Wear-resistant antiskid oxford fabric
By setting up anti-slip structures and anti-slip strips between the outer and inner layers of Oxford fabrics, the problem of insufficient anti-slip performance of existing Oxford fabrics is solved, significantly improving the anti-slip and wear resistance of the fabrics, and enhancing the safety of use.
Patent Information
- Application Number
- CN202421477112.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-26
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-06-26
AI Technical Summary
The anti-slip performance of existing Oxford fabrics is poor, which makes it easy for users to slip under slippery conditions, affecting the safety of use.
A wear-resistant and anti-slip Oxford fabric is designed. By setting an anti-slip structure and anti-slip strips between the outer layer and the inner layer, the roughness of the fabric surface is improved, thereby enhancing the anti-slip effect.
It effectively improves the anti-slip and wear resistance of the fabric, reduces friction, and enhances the overall durability and safety of the fabric.
Smart Images

Figure CN222832514U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fabrics, and more specifically, to wear-resistant and non-slip Oxford fabrics. Background Art
[0002] Oxford cloth is a kind of fabric with diverse functions and wide applications. Oxford cloth has good structural strength and anti-static properties, so Oxford cloth is often used to make daily necessities such as clothing or home textiles.
[0003] Carpet is a common indoor floor decoration material, which is loved by people for its comfort and decorativeness. Oxford cloth is one of the fabric materials for making carpets. However, if the anti-slip performance of the carpet fabric is poor, the carpet will increase the risk of slipping when it is wet to a certain extent. In order to improve the safety of carpet use, a new structure is proposed to solve the problem of poor anti-slip effect of some polyester fabrics.
[0004] Therefore, new solutions need to be proposed to solve this problem. Utility Model Content
[0005] In view of the deficiencies in the prior art, the purpose of the utility model is to provide a wear-resistant and non-slip Oxford fabric to improve the anti-slip and wear-resistant effect of the Oxford fabric.
[0006] The above technical purpose of the utility model is achieved through the following technical solutions: the wear-resistant and non-slip Oxford fabric comprises an inner layer and an outer layer fixedly connected to each other, a plurality of non-slip structures are fixedly connected to the end surface of the outer layer, the non-slip structure is in a circular ring shape, a plurality of openings are opened on the outer layer, a plurality of fixed protrusions are fixedly connected to the end surface of the inner layer close to the outer layer, the fixed protrusions extend into the openings, and a plurality of non-slip strips are fixedly connected to the top surfaces of the fixed protrusions, the non-slip strips extend out of the openings and float on the surface of the outer layer, the non-slip structure comprises a plurality of non-slip convex strips, the plurality of non-slip convex strips are arranged in an equidistant circular array, and the number of non-slip convex strips of a single non-slip structure is greater than or equal to six.
[0007] The utility model is further configured as follows: the thickness of the fixing protrusion is greater than or equal to the thickness of the outer layer, and the number of anti-slip strips on a single fixing protrusion is greater than or equal to two.
[0008] The utility model is further configured as follows: the outer layer and the inner layer adopt a warp pattern structure, and the anti-slip convex strips and the fixing convex blocks are formed by the warp pattern structure.
[0009] The utility model is further configured as follows: the warp and weft yarns of the outer layer are configured as wear-resistant yarns, the warp and weft yarns of the inner layer are configured as breathable yarns, and the anti-slip strips are configured as nylon yarns.
[0010] The utility model is further configured as follows: the wear-resistant yarn is formed by twisting a first strand and a second strand, the first strand is formed by twisting a plurality of polyester fibers, the second strand is formed by twisting a plurality of nylon shaped fibers, and the cross-section of the nylon shaped fibers is configured as a triangle.
[0011] The utility model is further configured as follows: the breathable yarn is composed of a core yarn and a covering yarn spirally wound on the outside thereof, the core yarn is formed by twisting a plurality of spandex fibers, and the covering yarn is formed by twisting a plurality of ramie fibers.
[0012] In summary, the utility model has the following beneficial effects: a plurality of anti-skid structures arranged on the outer layer can increase the roughness of the fabric surface and improve the overall anti-skid effect of the fabric, and a plurality of openings are opened on the outer layer, and the anti-skid strips on the fixed protrusions arranged on the inner layer extend out of the openings, thereby further increasing the roughness of the fabric surface to improve the overall anti-skid effect of the fabric, and the anti-skid structures and anti-skid strips can also reduce the friction on the fabric surface and improve the overall durability and wear resistance of the fabric. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a schematic diagram of the structure of the utility model;
[0014] Figure 2 It is an exploded view of the utility model;
[0015] Figure 3 This is a cross-section diagram of a wear-resistant yarn;
[0016] Figure 4 This is a slice diagram of breathable yarn;
[0017] Figure 5 This is the outer organizational chart.
[0018] In the figure: 1, outer layer; 101, opening; 2, inner layer; 3, anti-slip structure; 301, anti-slip convex strip; 4, fixed protrusion; 5, anti-slip strip; 6, wear-resistant yarn; 7, first strand; 8, second strand; 9, breathable yarn; 10, core yarn; 11, covering yarn. DETAILED DESCRIPTION
[0019] The utility model is described in detail below in conjunction with the accompanying drawings and embodiments.
[0020] Wear-resistant and non-slip Oxford fabric, such as Figure 1 and Figure 2As shown, it includes an inner layer 2 and an outer layer 1 fixedly connected to each other, a plurality of anti-skid structures 3 are fixedly connected to the end surface of the outer layer 1, the anti-skid structures 3 are in a circular ring shape, a plurality of openings 101 are opened on the outer layer 1, a plurality of fixed protrusions 4 are fixedly connected to the end surface of the inner layer 2 close to the outer layer 1, the fixed protrusions 4 extend into the openings 101, and a plurality of anti-skid strips 5 are fixedly connected to the top surfaces of the fixed protrusions 4, the anti-skid strips 5 extend out of the openings 101 and float on the surface of the outer layer 1, the anti-skid structures 3 and the anti-skid strips 5 floating on the surface of the outer layer 1 can increase the roughness of the fabric surface, increase the friction coefficient with external objects, thereby improving the overall anti-skid effect of the fabric.
[0021] like Figure 1 , Figure 2 and Figure 3 As shown, the outer layer 1 is woven from wear-resistant yarn 6, and a plurality of polyester fibers and a plurality of nylon shaped fibers are respectively put into a twisting machine for twisting to obtain a first strand 7 and a second strand 8, and the first strand 7 and the second strand 8 are fed into the twisting machine for twisting to obtain the wear-resistant yarn 6, wherein the cross section of the nylon shaped fiber is set to be triangular, and the triangular cross-section fiber fabric has much higher bending resistance and wear resistance than the circular cross-section fiber fabric, and combined with the high strength of the polyester fiber, the wear-resistant yarn 6 has good wear resistance and strength, as shown in FIG. Figure 5 As shown, wear-resistant yarn 6 and nylon yarn are fed into a multi-arm loom, and an outer layer 1 with a plurality of protrusions on the weaving surface is woven stably and sequentially according to the organization of the warp pattern structure, wherein the protrusions serve as anti-skid ridges 301, and the plurality of anti-skid ridges 301 are arranged in an equidistant circular array on the outer layer 1, and the number of the anti-skid ridges 301 is greater than or equal to six, forming an annular anti-skid structure 3, and the anti-skid structure 3 formed by the plurality of anti-skid ridges 301 can increase the roughness of the surface of the outer layer 1, thereby improving the overall anti-skid effect of the fabric.
[0022] like Figure 1 , Figure 2 and Figure 4As shown, the inner layer 2 is woven from breathable yarn 9 and nylon yarn, a number of spandex fibers and a number of ramie fibers are put into a twisting machine for twisting to obtain a core yarn 10 and a covering yarn 11, the core yarn 10 and the covering yarn 11 are fed into a mule spinning machine, and the covering yarn 11 is spirally wound around the outer side of the core yarn 10 through a mule spinning process to obtain the breathable yarn 9, the high elasticity of spandex is combined with the fluffy and breathable characteristics of ramie fiber to ensure that the breathable yarn 9 has good elasticity and breathability, the breathable yarn 9 is used as the warp and weft yarn of the ground tissue of the warp-raised flower tissue, the nylon yarn is used as the flower warp of the warp-raised flower tissue, and the breathable yarn 9 is used as the warp and weft yarn of the ground tissue of the warp-raised flower tissue. The air yarn 9 and the nylon yarn are fed into the multi-arm loom, and an inner layer 2 with several protrusions on the fabric surface is woven steadily and stepwise according to the organization sequence of the warp pattern structure. The protrusions serve as fixed protrusions 4, and then the nylon yarn is sewed onto the inner layer 2 as anti-slip strips 5 using a sewing machine. Part of the anti-slip strips 5 are in contact with the fixed protrusions 4, so that the anti-slip strips 5 float on the surface of the fixed protrusions 4, thereby increasing the roughness of the fabric surface and improving the overall anti-slip effect of the fabric. Preferably, the number of anti-slip strips 5 on a single fixed protrusion 4 is greater than or equal to two, thereby further increasing the roughness of the fabric surface to improve the overall anti-slip and wear-resistant effect of the fabric.
[0023] like Figure 1 and Figure 2 As shown, when the inner layer 2 and the outer layer 1 are fixedly connected, the end face of the inner layer 2 with the fixing protrusion 4 is facing upward, and the inner layer 2 is laid flat on a horizontal workbench, the outer layer 1 is moved closer to the inner layer 2, and the two layers are fitted together, the fixing protrusion 4 on the inner layer 2 extends into the opening 101 of the outer layer 1, and the anti-slip strip 5 on the fixing protrusion 4 extends out of the opening 101, and finally the inner layer 2 and the outer layer 1 are fixedly connected by sewing with a sewing machine, thereby completing the processing and production of this kind of wear-resistant and anti-slip Oxford fabric.
[0024] The above is only a preferred embodiment of the present invention. The protection scope of the present invention is not limited to the above embodiments. All technical solutions under the concept of the present invention belong to the protection scope of the present invention. It should be pointed out that for ordinary technicians in this technical field, some improvements and modifications without departing from the principle of the present invention should also be regarded as the protection scope of the present invention.
Claims
1. A wear-resistant and non-slip Oxford fabric, comprising an inner layer (2) and an outer layer (1) fixedly connected to each other, characterized in that: A plurality of anti-skid structures (3) are fixedly connected to the end surface of the outer layer (1), and the anti-skid structures (3) are in a circular ring shape. A plurality of openings (101) are opened on the outer layer (1). A plurality of fixed protrusions (4) are fixedly connected to the end surface of the inner layer (2) close to the outer layer (1), and the fixed protrusions (4) extend into the openings (101). A plurality of anti-skid strips (5) are fixedly connected to the top surface of the fixed protrusions (4), and the anti-skid strips (5) extend out of the openings (101) and float on the surface of the outer layer (1). The anti-skid structure (3) includes a plurality of anti-skid protrusions (301), and the plurality of anti-skid protrusions (301) are arranged in a circular array at equal intervals, and the number of anti-skid protrusions (301) of a single anti-skid structure (3) is greater than or equal to six.
2. The wear-resistant and non-slip Oxford fabric according to claim 1, characterized in that: The thickness of the fixing protrusion (4) is greater than or equal to the thickness of the outer layer (1), and the number of the anti-slip strips (5) on a single fixing protrusion (4) is greater than or equal to two.
3. The wear-resistant and non-slip Oxford fabric according to claim 2, characterized in that: The outer layer (1) and the inner layer (2) adopt a warp pattern structure, and the anti-slip convex strips (301) and the fixing protrusions (4) are formed by the warp pattern structure.
4. The wear-resistant and non-slip Oxford fabric according to claim 3, characterized in that: The warp and weft yarns of the outer layer (1) are configured as wear-resistant yarns (6), the warp and weft yarns of the inner layer (2) are configured as breathable yarns (9), and the anti-slip strip (5) is configured as nylon yarn.
5. The wear-resistant and non-slip Oxford fabric according to claim 4, characterized in that: The wear-resistant yarn (6) is formed by twisting a first strand (7) and a second strand (8), wherein the first strand (7) is formed by twisting a plurality of polyester fibers, and the second strand (8) is formed by twisting a plurality of nylon shaped fibers, wherein the cross-section of the nylon shaped fibers is set to be triangular.
6. The wear-resistant and non-slip Oxford fabric according to claim 4, characterized in that: The breathable yarn (9) is composed of a core yarn (10) and a covering yarn (11) spirally wound on the outside thereof. The core yarn (10) is formed by twisting a plurality of spandex fibers, and the covering yarn (11) is formed by twisting a plurality of ramie fibers.