabric layer 1 have good bonding strength and avoid peeling. At the same time, the elastic recovery force provided by the elastic yarn bundles 4 can promote the recovery of the base fabric layer 1 and the coating 2 after the external force is removed.

[0024] 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. 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. An Oxford cloth comprising a base fabric layer (1) arranged in an S-shape, wherein both sides of the base fabric layer (1) are coated with a coating layer (2), characterized in that: The base fabric layer (1) is woven from ground fabric and wool fabric. The wool fabric and the surface of the base fabric layer (1) form a plurality of loop structures (3). When the coating (2) is applied to the outside of the base fabric layer (1), it covers the loop structures (3).

2. The Oxford cloth according to claim 1, characterized in that: The base fabric layer (1) is provided with a plurality of elastic wire bundles (4) extending along its bending and folding direction. The plurality of elastic wire bundles (4) are wrapped in the coating layer (2) and arranged parallel to each other to provide the base fabric layer (1) or the coating layer (2) with a restoring force along its length direction.

3. The Oxford cloth according to claim 1, characterized in that: The weave is made of two systems of warp and weft yarns. The warp yarns include fine yarn (5) and roving (6). Some of the fine yarns (5) are interwoven with the weft yarns as warp yarns of the same system, and the roving (6) is interwoven with the weft yarns as warp yarns of another system.

4. The Oxford cloth according to claim 3, characterized in that: The thickness of the roving (6) is greater than that of the fine yarn (5). The wool structure includes the interlacing of warp and weft yarns of the roving (6) and fine yarn (5) as a system, the interlacing of the other fine yarn (5) with the weft yarn, and the weft yarn forming a loop structure (3) on one side of the roving (6) and fine yarn (5) as warp yarns.

5. The Oxford cloth according to claim 3, characterized in that: The fine yarn (5) is made by twisting several strands of polyester fiber, the roving (6) is made by twisting several strands of Kevlar fiber, and the weft yarn is made by twisting several strands of nylon fiber.

6. The Oxford cloth according to claim 2, characterized in that: The elastic cord bundle (4) is made of several strands of spandex fibers twisted together.

Citation Information

Patent Citations

  • Coated oxford fabric

    CN217553370U