Air-jet texturing chinlon coated yarn

By adding a composite layer, a coating layer, a reinforcing layer, and a coating layer to the outside of the air-conditioned nylon main yarn, the problem of the single function of air-conditioned nylon coated yarn is solved, and the performance diversification and stability improvement are achieved.

CN223892967UActive Publication Date: 2026-02-10WUJIANG YATAI CHEM TEXTILE
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520367336.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2026-02-10
Estimated Expiration
2035-03-05

AI Technical Summary

Technical Problem

The existing air-textured nylon coated yarn has a simple structure, resulting in limited functionality and making it difficult to diversify and improve it according to usage requirements.

Method used

A composite layer, a covering layer, a reinforcing layer, and a coating layer are set outside the air-conditioned nylon main line. The composite layer is composed of antistatic yarn, tensile yarn, antibacterial yarn, odor-resistant yarn, nylon yarn, sweat-absorbing yarn, breathable yarn, elastic yarn, abrasion-resistant yarn, and radiation-resistant yarn. The covering layer is used to wrap the composite layer. The reinforcing layer is composed of polyester yarn. The coating layer is set outside the reinforcing layer.

Benefits of technology

By combining multiple layers, the overall performance of air-textured nylon covered yarn is significantly improved, enhancing its functional versatility and stability to meet different application needs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223892967U_ABST
    Figure CN223892967U_ABST
Patent Text Reader

Abstract

The utility model discloses an air-jet texturing chinlon coated yarn, which relates to the field of silk yarn and comprises an air-jet texturing chinlon main yarn, a composite layer arranged outside the air-jet texturing chinlon main yarn, a coating layer arranged outside the composite layer and used for coating and shaping the composite layer, a strengthening layer arranged outside the coating layer and a coating layer arranged outside the strengthening layer. The anti-static silk yarn is arranged between the coating layer and the air-jet texturing chinlon main line, and the anti-bacterial silk yarn and the odor-resistant silk yarn are adjacently arranged between the coating layer and the air-jet texturing chinlon main line. According to the air-jet texturing chinlon yarn, the air-jet texturing chinlon main yarn, the composite layer, the wrapping layer, the strengthening layer and the film coating layer are used in a matched mode, and the anti-static silk threads, the stretching-resistant silk threads, the antibacterial silk threads, the odor-resistant silk threads, the polyamide silk threads, the sweat-absorbent silk threads, the breathable silk threads, the elastic silk threads, the abrasion-resistant silk threads and the anti-radiation silk threads are used in a matched mode, so that the overall performance of the air-jet texturing chinlon main yarn can be improved; the coating layer, the reinforcing layer and the coating layer can guarantee the overall stability of the space-variant chinlon main line.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of yarn, and in particular to an air-textured nylon-coated yarn. Background Technology

[0002] Air-textured nylon covered yarn is a specially treated nylon fiber that acquires unique physical properties through specific processing techniques. These techniques typically involve using compressed air to treat the filaments, giving the yarn a bulkiness and properties similar to short fibers. Due to its excellent elasticity and bulkiness, air-textured nylon covered yarn is widely used in the development of elastic fabrics and is suitable for the production of woven, knitted, and nonwoven fabrics. It can be used to make a variety of products such as shapewear, swimwear, underwear, bags, and car seats.

[0003] Existing air-textured nylon covered yarns have a simple structure. Although fabrics made from air-textured nylon covered yarns have elasticity and bulkiness, their functionality is limited. This makes it difficult to add composite materials to air-textured nylon covered yarns to improve their functional diversity according to the application requirements. Utility Model Content

[0004] The purpose of this invention is to provide an air-textured nylon-coated yarn to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an air-textured nylon covered yarn, comprising an air-textured nylon main yarn;

[0006] Also includes:

[0007] A composite layer is disposed on the outside of the air-textured nylon main line;

[0008] A covering layer is disposed on the outside of the composite layer, and the covering layer is used to wrap and shape the composite layer;

[0009] A reinforcing layer is disposed outside the covering layer;

[0010] A coating layer is disposed on the outside of the reinforcement layer.

[0011] Preferably, the reinforcing layer comprises polyester filaments, which are spirally interwoven on the outside of the covering layer.

[0012] Preferably, the composite layer comprises:

[0013] Antistatic yarn, wherein the antistatic yarn is disposed between the covering layer and the air-textured nylon main yarn;

[0014] Antibacterial and odor-resistant yarns are arranged adjacently between the coating layer and the air-conditioned nylon main line. The antibacterial and odor-resistant yarns are used to inhibit bacteria and deodorize the air-conditioned nylon main line.

[0015] Preferably, the composite layer further includes:

[0016] Tensile-resistant yarn, wherein the tensile-resistant yarn is disposed between the covering layer and the air-textured nylon main yarn;

[0017] Abrasion-resistant yarn, wherein the abrasion-resistant yarn is disposed between the covering layer and the air-textured nylon main yarn.

[0018] Preferably, the composite layer further includes:

[0019] Nylon yarn, wherein the nylon yarn is disposed between the covering layer and the air-textured nylon main yarn;

[0020] The sweat-absorbing yarn is disposed between the covering layer and the air-textured nylon main yarn, and the sweat-absorbing yarn is used to absorb sweat from the air-textured nylon main yarn.

[0021] Preferably, the composite layer further includes:

[0022] Breathable yarn, wherein the breathable yarn is disposed between the covering layer and the air-textured nylon main yarn;

[0023] Elastic yarn, wherein the elastic yarn is disposed between the covering layer and the air-textured nylon main yarn;

[0024] Radiation-resistant yarn is disposed between the cladding layer and the air-conditioned nylon main yarn, and the radiation-resistant yarn is used to resist radiation to the air-conditioned nylon main yarn.

[0025] The technical effects and advantages of this utility model are as follows:

[0026] This invention utilizes a combination of air-conditioned nylon main yarn, composite layer, covering layer, reinforcing layer, and coating layer. The composite layer includes antistatic yarn, tensile yarn, antibacterial yarn, odor-resistant yarn, nylon yarn, sweat-absorbing yarn, breathable yarn, elastic yarn, abrasion-resistant yarn, and radiation-resistant yarn. The combined use of these yarns improves the overall performance of the air-conditioned nylon main yarn, while the covering layer, reinforcing layer, and coating layer ensure the overall stability of the air-conditioned nylon main yarn. Attached Figure Description

[0027] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0028] Figure 2 This is a schematic diagram of the end structure of the air-reinforced nylon main wire of this utility model.

[0029] In the diagram: 1. Air-reinforced nylon main yarn; 2. Composite layer; 21. Antistatic yarn; 22. Tensile yarn; 23. Antibacterial yarn; 24. Odor-resistant yarn; 25. Nylon yarn; 26. Sweat-absorbing yarn; 27. Breathable yarn; 28. Elastic yarn; 29. ​​Abrasion-resistant yarn; 210. Radiation-resistant yarn; 3. Covering layer; 4. Reinforcing layer; 41. Polyester yarn; 5. Coating layer. Detailed Implementation

[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0031] This utility model provides, for example Figure 1-2 The illustrated air-cured nylon coated yarn includes an air-cured nylon main yarn 1, a composite layer 2, a coating layer 3, a reinforcing layer 4, and a coating layer 5. The composite layer 2 is disposed outside the air-cured nylon main yarn 1, and the coating layer 3 is disposed outside the composite layer 2. The coating layer 3 is used to wrap and shape the composite layer 2. The composite layer 2 is composed of antistatic yarn 21, tensile yarn 22, antibacterial yarn 23, odor-resistant yarn 24, nylon yarn 25, sweat-absorbing yarn 26, breathable yarn 27, elastic yarn 28, abrasion-resistant yarn 29, and radiation-resistant yarn 210. Under the action of the coating layer 3, the antistatic yarn 21, tensile yarn 22, antibacterial yarn 23, odor-resistant yarn 24, nylon yarn 25, sweat-absorbing yarn 26, breathable yarn 27, elastic yarn 28, abrasion-resistant yarn 29, and radiation-resistant yarn 210 are in a stable state. The antistatic yarn 21, tensile yarn 22, antibacterial yarn 23, odor-resistant yarn 24, nylon yarn 25, sweat-absorbing yarn 26, breathable yarn 27, elastic yarn 28, abrasion-resistant yarn 29, and radiation-resistant yarn 210 are interwoven in a fluffy state on the outside of the air-conditioned nylon main yarn 1, thereby preventing the antistatic yarn 21, tensile yarn 22, antibacterial yarn 23, odor-resistant yarn 24, nylon yarn 25, sweat-absorbing yarn 26, breathable yarn 27, elastic yarn 28, abrasion-resistant yarn 29, and radiation-resistant yarn 210 from affecting the elasticity and fluffiness of the air-conditioned nylon main yarn 1. The reinforcing layer 4 is disposed on the outside of the covering layer 3. The reinforcing layer 4 includes polyester yarn 41, which is spirally interwoven on the outside of the covering layer 3. The coating layer 5 is disposed on the outside of the reinforcing layer 4.

[0032] Furthermore, the composite layer 2 includes antistatic yarn 21, antibacterial yarn 23, and deodorizing yarn 24. Antistatic yarn 21 is disposed between the covering layer 3 and the air-conditioned nylon main yarn 1. Antistatic yarn 21 is woven from conductive fibers and glass fibers. Antibacterial yarn 23 and deodorizing yarn 24 are disposed adjacently between the covering layer 3 and the air-conditioned nylon main yarn 1. Antibacterial yarn 23 and deodorizing yarn 24 are used to inhibit bacteria and deodorize the air-conditioned nylon main yarn 1. Antibacterial yarn 23 is woven from bamboo fiber, carbon fiber, and silver ion fiber. Bamboo fiber, carbon fiber, and silver ion fiber all have certain antibacterial and antimicrobial properties. Deodorizing yarn 24 is woven from silver fiber, bamboo fiber, and activated carbon fiber. The fiber has strong antibacterial and odor-inhibiting effects, which can destroy the cell wall of bacteria and inhibit bacterial reproduction, thereby reducing the production of odor. The composite layer 2 also includes tensile filaments 22 and abrasion-resistant filaments 29. The tensile filaments 22 are disposed between the covering layer 3 and the air-conditioned nylon main line 1. The tensile filaments 22 are woven from polypropylene fiber, spider silk protein fiber and aramid fiber. Polypropylene fiber is a high-strength bundled monofilament fiber. Spider silk protein fiber has high strength and super toughness. Aramid fiber is a high-performance synthetic fiber with extremely high strength and modulus, which can ensure the tensile performance of the air-conditioned nylon main line 1. The abrasion-resistant filaments 29 are disposed between the covering layer 3 and the air-conditioned nylon main line 1.

[0033] Furthermore, the composite layer 2 also includes nylon yarn 25 and sweat-absorbing yarn 26. The nylon yarn 25 is disposed between the covering layer 3 and the air-cured nylon main yarn 1, and the sweat-absorbing yarn 26 is disposed between the covering layer 3 and the air-cured nylon main yarn 1. The sweat-absorbing yarn 26 is used to absorb sweat from the air-cured nylon main yarn 1. The sweat-absorbing yarn 26 is woven from polyester fiber and nylon fiber with a special cross-sectional design, which improves the moisture absorption and moisture wicking speed of the fiber, thereby achieving rapid absorption of moisture and sweat from the skin surface. The composite layer 2 also includes breathable yarn. 27. Elastic yarn 28 and radiation-resistant yarn 210. Breathable yarn 27 is disposed between the covering layer 3 and the air-conditioned nylon main yarn 1. Elastic yarn 28 is disposed between the covering layer 3 and the air-conditioned nylon main yarn 1. Radiation-resistant yarn 210 is disposed between the covering layer 3 and the air-conditioned nylon main yarn 1. Radiation-resistant yarn 210 is used to resist radiation to the air-conditioned nylon main yarn 1. Radiation-resistant yarn 210, also known as radiation-resistant fiber, refers to a special fiber that can maintain stable physical properties under high-energy radiation environments and is not easily degraded or cross-linked. This type of fiber can effectively prevent or reduce radiation damage to the human body or equipment.

[0034] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An air-textured nylon covered yarn, comprising an air-textured nylon main yarn (1); Its features are, Also includes: Composite layer (2), the composite layer (2) is disposed on the outside of the air-deformed nylon main wire (1); A covering layer (3) is disposed on the outside of the composite layer (2), and the covering layer (3) is used to wrap and shape the composite layer (2); A reinforcing layer (4) is disposed outside the covering layer (3); A coating layer (5) is disposed outside the reinforcing layer (4).

2. The air-textured nylon-coated yarn according to claim 1, characterized in that, The reinforcing layer (4) includes polyester filaments (41) which are spirally interwoven on the outside of the covering layer (3).

3. The air-textured nylon-coated yarn according to claim 1, characterized in that, The composite layer (2) includes: Antistatic yarn (21), wherein the antistatic yarn (21) is disposed between the covering layer (3) and the air-textured nylon main yarn (1); Antibacterial yarn (23) and antiodor yarn (24) are arranged adjacently between the covering layer (3) and the air-conditioned nylon main line (1). The antibacterial yarn (23) and antiodor yarn (24) are used to inhibit bacteria and deodorize the air-conditioned nylon main line (1).

4. The air-textured nylon-coated yarn according to claim 3, characterized in that, The composite layer (2) further includes: Tensile filament (22), wherein the tensile filament (22) is disposed between the covering layer (3) and the air-textured nylon main wire (1); Abrasion-resistant yarn (29) is disposed between the covering layer (3) and the air-textured nylon main yarn (1).

5. The air-textured nylon-coated yarn according to claim 4, characterized in that, The composite layer (2) further includes: Nylon yarn (25), wherein the nylon yarn (25) is disposed between the covering layer (3) and the air-textured nylon main yarn (1); Sweat-absorbing yarn (26) is disposed between the covering layer (3) and the air-conditioned nylon main yarn (1), and the sweat-absorbing yarn (26) is used to absorb sweat from the air-conditioned nylon main yarn (1).

6. The air-textured nylon-coated yarn according to claim 5, characterized in that, The composite layer (2) further includes: Breathable yarn (27), wherein the breathable yarn (27) is disposed between the covering layer (3) and the air-textured nylon main yarn (1); Elastic yarn (28) is disposed between the covering layer (3) and the air-textured nylon main yarn (1); Radiation-resistant yarn (210) is disposed between the covering layer (3) and the air-conditioned nylon main line (1), and the radiation-resistant yarn (210) is used to resist radiation of the air-conditioned nylon main line (1).