Antistatic comfortable polyester fabric

By designing the structure of divergence layer, comfort layer and antistatic parts in polyester fabric, the conductivity of aramid fiber and silver fiber and the hygroscopicity of cotton fibers, the electrostatic accumulation and adsorption problems of polyester fabrics are solved, and the antistatic, breathable and comfortable effects are achieved.

CN223187187UActive Publication Date: 2025-08-05WUJIANG YUXING SILK CO LTD
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Patent Information

Application Number
CN202421582131.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-05
Publication Date
2025-08-05
Estimated Expiration
2034-07-05

AI Technical Summary

Technical Problem

Polyester fabrics produce static electricity due to friction during daily wear, which causes static electricity to accumulate and absorb hair and dust, and has poor anti-static performance.

Method used

A structural design consisting of a divergent layer and a comfort layer is adopted. Antistatic parts are provided between the divergent layer and the comfort layer. The antistatic parts and the divergent layer are surrounded by a ventilation space, and cross-intersecting cracks and resisting members are provided on the side of the divergent layer away from the comfort layer. Combining the conductivity of aramid fibers and silver fibers and the hygroscopicity of cotton fibers, it reduces friction area and static electricity generation.

Benefits of technology

Effectively reduce static electricity generation, improve anti-static effect, enhance breathability and moisture dissipation performance, and improve wear comfort and cleanliness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an antistatic comfortable polyester fabric, which relates to the technical field of polyester fabrics and is characterized in that a plurality of antistatic parts are arranged between a comfortable layer and a divergent layer, a plurality of ventilation spaces are enclosed by the antistatic parts and the divergent layer, and a plurality of crossed gaps are arranged on one side of the divergent layer far away from the comfortable layer. The gaps are fixedly connected with abutting pieces along the two sides of the length of the gaps. After being supported by the anti-static pieces made of aramid fibers, friction areas between the comfortable layer and the diverging layer and between the comfortable layer and the skin are reduced, the contact friction area between the fabric and an external object is reduced through the collision pieces, and static electricity generated by friction when the fabric is worn is reduced; meanwhile, more air exists in the fabric and between the fabric and the skin, the air permeability and the moisture dissipation effect of the fabric are improved, the comfortable layer made of cotton fibers provides good touch feeling during wearing, sweat generated by a wearer can be absorbed in time, and the wearing comfort is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of polyester fabrics, and more specifically, to antistatic and comfortable polyester fabrics. Background Art

[0002] Polyester fabric is a fabric woven with polyester fiber as raw material. Polyester fiber is a synthetic fiber made by chemical condensation of organic dibasic acid and diol. It has high strength and wear resistance, making the polyester fabric strong and durable. It has been widely used in the textile industry and is often used in the production of clothing, furniture, tents, umbrellas and other items.

[0003] However, polyester fibers have poor hygroscopicity, which makes the polyester fabrics made from them usually relatively dry. The fabrics will continue to rub against the wearer's skin during daily wear. As the fabrics continue to rub against the skin in a dry environment, static electricity will continue to be generated inside the fabric. The antistatic properties of polyester fibers are poor, so the generated static electricity cannot be discharged and dispersed in time and accumulates inside the fabric. As a result, polyester fabrics are prone to absorbing hair and dust when worn.

[0004] Therefore, new solutions need to be proposed to solve this problem. Utility Model Content

[0005] In view of the shortcomings of the existing technology, the purpose of the present invention is to provide an anti-static and comfortable polyester fabric to solve the problem that polyester fabrics continue to generate static electricity during daily wear, thereby easily absorbing hair and dust.

[0006] The above technical purpose of the present utility model is achieved through the following technical solutions: the anti-static comfortable polyester fabric includes a diverging layer and a comfort layer fixedly connected to each other, a number of anti-static parts are arranged between the comfort layer and the diverging layer, a number of ventilation spaces are enclosed by the anti-static parts and the diverging layer, a number of cross-intersecting cracks are opened on the side of the diverging layer away from the comfort layer, and a number of the cracks are fixedly connected with resistance parts along both sides of their length.

[0007] The utility model is further configured as follows: a plurality of depressions symmetrically arranged along the thickness direction of the fabric are provided on both sides of the diverging layer, and the comfort layer is embedded in and fixedly connected to the plurality of depressions.

[0008] The utility model is further configured as follows: the depressions on both sides of the diffusion layer are formed integrally by hot pressing the comfort layer and the diffusion layer; the cross section of the antistatic component is arc-shaped; and the arc-shaped opening of the antistatic component is offset against the diffusion layer.

[0009] The present utility model is further configured such that: the divergence layer, the comfort layer, and the antistatic member are all provided with a plurality of ventilation holes symmetrically arranged along the thickness direction of the fabric, and the plurality of ventilation holes are all interconnected with the ventilation space.

[0010] The present utility model is further configured such that: a plurality of slits and the abutting members on the divergence layer are integrally formed by flocking, and the depth of the slit is the same as the depth of the depression.

[0011] The present utility model is further configured such that: the divergence layer is made of divergence yarns by a weaving method of a through-hole structure. The divergence yarns are formed by twisting a first strand and a second strand. The first strand is formed by twisting polyester fibers, and the second strand is formed by twisting silver fibers.

[0012] The present utility model is further configured such that: the comfort layer is made of soft yarns by a weaving method of a through-hole structure. The soft yarns are formed by twisting a third strand spirally wound around the first strand. The third strand is formed by twisting cotton fibers.

[0013] The present utility model is further configured such that: the antistatic member is formed by hot pressing and cutting a fabric woven from antistatic yarns by a through-hole structure. The antistatic yarns are formed by twisting a fourth strand spirally wound around the first strand. The fourth strand is formed by twisting aramid fibers, and the twist of the fourth strand is 197 turns / 10 cm.

[0014] In summary, the present utility model has the following beneficial effects: After being supported by the antistatic member, the friction area between the comfort layer and the divergence layer and between the comfort layer and the skin is reduced. A plurality of abutting members reduce the contact friction area between the fabric and external objects, reducing the static electricity generated by the fabric due to friction during wearing. Silver fibers have good electrical conductivity, enabling the made divergence layer to timely conduct the static electricity in the fabric and dissipate it into the air, further improving the antistatic effect of the fabric. The comfort layer made of cotton fibers provides good softness during wearing and can timely absorb the sweat generated by the wearer, improving the comfort during wearing. Through a plurality of ventilation holes interconnected with the ventilation space, the fabric has a good air circulation effect inside, improving the air permeability and moisture dissipation effect of the fabric. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic structural view of the present utility model;

[0016] Figure 2 is an exploded view of the present utility model;

[0017] Figure 3 is Figure 2 an enlarged view of part A in

[0018] Figure 4 isFigure 3 Enlarged view at B in the [Chinese description];

[0019] Figure 5 Cross-sectional view of the divergent yarn;

[0020] Figure 6 Cross-sectional view of the soft yarn;

[0021] Figure 7 Cross-sectional view of the antistatic yarn.

[0022] In the figure: 1. Divergent layer; 2. Comfort layer; 3. Antistatic component; 4. Ventilation space; 5. Crack; 6. Contact component; 7. Depression; 8. Ventilation hole; 9. Divergent yarn; 10. First strand; 11. Second strand; 12. Soft yarn; 13. Third strand; 14. Antistatic yarn; 15. Fourth strand. Detailed implementation mode

[0023] The following combines the attached drawings and embodiments to describe the present utility model in detail.

[0024] Embodiment: Antistatic and comfortable polyester fabric, as Figure 1 and Figure 5 shown, includes a fixedly connected divergent layer 1 and comfort layer 2. The divergent layer 1 is woven by feeding the divergent yarn 9 into a jet loom and through the weaving method of a porous weave. The divergent yarn 9 is twisted by a twisting machine from the first strand 10 and the second strand 11. The first strand 10 is twisted by a twisting machine from polyester fibers, and the second strand 11 is twisted by a twisting machine from silver fibers. The relatively high strength and wear resistance of the polyester fibers improve the overall service life of the fabric. The silver fibers have good electrical conductivity, enabling the made divergent layer 1 to timely conduct the static electricity generated inside the fabric and dissipate it into the air, making the fabric have good antistatic effect, avoiding the fabric from adsorbing dust and hair due to static electricity, and improving the cleanliness of the fabric.

[0025] As Figure 1 and Figure 6 shown, the comfort layer 2 is woven by feeding the soft yarn 12 into a jet loom and through the weaving method of a porous weave. The soft yarn 12 is twisted by the processing technology of a mule spinning by helically winding the third strand 13 around the first strand 10. The third strand 13 is twisted by a twisting machine from cotton fibers. The cotton fibers have good softness, enabling the fabric to improve the soft touch when contacting the skin through the comfort layer 2 during wearing. The good hygroscopicity of the cotton fibers enables the comfort layer 2 to timely absorb the sweat generated by the wearer's skin, keep the skin dry and comfortable, and at the same time improve the overall humidity of the fabric, avoiding the fabric from being too dry and easily generating static electricity.

[0026] As Figure 2 and Figure 7As shown in the figure, a number of antistatic components 3 are symmetrically arranged along the length direction of the fabric between the comfort layer 2 and the divergence layer 1. The antistatic components 3 are formed by feeding antistatic yarns 14 into a air-jet loom and weaving them into a base layer through a leno weave, and then using a hot press to heat-press the woven base layer into an arc shape and then using a cutting machine to cut it, so that the cross-section of the antistatic component 3 is arc-shaped. The antistatic yarn 14 is formed by twisting the fourth strand 15 spirally around the first strand 10 through the processing technology of a mule spinning machine. The fourth strand 15 is twisted by an aramid fiber through a twisting machine. The twist of the fourth strand 15 is 197 turns / 10 cm. The aramid fiber has good insulation. By increasing the twist of the fourth strand 15, it is tightly coated on the surface of the first strand 10, so that the surface of the antistatic component 3 has a good insulation effect. Through a number of antistatic components 3, static electricity is avoided when it contacts and rubs with the comfort layer 2 and the divergence layer 1.

[0027] As Figure 1 and Figure 2 shown in the figure, after placing the antistatic component 3 between the divergence layer 1 and the comfort layer 2, use a hot press to hot-press the comfort layer 2 and the divergence layer 1 together, so that the arc-shaped opening of the antistatic component 3 abuts against the divergence layer 1. A number of antistatic components 3 and the divergence layer 1 enclose a number of ventilation spaces 4. Through a number of ventilation spaces 4, the friction area between the comfort layer 2 and the divergence layer 1 is reduced, so that there is more space between the comfort layer 2 and the divergence layer 1. After being supported by the antistatic component 3, the comfort layer 2 is in a wave shape, thus reducing the contact area between the comfort layer 2 and the skin and reducing the generation of static electricity.

[0028] As Figures 1-3 shown in the figure, the divergence layer 1, the comfort layer 2 and the antistatic component 3 are all provided with a number of square ventilation holes 8 symmetrically arranged along the thickness direction of the fabric. The ventilation holes 8 on a number of divergence layers 1, the ventilation holes 8 on a number of comfort layers 2 and the ventilation holes 8 on the antistatic component 3 are integrally formed through the weaving method of a leno weave. A number of ventilation holes 8 are all interconnected with the ventilation spaces 4. Through a number of interconnected ventilation spaces 4 and a number of ventilation holes 8, the fabric has a good air circulation effect inside, improving the overall air permeability and moisture dissipation effect of the fabric. Through the ventilation spaces 4, the ductility and softness of the fabric are further improved, providing a certain buffering effect when the fabric collides with external objects, avoiding the situation of the fabric cracking after being knocked, and improving the use effect of the fabric.

[0029] As Figures 1-4As shown in the figure, a number of recesses 7 symmetrically arranged along the fabric thickness direction are provided on both sides of the divergence layer 1. The comfort layer 2 is embedded and fixedly connected in the number of recesses 7. The recesses 7 on both sides of the divergence layer 1 are integrally formed when the comfort layer 2 and the divergence layer 1 are hot-pressed and fixed together. The number of recesses 7 further reduces the friction between the divergence layer 1 and the comfort layer 2 and foreign objects and the skin. On the side of the divergence layer 1 away from the comfort layer 2, a number of long strip-shaped cracks 5 intersecting in a cross shape are provided. A number of contact members 6 are fixedly connected to both sides of the length of the number of cracks 5. The number of cracks 5 and the contact members 6 on the divergence layer 1 are integrally formed by a flocking machine. The depth of the cracks 5 is the same as the depth of the recesses 7 to prevent the divergence layer 1 from being loose and broken after flocking. The number of contact members 6 are the fluff formed after flocking. The number of contact members 6 reduces the friction area when the divergence layer 1 contacts foreign objects, and further reduces the generation of static electricity. The contact members 6 formed by flocking are relatively soft, which further enhances the softness and buffering protection effect of the fabric while providing a good touch.

[0030] The above is only the preferred embodiment of the present invention. The protection scope of the present invention is not limited to the above embodiments. All technical solutions within the idea of the present invention belong to the protection scope of the present invention. It should be pointed out that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements should also be regarded as the protection scope of the present invention.

Claims

1. An antistatic and comfortable polyester fabric, comprising a diffuser layer (1) and a comfort layer (2) fixedly connected to each other, characterized in that: A plurality of antistatic components (3) are provided between the comfort layer (2) and the diffusion layer (1); a plurality of ventilation spaces (4) are enclosed by the plurality of antistatic components (3) and the diffusion layer (1); a plurality of cross-intersecting cracks (5) are provided on a side of the diffusion layer (1) away from the comfort layer (2); and a plurality of abutment components (6) are fixedly connected to both sides of the plurality of cracks (5) along their lengths.

2. The antistatic comfortable polyester fabric according to claim 1, characterized in that: Both sides of the diffusion layer (1) are provided with a plurality of recesses (7) symmetrically arranged along the thickness direction of the fabric, and the comfort layer (2) is embedded in and fixedly connected to the plurality of recesses (7).

3. The antistatic comfortable polyester fabric according to claim 2, characterized in that: The depressions (7) on both sides of the diffusion layer (1) are formed integrally by hot-pressing the comfort layer (2) and the diffusion layer (1); the cross section of the antistatic component (3) is arc-shaped, and the arc-shaped opening of the antistatic component (3) abuts against the diffusion layer (1).

4. The antistatic comfortable polyester fabric according to claim 3, characterized in that: The diffusion layer (1), the comfort layer (2) and the antistatic component (3) are all provided with a plurality of ventilation holes (8) symmetrically arranged along the thickness direction of the fabric, and the plurality of ventilation holes (8) are interconnected with the ventilation space (4).

5. The antistatic comfortable polyester fabric according to claim 3, characterized in that: The plurality of cracks (5) and the resisting pieces (6) on the diffusion layer (1) are formed integrally by cutting the pile, and the depth of the cracks (5) is the same as the depth of the depressions (7).

6. The antistatic comfortable polyester fabric according to claim 5, characterized in that: The divergent layer (1) is made by weaving divergent yarns (9) through an openwork structure, wherein the divergent yarns (9) are formed by twisting a first strand (10) and a second strand (11), wherein the first strand (10) is formed by twisting polyester fibers, and the second strand (11) is formed by twisting silver fibers.

7. The antistatic comfortable polyester fabric according to claim 6, characterized in that: The comfort layer (2) is made by weaving soft yarn (12) through an openwork structure, wherein the soft yarn (12) is formed by twisting a third strand (13) spirally wound around a first strand (10), and the third strand (13) is twisted by cotton fibers.

8. The antistatic comfortable polyester fabric according to claim 7, characterized in that: The antistatic component (3) is formed by hot pressing and cutting a fabric formed by weaving an antistatic yarn (14) through a perforated tissue, wherein the antistatic yarn (14) is twisted by spirally winding a fourth strand (15) around a first strand (10), wherein the fourth strand (15) is twisted by aramid fiber, and the twist of the fourth strand (15) is 197 turns / 10 cm.