Skin-friendly anti-pilling warm-keeping comfortable fabric

Through the combined structure of the skin-friendly layer, elastic layer, warm-keeping layer and anti-pilling layer, combined with conductive fiber and cavity design, the contradiction between the pilling and warm-keeping properties of the fabric is solved, and the effect of anti-pilling, warm-keeping and comfortable is achieved.

CN223058527UActive Publication Date: 2025-07-04NEO-CONCEPT FASHION (ZHONGSHAN) CO LTD
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Patent Information

Application Number
CN202421465175.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-25
Publication Date
2025-07-04
Estimated Expiration
2034-06-25

AI Technical Summary

Technical Problem

Existing fabrics are prone to pilling when improving warmth, which affects the feel and wear comfort, and may lead to skin irritation or allergies.

Method used

The combination structure of the skin-friendly layer, elastic layer, warmth layer and anti-pilling layer is adopted, combined with conductive fibers and cavity design, and the bumps of polyester fiber and spandex are used to reduce the pilling phenomenon, improve moisture-wicking performance and anti-static effect.

Benefits of technology

Effectively reduces the pilling of fabrics, improves wear comfort and warmth, enhances skin comfort, and maintains the beauty and durability of the fabric.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of textile materials, and discloses a skin-friendly anti-pilling warm-keeping comfortable fabric which comprises a skin-friendly layer, an elastic layer is arranged on one side of the skin-friendly layer, a warm-keeping layer is arranged on one side of the elastic layer, an anti-pilling layer is arranged on one side of the warm-keeping layer, and an anti-pilling layer is arranged on one side of the anti-pilling warm-keeping comfortable fabric. A plurality of groups of salient points are sewn on the outer side of the anti-pilling layer, and the salient points sewn on the outer side of the anti-pilling layer are formed by blending and weaving polyester fibers and spandex. According to the skin-friendly anti-pilling warm-keeping comfortable fabric, in order to better improve the comfort of the fabric, the skin-friendly layer and the elastic layer are matched, the wearing comfort can be improved, skin friction is reduced, the good moisture absorption and sweat releasing performance is achieved, the skin comfort is improved, the conductive fibers and the cavities are further matched, and the conductive fibers have the antistatic effect; the moisture absorption and sweat releasing performance of the fabric can be further improved through the cavities, and the skin comfort is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of textile materials, in particular to a skin-friendly anti-pilling warm and comfortable fabric. Background Technique

[0002] Textile materials refer to fibers and fiber products, specifically manifested as fibers, yarns, fabrics and their composites. In modern textiles, the research and development of new textile materials, especially the development and use of nanofibers, have broken through the traditional concept of textile materials. Textile materials have become an important part of soft matter materials. Taking "shape" and its composite form as the main research object is one of the basic characteristics of textile materials, and the most widely used among them is the fabric.

[0003] Fabric is the material used to make clothing. Among them, warm fabrics are used to manufacture warm clothing, usually composed of cashmere, camel hair, silk, cotton floss, etc. The yarns of the above raw materials are made into warm clothing by knitting or weaving.

[0004] At present, in order to provide a better wearing experience, some warm materials, such as wool, down, etc., are usually added to the fabric. However, while improving the warmth retention, these traditional methods tend to cause the fabric to pill, affecting the feel and appearance of the fabric. When these traditional fabrics are in direct contact with the skin, skin irritation or allergies may occur due to improper material selection, greatly reducing the wearing comfort. They cannot have excellent anti-pilling performance while maintaining skin-friendly comfort and warmth retention. In view of this, we propose a skin-friendly anti-pilling warm and comfortable fabric. Content of the Utility Model

[0005] The purpose of the utility model is to provide a skin-friendly anti-pilling warm and comfortable fabric to solve the problems raised in the above background technique.

[0006] To achieve the above purpose, the utility model provides the following technical scheme: A skin-friendly anti-pilling warm and comfortable fabric, including a skin-friendly layer, an elastic layer is provided on one side of the skin-friendly layer, a warm layer is provided on one side of the elastic layer, and an anti-pilling layer is provided on one side of the warm layer.

[0007] Preferably, bumps are sewn on the outer side of the anti-pilling layer. There are multiple groups of the bumps, and multiple groups of the bumps are linearly arrayed at equal intervals on the outer side of the anti-pilling layer. The bumps sewn on the outer side of the anti-pilling layer are made of a blend of polyester fiber and spandex, so as to effectively reduce the pilling phenomenon and extend the service life of the fabric.

[0008] Preferably, the skin-friendly layer is woven by blending tencel fiber and linen fiber. The density of the tencel fiber is 70-90 fibers / cm, and the density of the linen fiber is 130-140 fibers / cm. Moreover, the tencel fiber contains a skin-friendly modifier, and the content of the skin-friendly modifier accounts for 0.1%-0.3% of the total weight of the tencel fiber, so as to improve the wearing comfort and reduce skin friction.

[0009] Preferably, the elastic layer is made of 100% pure cotton material, so as to ensure that the fabric has good moisture absorption and sweat discharge performance and improve skin comfort.

[0010] Preferably, the thermal insulation layer is woven by fine denier acrylic, so as to have good thermal insulation effect and ensure warmth in cold seasons.

[0011] Preferably, conductive fibers are provided between the elastic layer and the thermal insulation layer. There are multiple groups of the conductive fibers, and the multiple groups of the conductive fibers are linearly arrayed at equal intervals between the elastic layer and the thermal insulation layer. Adjacent two groups of the conductive fibers and the elastic layer and the thermal insulation layer form cavities. There are multiple groups of the cavities, so as to further improve the moisture absorption and sweat discharge performance of the fabric and improve skin comfort.

[0012] Compared with the prior art, the present utility model provides a skin-friendly anti-pilling thermal insulation and comfortable fabric, which has the following beneficial effects:

[0013] 1. For the skin-friendly anti-pilling thermal insulation and comfortable fabric, in order to better improve the comfort of the fabric, in cooperation with the skin-friendly layer and the elastic layer, it can improve the wearing comfort, reduce skin friction, has good moisture absorption and sweat discharge performance, and improves skin comfort. Further, in cooperation with the conductive fibers and the cavities, the conductive fibers have an antistatic effect, improving the comfort of the fabric, and the cavities can further improve the moisture absorption and sweat discharge performance of the fabric and improve skin comfort.

[0014] 2. For the skin-friendly anti-pilling thermal insulation and comfortable fabric, in order to better improve the anti-pilling and thermal insulation performance of the fabric, in cooperation with the thermal insulation layer, it is woven by fine denier acrylic, which can more effectively lock air and form a good thermal insulation layer, providing better thermal insulation effect for the wearer. In cooperation with the anti-pilling layer and the bumps, it can effectively reduce the pilling phenomenon of the fabric during long-term wearing and washing, making the fabric beautiful and durable. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic diagram of a bent state of the overall structure of the present utility model;

[0016] Figure 2 is a schematic diagram of a flat state of the overall structure of the present utility model;

[0017] Figure 3 For the present utility modelFigure 2 Schematic diagram of the enlarged structure of area A

[0018] Figure 4 Exploded view of the structure of the present utility model

[0019] In the figure: 1, skin-friendly layer; 2, elastic layer; 3, thermal insulation layer; 4, anti-pilling layer; 41, convex points; 51, conductive fibers; 52, cavity Specific embodiments

[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present utility model

[0021] Please refer to Figures 1-4 , the present utility model provides a technical solution: a skin-friendly, anti-pilling and warm and comfortable fabric, including a skin-friendly layer 1, an elastic layer 2 is provided on one side of the skin-friendly layer 1. Further, the elastic layer 2 is made of 100% pure cotton material, so as to ensure that the fabric has good moisture absorption and sweat discharge performance and improve skin comfort. A thermal insulation layer 3 is provided on one side of the elastic layer 2. Further, the thermal insulation layer 3 is woven with fine denier acrylic, so as to have good thermal insulation effect, ensure warmth in cold seasons, be able to lock air more effectively, form a good thermal insulation layer, and provide better thermal insulation effect for the wearer. An anti-pilling layer 4 is provided on one side of the thermal insulation layer 3

[0022] In an embodiment of the present utility model, convex points 41 are sewn on the outside of the anti-pilling layer 4. There are multiple groups of convex points 41, and multiple groups of convex points 41 are linearly arrayed at equal intervals on the outside of the anti-pilling layer 4. The convex points 41 sewn on the outside of the anti-pilling layer 4 are woven with a blend of polyester fiber and spandex, so as to effectively reduce the pilling phenomenon and extend the service life of the fabric. During long-term wearing and washing, it can effectively reduce the pilling phenomenon of the fabric and keep the fabric beautiful and durable

[0023] In an embodiment of the present utility model, the skin-friendly layer 1 is woven with a blend of tencel fiber and linen fiber. The density of tencel fiber is 70 - 90 fibers / cm, the density of linen fiber is 130 - 140 fibers / cm, and the tencel fiber contains a skin-friendly modifier, and the content of the skin-friendly modifier accounts for 0.1% - 0.3% of the total weight of the tencel fiber, so as to improve wearing comfort and reduce skin friction

[0024] In an embodiment of the present utility model, conductive fibers 51 are provided between the elastic layer 2 and the thermal insulation layer 3. There are multiple groups of conductive fibers 51, and the multiple groups of conductive fibers 51 are linearly arrayed at equal intervals between the elastic layer 2 and the thermal insulation layer 3. The adjacent two groups of conductive fibers 51 and the elastic layer 2 and the thermal insulation layer 3 form cavities 52. There are multiple groups of cavities 52, so that the heat emitted from the human body can be better discharged through the cavities 52. If sweating occurs, the sweat can also better enter the interior of the cavities 52, thereby further improving the moisture absorption and sweat discharge performance of the fabric and enhancing the skin comfort. The conductive fibers 51 have an antistatic effect, and the setting of multiple groups can increase the antistatic area. Therefore, the use of conductive fibers 51 can be reduced, which is economical and practical, without weakening the antistatic effect, and improves the comfort of the fabric.

[0025] The present utility model has been generally and exhaustively described above. However, based on the present utility model, some modifications or improvements can be made, which are obvious to those of ordinary skill in the art. Therefore, the modifications or improvements made without departing from the spirit of the present utility model are within the protection scope of the present utility model.

Claims

1. A skin-friendly anti-pilling warm and comfortable fabric, including a skin-friendly layer (1), characterized in that: On one side of the skin-friendly layer (1), there is an elastic layer (2). On one side of the elastic layer (2), there is a thermal insulation layer (3). On one side of the thermal insulation layer (3), there is a pilling-resistant layer (4). On the outside of the pilling-resistant layer (4), there are convex points (41) sewn. There are multiple groups of the convex points (41), and multiple groups of the convex points (41) are linearly arrayed at equal intervals on the outside of the pilling-resistant layer (4).

2. The skin-friendly anti-pilling warm and comfortable fabric according to claim 1, wherein: The elastic layer (2) is made of 100% pure cotton material.

3. The skin-friendly anti-pilling warm and comfortable fabric according to claim 1, characterized in that: The thermal insulation layer (3) is woven from fine denier acrylic.

4. A skin-friendly anti-pilling warm and comfortable fabric according to claim 1, characterized in that: There are conductive fibers (51) between the elastic layer (2) and the thermal insulation layer (3). There are multiple groups of the conductive fibers (51), and multiple groups of the conductive fibers (51) are linearly arrayed at equal intervals between the elastic layer (2) and the thermal insulation layer (3). The adjacent two groups of the conductive fibers (51) and the elastic layer (2) and the thermal insulation layer (3) form cavities (52), and there are multiple groups of the cavities (52).