Soft anti-sticking knitted fabric

By designing inner and outer layer structures and moisture-wicking components in the knitted fabric, the problem of reduced breathability after the addition of polyester fibers was solved, achieving good breathability and moisture wicking performance of the fabric and improving wearing comfort.

CN223657762UActive Publication Date: 2025-12-12WUJIANG CITY XINGRUI KNITTING APPAREL
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Patent Information

Application Number
CN202520032127.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-07
Publication Date
2025-12-12
Estimated Expiration
2035-01-07

AI Technical Summary

Technical Problem

The addition of polyester fibers to existing knitted fabrics reduces their breathability and moisture wicking properties, resulting in stuffiness and sweat that cannot be dissipated in time, affecting wearing comfort.

Method used

It adopts an inner and outer layer structure. The inner layer is woven from soft yarn, and the outer layer is woven from moisture-wicking yarn. A moisture-wicking element is provided between the inner and outer layers. The moisture-wicking element has stronger moisture absorption than the inner layer. The outer layer has ventilation holes and ventilation grooves. The ventilation space and ventilation grooves are formed by the burnout process to improve the air circulation effect.

Benefits of technology

It achieves good breathability and moisture wicking properties of the fabric, keeps the skin dry, prevents the fabric from sticking to the skin, and improves wearing comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a soft anti-sticking knitted fabric, which relates to the technical field of textiles, and is characterized in that a plurality of moisture guiding pieces are arranged between an inner layer and an outer layer, the hygroscopicity of the moisture guiding pieces is larger than that of the inner layer and is the same as that of the outer layer, and a plurality of breathable spaces are enclosed among the moisture guiding pieces, the inner layer and the outer layer. The end face, away from the inner layer, of the moisture guiding piece is provided with a plurality of ventilation grooves communicating with the ventilation spaces, and the outer layer is provided with a plurality of ventilation holes communicating with the ventilation grooves in a penetrating mode. According to the fabric, water in the fabric can be dispersed in time through the outer layer made of the ramie fibers due to the good moisture dissipation performance of the ramie fibers, the inner layer made of the cotton fibers has the soft touch feeling, the air circulation effect in the fabric is improved through the ventilation holes, the ventilation spaces and the ventilation grooves which are communicated with one another, and the moisture dissipation performance of the fabric is further enhanced.
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Description

Technical Field

[0001] This utility model relates to the field of textile technology, and more specifically, to a soft, non-stick knitted fabric. Background Technology

[0002] Knitted fabric is a type of textile fabric made by bending yarn into loops and interlocking them using a knitting needle. Knitted fabrics can be divided into two main categories: weft knitting and warp knitting. The raw materials are mainly made of fibers such as cotton, linen, and polyester. It has the characteristics of being soft and comfortable, and is therefore widely used in clothing, home furnishings and other fields.

[0003] However, knitted fabrics have a relatively loose weave structure. Polyester fibers are usually added to the knitted fabric to improve its strength. However, polyester fibers have poor breathability. After adding polyester fibers to the fabric, the breathability will decrease, making the fabric feel stuffy and sweaty when worn. The sweat absorbed by the fabric cannot be dissipated in time, causing the fabric to stick to the skin due to sweat, resulting in discomfort.

[0004] Therefore, a new solution is needed to address this problem. Utility Model Content

[0005] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a soft and non-stick knitted fabric to solve the problem of reduced breathability and moisture wicking after adding polyester fibers to knitted fabrics.

[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution: the soft and non-stick knitted fabric includes an inner layer and an outer layer that are fixedly connected to each other. A plurality of moisture-wicking elements are provided between the inner layer and the outer layer. The moisture absorption of the moisture-wicking elements is greater than that of the inner layer and the same as that of the outer layer. A plurality of breathable spaces are formed between the plurality of moisture-wicking elements and the inner and outer layers. A plurality of ventilation grooves are opened on the end face of the moisture-wicking elements away from the inner layer and communicate with the plurality of breathable spaces. A plurality of breathable holes are opened through the outer layer and communicate with the plurality of ventilation grooves.

[0007] The present invention is further configured such that: several grooves are integrally formed on both sides of the outer layer by a decal process, and several ventilation holes are integrally formed by a decal process; the grooves on both sides of the outer layer are of the same size and are arranged symmetrically from top to bottom; and the end of the moisture-wicking component away from the inner layer abuts against the groove on the side of the outer layer closer to the inner layer.

[0008] The present invention is further configured such that: the thickness of the moisture-wicking component is greater than the depth of the groove, the depth of the venting groove is greater than the depth of the groove, and the venting groove is located directly below the vent hole.

[0009] The present invention is further configured such that: the outer layer is made by weaving moisture-wicking yarn with a double-thread structure, the moisture-wicking yarn is formed by twisting a first strand and a second strand, the first strand is formed by twisting polyester profiled fiber with a cross-shaped cross section, and the second strand is formed by twisting ramie fiber.

[0010] The present invention is further configured such that: the inner layer is made by weaving a soft yarn with a double-ribbed structure, the soft yarn is made by spirally winding a third strand around the first strand, and the third strand is made by twisting cotton fibers.

[0011] The present invention is further configured such that: the moisture-wicking component is made by cutting a substrate through a double-thread weaving method using moisture-wicking yarn.

[0012] In summary, this utility model has the following beneficial effects: the excellent moisture-wicking properties of ramie fibers allow the outer layer to effectively dissipate moisture from its interior, while the inner layer made of cotton fibers has a soft touch and can absorb sweat produced by the wearer's skin in a timely manner. The sweat is then transferred to the outer layer for dissipation through several moisture-wicking elements. The interconnected ventilation holes, ventilation spaces, and ventilation channels improve the air circulation effect inside the fabric, further enhancing the fabric's moisture-wicking performance, maintaining the dryness of the skin and fabric, and preventing the fabric from sticking to the skin surface due to sweat and causing discomfort. Attached Figure Description

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

[0014] Figure 2 for Figure 1 Enlarged view of point A in the middle;

[0015] Figure 3 This is an exploded view of the present invention;

[0016] Figure 4 for Figure 3 Enlarged view of point B in the middle;

[0017] Figure 5 A cross-section of the loose-wet yarn;

[0018] Figure 6 This is a slice of soft yarn.

[0019] In the diagram: 1. Inner layer; 2. Outer layer; 3. Moisture-wicking component; 4. Breathable space; 6. Ventilation groove; 7. Ventilation hole; 8. Groove; 9. Recess; 10. Protrusion; 11. Moisture-wicking yarn; 12. First strand; 13. Second strand; 14. Soft yarn; 15. Third strand. Detailed Implementation

[0020] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0021] Example: This soft, anti-clogging knitted fabric, such as Figure 1 and Figure 5 As shown, it includes an inner layer 1 and an outer layer 2 that are fixedly connected to each other. The outer layer 2 is woven by feeding multiple moisture-wicking yarns 11 into a knitting machine and knitting them in a double-ribbed structure. The moisture-wicking yarns 11 are made by twisting a first strand 12 and a second strand 13 in an "S" twisting manner using a twisting machine. The first strand 12 is made by twisting polyester profiled fibers with a cross-shaped cross section using a twisting machine. The second strand 13 is made by twisting ramie fibers using a twisting machine. The polyester profiled fibers with a cross-shaped cross section are spun through a spinneret. The profiled polyester fibers increase the surface area and internal porosity, giving the first strand 12 a certain degree of breathability and moisture-wicking effect. The ramie fibers have good breathability and moisture-wicking properties, allowing the outer layer 2 to remove moisture from its interior in a timely manner.

[0022] like Figure 1 and Figure 6 As shown, the inner layer 1 is woven by feeding the soft yarn 14 into the knitting machine and knitting it with a double-rib structure. The soft yarn 14 is made by spirally winding a third strand 15 onto a first strand 12 through a spinning process. The third strand 15 is made by twisting cotton fibers through a twisting machine. Cotton fibers have good softness and moisture absorption, so that the inner layer 1 can provide a soft and comfortable touch when in contact with the skin, and can absorb the sweat produced by the wearer's skin in time, keeping the skin dry and comfortable.

[0023] like Figure 1 , Figure 2 and Figure 5 As shown, the outer layer 2 has several elongated grooves 8 symmetrically arranged along the length of the fabric on both sides. The outer layer 2 has several arrayed ventilation holes 7 through it. The ventilation holes 7 are all located at the bottom of the grooves 8. The grooves 8 on both sides of the outer layer 2 are the same size and symmetrically arranged vertically, so that the grooves 8 on both sides of the outer layer 2 are interconnected through the ventilation holes 7. The acid resistance of polyester profiled fiber is greater than that of ramie fiber. The ventilation holes 7 on the outer layer 2 and the grooves 8 on both sides of the outer layer 2 are formed integrally by the second strand 13 in the acid-dissolving processing area of ​​the burnout process. The ventilation holes 7 enhance the breathability and moisture-wicking effect of the outer layer 2. The outer layer 2, made of multiple moisture-wicking yarns 11 by warp knitting and double-rib weaving, can avoid loosening after the second strand 13 in the acid-dissolving processing area.

[0024] like Figure 1 and Figure 2As shown, the inner layer 1 and outer layer 2, which are close to each other, are sewn together using a sewing machine. The inner layer 1 has several recesses 9 along the length of the fabric on the end face close to the outer layer 2. The inner layer 1 has several protrusions 10 along the length of the fabric on the end face away from the outer layer 2. The recesses 9 and protrusions 10 are formed by the inner layer 1 being supported and deformed by the moisture-wicking element 3 when it is sewn together with the outer layer 2. Several moisture-wicking elements 3 are symmetrically arranged between the inner layer 1 and the outer layer 2. The end face of the moisture-wicking element 3 away from the outer layer 2 abuts against the recesses 9. The end of the moisture-wicking element 3 away from the inner layer 1 abuts against the groove 8 on the side of the outer layer 2 close to the inner layer 1.

[0025] like Figure 1 , Figure 2 , Figure 4 and Figure 5 As shown, after the moisture-wicking yarn 11 is fed into the knitting machine and knitted into a double-ribbed structure to form a base material, several arc-shaped ventilation grooves 6 are first hot-pressed on one side of the base material using a hot press, and then cut into moisture-wicking parts 3 using a cutting machine. The moisture absorption of ramie fibers is greater than that of cotton fibers and polyester profiled fibers, so the moisture absorption of the moisture-wicking parts 3 is greater than that of the inner layer 1 and the same as that of the outer layer 2. Through several moisture-wicking parts 3, the moisture in the inner layer 1 can be guided to the outer layer 2 in time to dissipate, keeping the inner layer 1 and the skin dry and avoiding the discomfort caused by the fabric sticking to the skin with sweat.

[0026] like Figures 1-4 As shown, several ventilation grooves 6 are symmetrically arranged on the moisture-wicking element 3 along the width direction of the fabric. The thickness of the moisture-wicking element 3 is greater than the depth of the groove 8, so that several ventilation spaces 4 are formed between the moisture-wicking element 3 and the inner layer 1 and the outer layer 2. The depth of the ventilation grooves 6 is greater than the depth of the groove 8, so that the ventilation grooves 6 and the ventilation spaces 4 are interconnected. The ventilation grooves 6 are located directly below the ventilation holes 7, so that the ventilation grooves 6 and the ventilation spaces 4 are interconnected. The interconnected ventilation holes 7, ventilation spaces 4 and ventilation grooves 6 improve the air circulation effect inside the fabric, further enhance the moisture dissipation performance of the fabric, and make the fabric have a good anti-sticking effect.

[0027] 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. A soft, non-stick knitted fabric, comprising an inner layer (1) and an outer layer (2) fixedly connected to each other, characterized in that: A plurality of moisture-wicking elements (3) are provided between the inner layer (1) and the outer layer (2). The moisture-wicking elements (3) have a greater moisture absorption than the inner layer (1) and the same moisture absorption as the outer layer (2). A plurality of breathable spaces (4) are formed between the plurality of moisture-wicking elements (3), the inner layer (1) and the outer layer (2). A plurality of ventilation grooves (6) are opened on the end face of the moisture-wicking elements (3) away from the inner layer (1) and communicate with the plurality of ventilation spaces (4). A plurality of ventilation holes (7) are opened through the outer layer (2) and communicate with the plurality of ventilation grooves (6).

2. The soft, anti-slip knitted fabric according to claim 1, characterized in that: The outer layer (2) has several grooves (8) integrally formed on both sides by a decal process, and several ventilation holes (7) are integrally formed by a decal process. The grooves (8) on both sides of the outer layer (2) are the same size and are arranged symmetrically up and down. The end of the moisture-wicking component (3) away from the inner layer (1) abuts against the groove (8) on the side of the outer layer (2) close to the inner layer (1).

3. The soft, anti-slip knitted fabric according to claim 2, characterized in that: The thickness of the moisture-wicking element (3) is greater than the depth of the groove (8), the depth of the ventilation groove (6) is greater than the depth of the groove (8), and the ventilation groove (6) is located directly below the ventilation hole (7).

4. The soft, anti-slip knitted fabric according to claim 1, characterized in that: The outer layer (2) is made by weaving a moisture-wicking yarn (11) with a double-thread structure. The moisture-wicking yarn (11) is formed by twisting a first strand (12) and a second strand (13). The first strand (12) is formed by twisting polyester profiled fibers with a cross-shaped cross section, and the second strand (13) is formed by twisting ramie fibers.

5. The soft, anti-slip knitted fabric according to claim 4, characterized in that: The inner layer (1) is made by weaving a double-ribbed structure with a soft yarn (14). The soft yarn (14) is made by spirally winding a third strand (15) around the first strand (12). The third strand (15) is made by twisting cotton fibers.

6. The soft, anti-slip knitted fabric according to claim 4, characterized in that: The moisture-wicking component (3) is made by weaving a base material using a double-threaded structure with moisture-wicking yarn (11) and then cutting it.