Wear-resistant comfortable oxford fabric

By setting deformation support rings and wear-resistant sheets on the outer surface of the comfort layer of Oxford fabric, a deformation cavity is formed and flocking lumps are fed on the outer surface, the problems of wear and uncomfortable wearing of Oxford fabric are solved, achieving higher wear resistance and comfort.

CN222832507UActive Publication Date: 2025-05-06WUJIANG HONGDA WEAVING CO LTD
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Patent Information

Application Number
CN202421636170.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-11
Publication Date
2025-05-06
Estimated Expiration
2034-07-11

AI Technical Summary

Technical Problem

Existing Oxford fabrics are prone to wear during friction, resulting in shortening the life of the textile and not comfortable to wear.

Method used

A support ring with deformation performance is provided on the outer surface of the comfort layer to support the wear-resistant sheet to form a deformation cavity, and flocking lumps are fed on the outer surface of the wear-resistant sheet, using high wear-resistant materials and soft and hygroscopic materials.

Benefits of technology

It reduces the contact area between the fabric and external substances, improves wear resistance and wear comfort, and extends the service life of textiles.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses wear-resistant comfortable oxford cloth, which relates to the technical field of fabrics, and is characterized by comprising a comfortable layer, a plurality of support rings are arrayed on the upper end face of the comfortable layer, the support rings have deformation performance and are fixedly connected with the comfortable layer, wear-resistant sheets are arranged at one ends, far away from the comfortable layer, of the support rings, and the wear-resistant sheets are fixedly connected with the comfortable layer. The multiple supporting rings support the wear-resisting piece to form multiple deformation cavities, the wear-resisting piece is fixedly connected with the comfortable layer, the end face, away from the comfortable layer, of the wear-resisting piece is fixedly connected with a connecting strip for pressing the wear-resisting piece, and the outer end face, away from the comfortable layer, of the wear-resisting piece is fixedly connected with multiple villus clusters. According to the utility model, through the wear-resistant sheet which is arranged on the outer side of the comfortable layer and forms the deformation cavity and the fluff balls which are flocked on the outer side of the wear-resistant sheet, the wear-resistant performance of the wear-resistant fabric is improved, and meanwhile, all materials with excellent characteristics are combined and woven into the cloth, so that the overall performance of the wear-resistant fabric is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of fabrics, and more specifically, to wear-resistant and comfortable Oxford fabric. Background Art

[0002] Oxford cloth, also known as Oxford fabric, is a functional and widely used fabric originated from the University of Oxford in the United Kingdom. Oxford cloth was originally named because the student uniform shirts of Oxford University adopted this cotton fabric. It has the characteristics of light texture, soft touch, high waterproofness, strong durability, good wrinkle resistance and anti-static, and is suitable for making various clothing.

[0003] Textiles made of Oxford cloth come into contact and rub against external substances during wearing, which causes certain wear and tear on the Oxford cloth woven into the textile, thereby reducing the life of the textile. In order to increase the service life of the textile, a new solution is needed to improve the wear resistance of the cloth while increasing wearing comfort. Utility Model Content

[0004] In view of the deficiencies in the prior art, the utility model aims to provide wear-resistant and comfortable Oxford fabric.

[0005] The above technical purpose of the utility model is achieved through the following technical solutions: wear-resistant and comfortable Oxford cloth, including a comfort layer, the upper end surface array of the comfort layer is provided with a plurality of support rings, the support rings have deformation properties and are fixedly connected to the comfort layer, the end of the support ring away from the comfort layer is provided with a wear-resistant sheet, a plurality of raised support rings support the wear-resistant sheet to form a plurality of deformation cavities, the wear-resistant sheet is fixedly connected to the comfort layer, the end surface of the wear-resistant sheet away from the comfort layer is fixedly connected with a connecting strip of a pressed wear-resistant sheet, and the outer end surface of the wear-resistant sheet away from the comfort layer is fixedly connected with a plurality of fluff balls.

[0006] The utility model is further configured as follows: the wear-resistant sheet is formed by interweaving cotton yarn and polyester yarn, and the weaving structure of the wear-resistant sheet is set as plain weave.

[0007] The utility model is further configured as follows: the support ring is formed by interweaving a composite yarn in a twill weave manner, the composite yarn is formed by twisting at least three strands of nylon shaped fibers, and the cross-section of the nylon shaped fibers is cross-shaped.

[0008] The utility model is further configured as follows: the connecting strip is formed by woven linen yarns in a twill weave manner, and the linen yarn is formed by twisting at least three strands of linen fibers.

[0009] The utility model is further configured as follows: the comfort layer is woven with pure cotton warp and weft yarns, and the woven structure of the comfort layer is configured as twill.

[0010] The utility model is further configured as follows: the distance between the top of the support ring and the comfort layer is set to 0.6mm-0.8mm, and the thickness of the connecting strip is set to 0.3mm-0.5mm.

[0011] The utility model is further configured as follows: the fluff balls are configured as simulated rabbit hair flocked on the outer end surface of the wear-resistant sheet, and the simulated rabbit hair is flocked by mixing polyester fiber and propylene fiber.

[0012] To sum up, the utility model has the following beneficial effects: the utility model uses a support ring with deformation properties on the outer surface of the comfort layer to support the wear-resistant sheet to form a certain deformation cavity, thereby reducing the contact area between the utility model and external substances, and at the same time, flocking is performed on the outer surface of the wear-resistant sheet away from the comfort layer to further improve the wear resistance of the fabric. At the same time, materials with high wear resistance and relatively soft and moisture-absorbent materials are selected to improve the wear resistance and wearing comfort of the utility model. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a schematic diagram of the structure of the utility model;

[0014] Figure 2 This is a slice diagram of a composite yarn 1 in the utility model.

[0015] In the figure: 1. Comfort layer; 2. Support ring; 21. Composite yarn 1; 211. Nylon shaped fiber; 3. Wear-resistant sheet; 4. Fluff ball; 5. Connecting strip. DETAILED DESCRIPTION

[0016] The utility model is described in detail below in conjunction with the accompanying drawings and embodiments.

[0017] Example: Wear-resistant and comfortable Oxford fabric, such as Figure 1 , Figure 2As shown, it includes a comfort layer 1, and the upper end surface of the comfort layer 1 is sewn with a plurality of support rings 2 in an array by a sewing machine. The support ring 2 has deformation properties and is fixedly connected to the comfort layer 1. Through the deformation properties of the support ring 2, when the support ring 2 is convex, the support ring 2 can have a better bearing capacity under the action of its own elastic force. The end of the support ring 2 away from the comfort layer 1 is provided with a wear-resistant sheet 3, and the wear-resistant sheet 3 is bonded to the comfort layer 1 through a hot-melt adhesive machine. The wear-resistant sheet 3 is supported by the plurality of support rings 2 to form a plurality of deformation cavities. The setting of the comfort layer 1 ensures that the fabric can bring a comfortable wearing experience to the human body when it fits the human body. By setting the wear-resistant sheet 3 forming the deformation cavity on the outer side of the comfort layer 1, the contact area between the fabric and the external substances is reduced, so that the fabric is prevented from being broken due to friction with the external substances, and the wear resistance of the fabric is increased. The end surface of the wear-resistant sheet 3 away from the comfort layer 1 is fixedly connected with a pressure The connecting strip 5 of the wear-resistant sheet 3 is sewn by a sewing machine to press the wear-resistant sheet 3 between the connecting strip 5 and the comfort layer 1. The setting of the connecting strip 5 not only strengthens the connection stability between the wear-resistant sheet 3 and the comfort layer 1, but also limits the size of the deformation cavity through the connecting strip 5, thereby ensuring that the size of the fabric meets the requirements for making clothes. Through the setting of the deformation cavity, a certain deformation performance is added to the wear-resistant sheet 3, thereby increasing the wear resistance of the fabric. At the same time, the smaller the deformation cavity, the greater the force required for the deformation of the deformation cavity under the deformation performance force of the wear-resistant sheet 3. A number of fluff balls 4 are fixedly connected to the outer end face of the wear-resistant sheet 3 away from the comfort layer 1. The fluff balls 4 are flocked on the wear-resistant sheet 3 by a flocking machine, and a wear-resistant layer composed of fluff balls 4 is added on the outer side of the wear-resistant sheet 3, thereby increasing the wear resistance of the fabric, thereby further improving the wear resistance of the utility model.

[0018] like Figure 1 As shown, the wear-resistant sheet 3 is configured as Oxford cloth interwoven with cotton yarn and polyester yarn by a water jet loom. The weaving structure of the wear-resistant sheet 3 is configured as plain weave. Oxford cloth has the advantages of good wear resistance and strong wrinkle resistance. The overall wear resistance of the utility model is increased through the characteristics of the material itself.

[0019] like Figure 1As shown, the support ring 2 is formed by interweaving a composite yarn 21 in a twill weave manner, and the composite yarn 21 is formed by twisting nylon shaped fibers 211 through a twisting machine. The nylon shaped fibers 211 of the twisted composite yarn 21 are at least three strands, and the cross-section of the nylon shaped fibers 211 is cross-shaped. The composite yarn 21 twisted by the nylon shaped fibers 211 itself has certain deformation properties, and the cross-shaped nylon shaped fibers 211 have strong elasticity. Therefore, the support ring 2 itself has good wear resistance and increases the structural stability of the support ring 2. The distance between the top of the support ring 2 and the comfort layer 1 is set to 0.6mm-0.8mm. The height setting of the support ring 2 ensures that it can resist the top of the deformation cavity. The height of the deformation cavity is limited by limiting the height of the support ring 2, thereby limiting the thickness of the entire fabric, reducing the weight of the entire fabric, increasing the wearing experience of the fabric, and improving the comfort of the textile made of the fabric.

[0020] like Figure 1 As shown, the connecting strip 5 is made of linen yarn interwoven in a twill weave through a braiding machine. The linen yarn is made of at least three strands of flax fiber twisted by a twisting machine. The thickness of the connecting strip 5 is 0.3mm-0.5mm. The connecting strip 5 and the comfort layer 1 are sewn through the wear-resistant sheet 3 by a sewing machine. The connecting strip 5 made of linen yarn has the advantages of being soft and comfortable, beautiful and durable, highly wrinkle-resistant, and easy to process. The material selection increases the durability of the utility model. By limiting the thickness of the connecting strip 5 to 0.3-0.5mm, the weight of the connecting strip 5 is further reduced, making the textiles made of the fabric easy to wear and increasing the wearing comfort.

[0021] like Figure 1 As shown, the comfort layer 1 is configured to be made of pure cotton warp and weft yarns woven by a weaving machine, and the weaving structure of the comfort layer 1 is configured to be twill. The pure cotton warp and weft yarns have excellent moisture absorption and softness, and the comfort layer 1 is more comfortable when it fits the human body.

[0022] like Figure 1 As shown, the fluff ball 4 is flocked with simulated rabbit hair on the outer end surface of the wear-resistant plate 3. The simulated rabbit hair is made by mixing polyester fiber and propylene fiber and processing it with a fluff machine. The simulated rabbit hair is a low-cost artificial hair. At the same time, the simulated rabbit hair mixed with polyester fiber and propylene fiber has high durability, so that the utility model can perform the first buffer through the fluff ball 4 when contacting external substances, avoiding direct contact between the wear-resistant plate 3 and external substances, thereby further improving the wear resistance of the utility model.

[0023] like Figure 1 , Figure 2As shown, in the processing of the utility model, the pure cotton warp and weft yarns are woven into a comfort layer 1 in a twill manner by a braiding machine, at least three strands of nylon shaped fibers 211 are twisted by a twisting machine to form a composite yarn 21, the composite yarn 21 is interwoven into a strip support ring 2 by a braiding machine, and then the support ring 2 is sewn to the outer surface of the comfort layer 1 by a sewing machine to form a protrusion, the cotton yarn and the polyester yarn are woven into a wear-resistant sheet 3 in a plain weave manner by a water jet loom, at least three strands of flax fibers are twisted into flax yarn by a twisting machine, and then the flax yarn is woven into a twill weave by a braiding machine. The connecting strip 5 is woven into a connecting strip 5, polyester fiber and propylene fiber are processed into simulated rabbit hair by a fluff machine, and then the simulated rabbit hair is flocked on the surface of the wear-resistant sheet 3 by a flocking machine, and then the whole wear-resistant sheet 3 is cut to a specified size by a cutting tool, and then the two sides of the cut wear-resistant sheet 3 are bonded to the outer surface of the comfort layer 1 by a hot-melt bonding machine, and then the connecting strip 5 made of linen yarn cut to a fixed size and thickness is used. The wear-resistant sheet 3 is pressed and sewn with the comfort layer 1 by a sewing machine, and finally the utility model with strong wear resistance and high comfort is formed.

[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 comfortable Oxford fabric, comprising a comfort layer (1), characterized in that: The upper end surface array of the comfort layer (1) is provided with a plurality of support rings (2), the support rings (2) having deformation properties and being fixedly connected to the comfort layer (1), the end of the support ring (2) away from the comfort layer (1) being provided with a wear-resistant sheet (3), the plurality of support rings (2) supporting the wear-resistant sheet (3) forming a plurality of deformation cavities, the wear-resistant sheet (3) being fixedly connected to the comfort layer (1), the end surface of the wear-resistant sheet (3) away from the comfort layer (1) being fixedly connected with a connecting strip (5) for pressing the wear-resistant sheet (3), and the outer end surface of the wear-resistant sheet (3) away from the comfort layer (1) being fixedly connected with a plurality of fluff balls (4).

2. The wear-resistant and comfortable Oxford fabric according to claim 1, characterized in that: The wear-resistant sheet (3) is formed by interweaving cotton yarn and polyester yarn, and the weaving structure of the wear-resistant sheet (3) is set to be plain weave.

3. The wear-resistant and comfortable Oxford fabric according to claim 1, characterized in that: The support ring (2) is formed by interweaving a composite yarn (21) in a twill weave manner; the composite yarn (21) is formed by twisting at least three strands of nylon shaped fibers (211); and the cross section of the nylon shaped fibers (211) is cross-shaped.

4. The wear-resistant and comfortable Oxford fabric according to claim 1, characterized in that: The connecting strip (5) is formed by interweaving flax yarn in a twill weave manner, and the flax yarn is formed by twisting at least three strands of flax fibers.

5. The wear-resistant and comfortable Oxford fabric according to claim 1, characterized in that: The comfort layer (1) is woven from pure cotton warp and weft yarns, and the woven structure of the comfort layer (1) is set as twill.

6. The wear-resistant and comfortable Oxford fabric according to claim 1, characterized in that: The distance between the top of the support ring (2) and the comfort layer (1) is set to 0.6 mm-0.8 mm, and the thickness of the connecting strip (5) is set to 0.3 mm-0.5 mm.

7. The wear-resistant and comfortable Oxford fabric according to claim 1, characterized in that: The fluff balls (4) are arranged as simulated rabbit hair flocked on the outer end surface of the wear-resistant sheet (3), and the simulated rabbit hair is flocked by mixing polyester fiber and acrylic fiber.