Anti-sticking fabric
By designing anti-sticking blocks and breathable holes of varying heights in the anti-sticking fabric, combined with wear-resistant, breathable, and antibacterial yarns, the problem of poor breathability in polyester fiber fabrics has been solved, achieving higher breathability and quick-drying properties, and improving wearing comfort.
Patent Information
- Application Number
- CN202520982160.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-19
- Publication Date
- 2026-05-15
- Estimated Expiration
- 2035-05-19
AI Technical Summary
In summer, when exercising or in high temperatures, polyester fiber fabrics have poor breathability, causing sweat to accumulate after absorption, which affects wearing comfort.
The fabric is designed to prevent skin contact with the skin by using anti-skin blocks of varying heights and a breathable perforated structure, combined with abrasion-resistant, breathable, and antibacterial yarns to form ring-shaped anti-skin rings and grooves. This reduces the skin contact area, increases airflow, and improves breathability and quick-drying properties.
The design of anti-sticking patches and breathable holes improves the breathability and quick-drying properties of the fabric, reduces the time it is in contact with the skin, and enhances wearing comfort.
Smart Images

Figure CN224243357U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of textile fabric technology, and more specifically, to anti-sticking fabric. Background Technology
[0002] Composite fabrics are a new type of material made by bonding one or more layers of textile, non-woven, and other functional materials together. Suitable for sofas, clothing, and other textiles, they are an indispensable fabric for people's home life.
[0003] Summer clothing constantly absorbs sweat from the wearer's skin during wear, especially during exercise or in high temperatures. The sweat constantly released by the skin is absorbed by the fabric, and the pores of the sweat-soaked fabric become blocked. In addition, polyester fiber, as a chemical fiber, has poor breathability. This causes a large amount of fabric to accumulate between the skin and the fabric, making the fabric stick to the skin and affecting the comfort of wearing it.
[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 anti-sticking fabric.
[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution: The anti-sticking fabric includes a base layer, on which a plurality of anti-sticking blocks 1, 2, and 3 are arranged. The plurality of anti-sticking blocks 1, 2, and 3 form an annular anti-sticking ring on the base layer. The plurality of anti-sticking blocks 1, 2, and 3 are arranged in the following order along the weft of the base layer: anti-sticking block 1, anti-sticking block 2, anti-sticking block 1, anti-sticking block 3, anti-sticking block 1, anti-sticking block 2, and anti-sticking block 1. A spacing is provided between anti-sticking blocks 1 and 2, and between anti-sticking blocks 2 and 3. The height of anti-sticking block 1 is greater than the height of anti-sticking blocks 2 and 3. A plurality of ventilation holes are provided on the base layer, and the plurality of ventilation holes are arranged linearly along the warp direction of the base layer.
[0007] The present invention is further configured such that the density of the first anti-sticking block is greater than the density of the second and third anti-sticking blocks.
[0008] The present invention is further configured such that a plurality of the anti-adhesion rings are arranged in a matrix array on the base layer, and the length and width of the anti-adhesion rings are between 1cm and 3mm.
[0009] The present invention is further configured such that: the fabric structure of the base layer is a warp-patterned structure, and a plurality of the anti-sticking rings are formed by the warp-patterned structure.
[0010] The present invention is further configured such that the yarn used to weave the base layer includes a base yarn, a breathable yarn, abrasion-resistant yarn, and antibacterial yarn, wherein the breathable yarn, abrasion-resistant yarn, and antibacterial yarn are used as the starting yarn of the patterned warp structure, and the base yarn is used as the ground warp and ground weft yarn of the patterned warp structure.
[0011] The present invention is further configured such that: a plurality of anti-sticking blocks one are formed by abrasion-resistant yarn, a plurality of anti-sticking blocks two are composed of breathable yarn, and a plurality of anti-sticking blocks three are composed of antibacterial yarn, wherein the yarn count of the abrasion-resistant yarn is less than the yarn count of the breathable yarn and the antibacterial yarn.
[0012] In summary, this utility model has the following beneficial effects: By using several anti-sticking blocks (block 1, block 2, and block 3) with different heights, a physical support layer is formed on the base layer. The spaced design of these blocks creates several grooves on the base layer, allowing airflow to flow stably between the base layer and the skin. Several anti-sticking rings reduce the contact area between the base layer and the skin, improving the anti-sticking effect. Simultaneously, the opening of several ventilation holes on the base layer accelerates the airflow inside and outside the base layer, improving the overall breathability and quick-drying properties of the base layer, reducing the time the base layer is in a damp state and adheres to the skin, thereby improving wearing comfort. Attached Figure Description
[0013] Figure 1 A cross-sectional view of this utility model Figure 1 ;
[0014] Figure 2 A cross-sectional view of this utility model Figure 2 ;
[0015] Figure 3 This is an organizational chart for the grassroots level.
[0016] In the diagram: 1. Base layer; 2. Anti-sticking block one; 201, abrasion-resistant yarn; 3. Anti-sticking block two; 301, breathable yarn; 4. Anti-sticking block three; 401, antibacterial yarn; 5. Groove; 6. Ventilation hole. Detailed Implementation
[0017] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0018] Anti-stick fabric, such as Figure 1 and Figure 2As shown, the system includes a base layer 1, on which several anti-adhesion blocks 1 (2), 2 (3), and 3 (4) are installed. These blocks form a ring-shaped anti-adhesion ring on the base layer 1. The arrangement of these blocks along the weft of the base layer 1 is as follows: anti-adhesion block 1, anti-adhesion block 2, 3, 2, 4, 2, 2, 3, 2. Spacing is provided between anti-adhesion blocks 1 and 2, and between anti-adhesion blocks 2 and 3. The height of anti-adhesion block 1 is greater than the height of anti-adhesion blocks 2 and 3. Several ventilation holes 6 are provided on the base layer 1. A number of ventilation holes 6 are linearly arrayed along the warp direction of the base layer 1. The anti-slip ring formed by a number of anti-slip blocks 1 2, 2 3 and 3 4 can reduce the contact area between the base layer 1 and the skin. When the fabric is wet, the area of the base layer 1 adhering to the skin becomes smaller, and a certain gap is formed between the skin and the base layer 1, thereby increasing the speed of air flow and improving wearing comfort. The height setting of the anti-slip block 1 2 and the distance setting between the anti-slip block 1 2, 2 3 and 3 4 improve the speed and smoothness of air flow. Combined with the number of ventilation holes 6 opened on the base layer 1, the breathability, quick-drying and wearing comfort of the base layer 1 are further improved.
[0019] like Figure 1 , Figure 2 and Figure 3As shown, the required yarns first need to be prepared, including base yarn, abrasion-resistant yarn 201, breathable yarn 301, and antibacterial yarn 401. The base yarn is made of several cross-shaped polyester profiled fibers twisted together. The cross-shaped cross-section improves the breathability, moisture absorption, and bulkiness of the polyester profiled fibers. As the main yarn forming the base layer 1, the base yarn provides good fabric strength and a certain degree of breathability. The abrasion-resistant yarn 201 is made of several nylon fibers twisted together. Nylon fibers have excellent abrasion resistance, ensuring that the anti-sticking block 2 formed by the abrasion-resistant yarn 201 has good abrasion resistance, giving it a long service life. The breathable yarn 301 is made of several polyester fibers and several viscose fibers twisted together, combining the high strength of polyester fibers with the good breathability of viscose fibers. The antibacterial yarn 401 is made of several silver ions... The fibers are twisted together. Since bacteria easily grow when the base layer 1 is damp, especially in warm environments, the antibacterial yarn 401 forms anti-sticking blocks 3 4, which can provide a certain antibacterial effect to the base layer 1, making the base layer 1 more practical. The above-mentioned yarns are all twisted by a twisting machine. Preferably, the yarn thickness of the abrasion-resistant yarn 201 is greater than that of the antibacterial yarn 401 and the breathable yarn 301, and the density of the abrasion-resistant yarn 201 is greater than that of the antibacterial yarn 401 and the breathable yarn 301. That is, the number of fibers in the abrasion-resistant yarn 201 is greater than the number of fibers in the base yarn, the breathable yarn 301 and the antibacterial yarn 401. This ensures that the density of the anti-sticking blocks 1 2 formed by the abrasion-resistant yarn 201 is greater than the density of the anti-sticking blocks 2 3 and the anti-sticking blocks 3 4, so that it has better abrasion resistance. By stably forming the anti-sticking blocks 1 2, the stability of the anti-sticking effect of the base layer 1 is improved.
[0020] like Figure 1 , Figure 2 and Figure 3As shown, the fabric structure of base layer 1 is a warp-patterned weave. Breathable yarn 301, abrasion-resistant yarn 201, and antibacterial yarn 401 are used as the starting yarns in the warp-patterned weave. Base yarns serve as the ground warp and weft yarns of the warp-patterned weave. Several base yarns, abrasion-resistant yarn 201, breathable yarn 301, and antibacterial yarn 401 are fed into a multi-arm loom. By controlling the feeding sequence of abrasion-resistant yarn 201, breathable yarn 301, and antibacterial yarn 401—namely, abrasion-resistant yarn 201, breathable yarn 301, abrasion-resistant yarn 201, antibacterial yarn 401, antibacterial yarn 401, abrasion-resistant yarn 201, breathable yarn 301, and abrasion-resistant yarn 201—and ensuring the pattern is circular, base layer 1 is woven. Several antibacterial yarns are formed on base layer 1 through the warp-patterned weave. Anti-adhesive blocks 1 (2), 2 (3), and 3 (4) are formed by several anti-adhesive blocks 1 (2) made of abrasion-resistant yarn 201, several anti-adhesive blocks 2 (3) made of breathable yarn 301, and several anti-adhesive blocks 3 (4) made of antibacterial yarn 401. The anti-adhesive blocks 1 (2) formed by the abrasion-resistant yarn 201 with thicker yarn is higher than the anti-adhesive blocks 2 (3) and 3 (4). Several anti-adhesive blocks 1 (2), 2 (3), and 3 (4) form several grooves 5 on the surface of the base layer 1 to ensure smooth air circulation. Preferably, the base yarn surface is formed with a matrix arrangement of anti-adhesive rings through a patterning process. The length and width of a single anti-adhesive ring are controlled within the range of 1cm-3mm to ensure microscopic anti-adhesive effect while maintaining the overall flatness of the fabric.
[0021] like Figure 1 , Figure 2 and Figure 3 As shown, a number of ventilation holes 6 are formed on the base layer 1. These ventilation holes 6 are arranged linearly along the warp direction of the base layer 1. A laser drilling machine is used to drill holes in the base layer 1. The fabric is flat and fixed on the processing platform. The hole spacing, hole diameter and arrangement pattern are set on the laser drilling machine. A high-energy laser beam is used to ablate the base layer 1 to form a number of ventilation holes 6. The ventilation holes 6 are located between two adjacent anti-sticking rings, and the ventilation holes 6 are arranged linearly along the warp direction of the base layer 1. By forming a number of ventilation holes 6 on the base layer 1, the overall air permeability of the base layer 1 is improved, the time the base layer 1 is in a damp state is reduced, thereby improving the anti-sticking performance of the base layer 1 and the user experience of the base layer 1.
[0022] 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. Anti-sticking fabric, characterized in that: Includes a base layer (1), on which a plurality of anti-sticking blocks one (2), two (3) and three (4) are provided. The plurality of anti-sticking blocks one (2), two (3) and three (4) form an anti-sticking ring in the base layer (1). The plurality of anti-sticking blocks one (2), two (3) and three (4) are arranged along the latitude line of the base layer (1) in the following order: anti-sticking block one (2), anti-sticking block two (3), anti-sticking block one (4). (2) Anti-sticking block three (4), anti-sticking block one (2), anti-sticking block two (3), anti-sticking block one (2), a gap is set between the anti-sticking block one (2) and the anti-sticking block two (3), the anti-sticking block two (3) and the anti-sticking block three (4), the height of the anti-sticking block one (2) is greater than the height of the anti-sticking block two (3) and the anti-sticking block three (4), and a number of ventilation holes (6) are opened on the base layer (1), and the number of ventilation holes (6) are linearly arrayed along the meridian direction of the base layer (1).
2. The anti-sticking fabric according to claim 1, characterized in that: The density of the first anti-sticking block (2) is greater than that of the second anti-sticking block (3) and the third anti-sticking block (4).
3. The anti-sticking fabric according to claim 2, characterized in that: Several anti-adhesion rings are arranged in a matrix array on the base layer (1), and the length and width of the anti-adhesion rings are between 1cm and 3mm.
4. The anti-sticking fabric according to claim 3, characterized in that: The fabric structure of the base layer (1) is a warp-patterned weave, and several of the anti-adhesion rings are formed by the warp-patterned weave.
5. The anti-sticking fabric according to claim 4, characterized in that: The yarns used to weave the base layer (1) include base yarn, breathable yarn (301), abrasion-resistant yarn (201) and antibacterial yarn (401). The breathable yarn (301), abrasion-resistant yarn (201) and antibacterial yarn (401) are used as the starting yarn of the warp patterned structure, and the base yarn is used as the ground warp and ground weft yarn of the warp patterned structure.
6. The anti-sticking fabric according to claim 5, characterized in that: Several anti-sticking blocks one (2) are formed by abrasion-resistant yarn (201), several anti-sticking blocks two (3) are composed of breathable yarn (301), and several anti-sticking blocks three (4) are composed of antibacterial yarn (401). The yarn count of the abrasion-resistant yarn (201) is less than the yarn count of the breathable yarn (301) and the antibacterial yarn (401).