Antibacterial fabric

By designing alternating fan-shaped antibacterial sections and connecting sections, combined with warp-patterned weave and breathable yarns, the problem of insufficient breathability and antibacterial properties of polyester fabric is solved, achieving highly efficient breathability and antibacterial effects for the fabric.

CN223533123UActive Publication Date: 2025-11-11SUZHOU SHUORUN TEXTILE TECH CO LTD
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Patent Information

Application Number
CN202423033900.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-11-11
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

Polyester fabric has shortcomings in balancing antibacterial properties and breathability, and existing technologies are unable to effectively improve its overall performance.

Method used

Design an antibacterial fabric that uses alternating fan-shaped antibacterial sections and connecting sections. Antibacterial blocks and strips are set on the antibacterial sections. Combined with warp-patterned fabric and breathable yarns, the air exchange rate and antibacterial effect are improved through breathable holes and moisture-wicking grooves.

Benefits of technology

It improves the breathability and antibacterial effect of the fabric, enhances the uniformity of moisture dissipation and quick-drying properties, increases the air volume between the skin and the fabric, and enhances antibacterial and breathability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a bacteriostatic fabric, which relates to the technical field of fabrics, and has the technical scheme that the bacteriostatic fabric comprises a base layer, the base layer comprises bacteriostatic parts and connecting parts, the bacteriostatic parts and the connecting parts are alternately arranged, the vertical section of each bacteriostatic part is fan-shaped, a plurality of bacteriostatic blocks are arranged on the end surface of one side of each bacteriostatic part, and the bacteriostatic blocks are connected with the connecting parts. The end face of one side of the bacteriostatic part is provided with bacteriostatic blocks, the end face of the other side of the bacteriostatic part is provided with bacteriostatic strips, the bacteriostatic blocks and the bacteriostatic strips are arranged in a staggered mode, moisture dissipation grooves are formed between the adjacent bacteriostatic blocks, the horizontal projection planes of the bacteriostatic strips coincide with the horizontal projection planes of the moisture dissipation grooves, the bacteriostatic part is provided with a plurality of air holes, and the air holes are arranged close to the connecting part. The ramie fibers and the natural bamboo fibers are arranged, so that the antibacterial performance and the breathable effect of the whole fabric are improved by utilizing the excellent antibacterial and breathable effects of materials.
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Description

Technical Field

[0001] This utility model relates to the field of fabric technology, and more specifically, to an antibacterial fabric. Background Technology

[0002] Fabrics come in a wide variety of types, including natural fibers, chemical fibers, and blends of natural and chemical fibers. Polyester is a synthetic fiber that is common and has good structural strength and abrasion resistance. Polyester fabrics, which are woven from polyester composite yarns, are frequently used in daily life.

[0003] Polyester fabric, due to its excellent strength and relatively low price, is widely used in the production of clothing, decorations, bags, and other items. Some garments require good breathability and antibacterial properties. However, although polyester fabric is high-strength and quick-drying, its antibacterial and breathability properties are relatively poor. It is necessary to blend some antibacterial fibers into the yarn or to perform finishing treatments on the polyester fabric and add antibacterial agents to give it a good antibacterial effect. However, the breathability of polyester fabric is still relatively poor. Therefore, it is necessary to design a polyester fabric that combines antibacterial properties and breathability.

[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 an antibacterial fabric to improve the overall breathability and antibacterial effect of the fabric.

[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution: an antibacterial fabric includes a base layer, the base layer includes an antibacterial part and a connecting part, the antibacterial part and the connecting part are alternately arranged, the vertical cross-section of the antibacterial part is fan-shaped, a plurality of antibacterial blocks are arranged on one end face of the antibacterial part, and an antibacterial strip is arranged on the other end face of the antibacterial part, the antibacterial blocks and the antibacterial strip are staggered, a moisture-dissipating groove is formed between adjacent antibacterial blocks, the horizontal projection plane of the antibacterial strip coincides with the horizontal projection plane of the moisture-dissipating groove, a plurality of air vents are opened on the antibacterial part, and the air vents are arranged close to the connecting part.

[0007] The present invention is further configured such that: the fabric structure of the base layer is a warp-patterned weave, the ground weave of the warp-patterned weave is a plain weave, the antibacterial strips and antibacterial blocks are formed by the warp pattern of the warp-patterned weave, the side of the antibacterial part with several antibacterial strips is the front side of the warp-patterned weave, the side with several antibacterial blocks is the back side, the several antibacterial blocks are located in the depression of the antibacterial part, and the antibacterial strips are located in the protrusion of the antibacterial part.

[0008] The present invention is further configured such that: the ground warp and ground weft of the base layer are made of breathable yarn, and the pattern warp of the base layer is made of antibacterial yarn, wherein the moisture-wicking effect of the antibacterial yarn is better than that of the breathable yarn.

[0009] The present invention is further configured such that: the breathable yarn is composed of a core yarn and an outer covering yarn spirally wound on its outer side, the core yarn is made of several spandex fibers twisted together, and the outer covering yarn is made of several bamboo fibers twisted together.

[0010] The present invention is further configured such that: the antibacterial yarn is made by twisting several ramie fibers and several polyester profiled fibers, and the cross section of the polyester profiled fibers is set to a cross shape.

[0011] This utility model is further configured as follows:

[0012] In summary, this utility model has the following beneficial effects: the antibacterial strip provided on one side of the antibacterial part and the several antibacterial blocks provided on the other side of the antibacterial part utilize their good moisture dissipation and antibacterial effects to inhibit and dissipate moisture from the liquid absorbed by the base layer. Furthermore, the moisture dissipation grooves formed between adjacent antibacterial blocks can increase the contact area between the antibacterial blocks and the air, resulting in more uniform and rapid moisture dissipation. The antibacterial part with an arc-shaped vertical cross-section can increase the air volume between the fabric and the skin. Moreover, when the fabric is compressed, the antibacterial part deforms, increasing the exchange rate of air inside and outside the fabric through the vent holes, further improving the breathability and moisture dissipation effect of the fabric. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the structure of the present invention. Figure 1 ;

[0014] Figure 2 This is a schematic diagram of the structure of the present invention. Figure 2 ;

[0015] Figure 3 Side view of the base layer and hot pressing device;

[0016] Figure 4 This is an organizational chart for the grassroots level.

[0017] In the diagram: 1. Base layer; 2. Antibacterial section; 201. Antibacterial strip; 202. Antibacterial block; 203. Ventilation hole; 204. Moisture dissipation groove; 3. Connecting part; 4. Workbench; 5. Pressure plate; 6. Hot press component. Detailed Implementation

[0018] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0019] An antibacterial fabric, such as Figure 1 and Figure 2As shown, the system includes a base layer 1, which includes an antibacterial section 2 and a connecting section 3. The antibacterial section 2 has a fan-shaped vertical cross-section. The antibacterial section 2 and the connecting section 3 are alternately arranged. Several antibacterial blocks 202 are provided on one end face of the antibacterial section 2, and antibacterial strips 201 are provided on the other end face of the antibacterial section 2. The antibacterial blocks 202 and antibacterial strips 201 are staggered, and moisture-dissipating grooves 204 are formed between adjacent antibacterial blocks 202. The horizontal projection plane of the antibacterial strips 201 coincides with the horizontal projection plane of the moisture-dissipating grooves 204. Several vents 203 are provided on the antibacterial section 2, and the vents 203 are located near the connecting section 3. The fan-shaped antibacterial section 2 can... The volume of air between the skin and the fabric is increased, and the exchange rate of air between the inside and outside of the fabric is improved through the ventilation holes 203. The fabric can accelerate the air flow after being squeezed, thus improving the overall breathability and quick-drying effect of the fabric. The moisture-dissipating grooves 204 formed by several antibacterial blocks 202 on the antibacterial part 2 increase the contact area between the antibacterial blocks 202 and the air, thereby increasing the moisture dissipation speed of the antibacterial blocks 202. The moisture-dissipating strip set on the other side further accelerates the overall moisture dissipation effect of the fabric. When the antibacterial blocks 202 and antibacterial strips 201 are dissipating moisture, they will also have an antibacterial and antimicrobial effect on the liquid they absorb, thereby improving the overall antibacterial effect of the fabric.

[0020] like Figure 1 , Figure 2 As shown, the fabric structure of base layer 1 is a warp-patterned weave. The ground warp and weft threads of base layer 1 are made of breathable yarn, while the patterned warp of base layer 1 is made of antibacterial yarn. The breathable yarn consists of a core yarn and an outer covering yarn spirally wound around its outer side. The core yarn is made by twisting several spandex yarns using a twisting machine, and the outer covering yarn is made by twisting several bamboo fibers using a twisting machine. Through a spinning process, the core yarn and the outer covering yarn are fed into the spinning machine, so that the outer covering yarn spirally wound around the outside of the core yarn. Bamboo fibers have a cooling sensation. This yarn features excellent breathability and moisture absorption, and utilizes the good elasticity of spandex fibers to achieve both good breathability and elasticity. The antibacterial yarn is made by twisting several ramie fibers and several polyester profiled fibers using a twisting machine. The polyester profiled fibers have a cross-shaped cross-section, which improves their breathability and moisture absorption. The polyester profiled fibers also possess good strength, while the ramie fibers have excellent moisture absorption, antibacterial properties, and moisture-wicking effects. Figure 4 As shown, according to the weaving sequence of the warp-patterned fabric, breathable yarn and antibacterial yarn are fed into the multi-arm loom. The pattern is a continuous V-shape. Since the patterned yarn is interwoven on the base layer 1, and the characteristic of the warp-patterned fabric is that the patterns on both sides are corresponding, an antibacterial strip 201 is formed on the front side, and several antibacterial blocks 202 are formed on the back side. Both the antibacterial strip 201 and the antibacterial blocks 202 are formed by antibacterial yarn. Adjacent antibacterial blocks 202 form a moisture-dissipating groove 204 on the end face of the base layer 1, and the horizontal projection plane of the moisture-dissipating groove 204 coincides with the horizontal projection plane of the antibacterial strip 201.

[0021] like Figure 1 and Figure 2 As shown, several ventilation holes 203 are provided on the end face of the base layer 1. The ventilation holes 203 can be formed by laser burning with a laser burning machine. The laser burning pattern is circular. After the laser burning path is preset on the laser burning machine, the woven base layer 1 is placed on the worktable 4 of the laser burning machine. The laser burning machine uses a laser gun to pierce the base layer 1 according to the preset burning pattern and burning path to form several ventilation holes 203. The projection surface of the ventilation holes 203 does not intersect with the projection surface of the antibacterial block 202 and the antibacterial strip 201. By opening holes in the base layer 1, the porosity of the base layer 1 is increased, thereby improving the overall breathability of the fabric.

[0022] like Figure 1 , Figure 2 and Figure 3 As shown, the antibacterial part 2, with a fan-shaped vertical cross-section, and the relatively flat connecting part 3 are formed by a hot press. The base layer 1 obtained through the above steps is placed on the workbench 4 of the hot press device. The vertical cross-section of the hot press component 6 of the hot press device is a combination of an isosceles trapezoid and a rectangle. The shorter end of the isosceles trapezoid faces the base layer 1, and the hot press component 6 is located between adjacent antibacterial strips 201. When the pressure plate 5 pushes the hot press component 6 down, the hot press component 6 is continuously heated, causing the fibers of the hot-pressed part to shrink, thus tightening both sides to form a curved antibacterial part 2. Preferably, a pad strip can be added to the workbench 4 to make the antibacterial part 2 bend, and then the hot press component 6 is used for hot pressing to ensure the stable formation of the curved part. The antibacterial strip 201 is located on the protruding part of the antibacterial part 2, and the antibacterial component is located on the recessed part of the antibacterial part 2.

[0023] 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. An antibacterial fabric, comprising a base layer (1), characterized in that: The base layer (1) includes an antibacterial part (2) and a connecting part (3). The antibacterial part (2) and the connecting part (3) are arranged alternately. The vertical cross-section of the antibacterial part (2) is fan-shaped. Several antibacterial blocks (202) are provided on one side end face of the antibacterial part (2). An antibacterial strip (201) is provided on the other side end face of the antibacterial part (2). The antibacterial blocks (202) and the antibacterial strip (201) are arranged alternately. A moisture-dissipating groove (204) is formed between adjacent antibacterial blocks (202). The horizontal projection plane of the antibacterial strip (201) coincides with the horizontal projection plane of the moisture-dissipating groove (204). Several air vents (203) are opened on the antibacterial part (2). The air vents (203) are located close to the connecting part (3).

2. The antibacterial fabric according to claim 1, characterized in that: The fabric structure of the base layer (1) is set as a warp patterned weave, the ground weave of the warp patterned weave is a plain weave, the antibacterial strips (201) and antibacterial blocks (202) are formed by the warp pattern of the warp patterned weave, the side of the antibacterial part (2) with several antibacterial strips (201) is the front side of the warp patterned weave, the side with several antibacterial blocks (202) is the back side, the several antibacterial blocks (202) are located in the recess of the antibacterial part (2), and the antibacterial strips (201) are located in the protrusion of the antibacterial part (2).

3. The antibacterial fabric according to claim 2, characterized in that: The ground warp and ground weft of the base layer (1) are made of breathable yarn, and the flower warp of the base layer (1) is made of antibacterial yarn.

4. The antibacterial fabric according to claim 3, characterized in that: The breathable yarn consists of a core yarn and an outer wrapping yarn spirally wound around its outer side. The core yarn is made of several spandex fibers twisted together, and the outer wrapping yarn is made of several bamboo fibers twisted together.

5. The antibacterial fabric according to claim 3, characterized in that: The antibacterial yarn is made by twisting several ramie fibers and several polyester profiled fibers, and the cross-section of the polyester profiled fibers is set in a cross shape.