CN224044783U - Warm-keeping antibacterial fabric - Google Patents
Warm-keeping antibacterial fabricInfo
- Publication number
- CN224044783U CN224044783U CN202520246155.7U CN202520246155U CN224044783U CN 224044783 U CN224044783 U CN 224044783U CN 202520246155 U CN202520246155 U CN 202520246155U CN 224044783 U CN224044783 U CN 224044783U
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- layer
- antibacterial
- warm
- keeping
- tearing
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Abstract
The utility model relates to the technical field of fabrics, in particular to a thermal antibacterial fabric, which comprises an embedded thermal layer and a close-fitting thermal layer, wherein the side surface of one side of the embedded thermal layer is fixedly provided with anti-tearing reinforcing layers, the number of the anti-tearing reinforcing layers is divided into two, a breathable inner layer is arranged between the two anti-tearing reinforcing layers, the close-fitting thermal layer is fixed on the anti-tearing reinforcing layer on one side, the side surface of the other side of the embedded thermal layer is fixedly provided with an antibacterial inner layer, the antibacterial inner layer is fixedly provided with a wear-resistant outer layer, an anti-wrinkling layer is arranged between the wear-resistant outer layer and the antibacterial inner layer, the embedded thermal layer and the close-fitting thermal layer are made of micro denier fiber materials, and a reinforcing net is arranged between the first shaping layer and the second shaping layer.
Description
Technical Field
The utility model relates to the technical field of fabrics, in particular to a warm-keeping antibacterial fabric.
Background
The warm-keeping antibacterial fabric is a special fabric combining warmth retention and antibacterial functions. The material with good heat preservation performance is selected as a basis, and meanwhile, the antibacterial technology is combined, so that the fabric can keep the body warm and simultaneously effectively inhibit the growth and propagation of microorganisms such as bacteria and fungi. The fabric generally adopts a mode of internally arranging an antibacterial agent, such as silver ion antibacterial technology, and antibacterial components are directly synthesized into the chemical fibers, so that a lasting antibacterial effect is achieved. The warm-keeping antibacterial fabric not only improves the wearing comfort, but also reduces the odor and infection possibly caused by bacterial breeding.
However, the existing thermal antibacterial fabric is improved in heat retention property due to the thickening design of the velvet, but is poor in air permeability, so that wearing discomfort is caused, and the thermal antibacterial fabric with good partial air permeability generally requires a loose fabric structure, so that the physical strength of the fabric is easily weakened, the tearing resistance of the fabric is reduced, and certain defects exist in the use process.
In view of this, the present utility model has been made.
Disclosure of utility model
The utility model aims to solve the problems and provide the warm-keeping antibacterial fabric which has the advantages of comfort and warmth in wearing, durability and tearing resistance and effectively inhibits bacteria from breeding.
The technical scheme is that the warm-keeping antibacterial fabric comprises an embedded warm-keeping layer and a close-fitting warm-keeping layer, wherein the anti-tearing reinforcing layers are fixedly arranged on one side face of the embedded warm-keeping layer, the number of the anti-tearing reinforcing layers is divided into two, the breathable inner layer is arranged between the two anti-tearing reinforcing layers, the close-fitting warm-keeping layer is fixed on the anti-tearing reinforcing layer on one side, the antibacterial inner layer is fixed on the other side face of the embedded warm-keeping layer, the wear-resistant outer layer is fixedly arranged on the antibacterial inner layer, and the crease-resistant layer is arranged between the wear-resistant outer layer and the antibacterial inner layer.
Further, in order to provide excellent warmth retention performance and fine wearing experience for the whole fabric, light and comfortable performances are ensured, and the embedded warmth retention layer and the close-fitting warmth retention layer are all made of micro-denier fiber materials.
Further, in order to enhance the tear resistance of the fabric, the overall durability and stability are improved, the tear-proof reinforcing layer comprises a first shaping layer and a second shaping layer, the reinforcing net is arranged between the first shaping layer and the second shaping layer, and the reinforcing net is woven by two vertically staggered elastic fiber yarns.
Further, in order to enable the fabric to have excellent shaping effect and durability, the fabric is ensured to be stable in structure, wrinkle resistant and deformation resistant, the service life of clothes is prolonged, and the first shaping layer and the second shaping layer are made of polyester fiber materials.
Further, in order to enhance the air permeability of the fabric, air can smoothly circulate, so that the wearing comfort and the health are improved, and the air permeable inner layer is uniformly provided with air permeable micropores.
Further, in order to promote fabric sanitation, protect skin health, be applicable to needs highly clean environment or underwear, the antibacterial inlayer includes first antibacterial coating with the antibacterial coating of second, first antibacterial coating with the antibacterial agent of second antibacterial coating surface coating evenly distributed, first antibacterial coating with be provided with between the antibacterial coating of second fill the adhesion layer, be provided with nanometer antibacterial particles on the adhesion layer of filling.
Further, in order to enable the fabric to resist daily wear, the service life of clothes is prolonged, the wear-resistant outer layer is suitable for being worn in outdoor and high-activity scenes, and the wear-resistant outer layer is made of nylon fiber materials.
Furthermore, in order to utilize the natural crease resistance and easy-care property of the modal fiber, the fabric is kept flat in the wearing process, ironing requirements are reduced, and the crease-resistant layer is made of the modal fiber.
The anti-tearing reinforcing layer has the technical effects and advantages that the thermal insulation performance is enhanced through the embedded thermal insulation layer and the close-fitting thermal insulation layer, comfort and warmth of wearing are ensured, the durability and the anti-tearing capability of the fabric are obviously improved, the service life is prolonged, the ventilation inner layer effectively promotes air circulation, the stuffiness is reduced, the antibacterial inner layer can effectively inhibit bacteria breeding, the fabric is kept clean and healthy, and the thermal insulation performance, the antibacterial performance, the durability and the attractive appearance are improved.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic diagram of an explosive structure according to the present utility model;
FIG. 3 is a schematic structural view of an antimicrobial inner layer according to the present utility model;
FIG. 4 is a schematic view of the connection structure of the tear resistant reinforced layer and the breathable inner layer of the present utility model;
FIG. 5 is a schematic structural view of the tear resistant reinforcing layer of the present utility model.
In the figure, 1, a thermal insulation layer is embedded; 2, a close-fitting thermal insulation layer, 3, an anti-tearing reinforcing layer, 301, a first shaping layer, 302, a second shaping layer, 303, a reinforcing net, 4, a breathable inner layer, 5, an antibacterial inner layer, 501, a first antibacterial coating, 502, a second antibacterial coating, 503, a filling adhesion layer, 6, a wear-resistant outer layer, 7 and a crease-resistant layer.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-5, a thermal antibacterial fabric comprises an embedded thermal layer 1 and a close-fitting thermal layer 2, wherein the embedded thermal layer 1 is tightly combined with the close-fitting thermal layer 2 to provide a dual thermal effect and ensure warmth and comfort. The anti-tearing reinforcing layer 3 adopts the reinforcement design, effectively prevent unexpected tearing, the reinforcing fabric durability, fixed mounting has anti-tearing reinforcing layer 3 on the side of embedded cold-proof layer 1 one side, anti-tearing reinforcing layer 3 quantity divide into two, be provided with ventilative inlayer 4 between two anti-tearing reinforcing layers 3, blend into ventilative inlayer 4 between two anti-tearing reinforcing layers 3, promote the circulation of air, reduce the stuffiness, keep warm layer 2 is fixed on the anti-tearing reinforcing layer 3 of one side next to the skin, be fixed with antibiotic inlayer 5 on the side of embedded cold-proof layer 1 opposite side, antibiotic inlayer 5 is through high-tech antibiotic coating and nanoparticle, the comprehensive inhibition bacterium breeds, keep on the skin healthy, fixed mounting has wear-resisting outer 6 on the antibiotic inlayer 5, and be provided with crease-resistant layer 7 between wear-resisting outer 6 and the antibiotic inlayer 5, wear-resisting outer 6 selects the nylon fiber, wear-resisting loss, be fit for various environment and wear. The crease-resistant layer 7 is made of Modal fibers, so that the fabric is endowed with good crease-resistant performance, the clothes are kept flat and stiff, and the whole design is compatible with warmth retention, antibiosis, wear resistance and attractive appearance.
The embedded thermal insulation layer 1 and the close-fitting thermal insulation layer 2 are made of micro-denier fibers, and the micro-denier fibers endow the fabric with incomparable fine touch and light texture by the micro-denier fibers, so that the wearing experience is softer and more comfortable. Meanwhile, the excellent warmth retention property of the micro-denier fiber can effectively lock body heat, reduce heat loss and keep warm even in cold environment. In addition, the micro-denier fiber has excellent air permeability, ensures the dryness and comfort of skin, and avoids uncomfortable feeling caused by moisture accumulation. Not only the warm-keeping effect of the fabric is improved, but also the comfort and the air permeability are improved.
The anti-tearing reinforcing layer 3 comprises a first shaping layer 301 and a second shaping layer 302, a reinforcing net 303 is arranged between the first shaping layer 301 and the second shaping layer 302, the reinforcing net 303 is formed by weaving two elastic fiber filaments which are vertically staggered, the first shaping layer 301 and the second shaping layer 302 are made of polyester fiber materials, the first shaping layer 301 and the second shaping layer 302 are made of high-strength polyester fiber materials, and the materials are known as excellent wear resistance and tearing resistance, so that a firm basic support is provided for the fabric. A reinforcing mesh 303 is embedded between the first shaping layer 301 and the second shaping layer 302, forming a grid-like reinforcing structure. Not only the overall strength of the fabric is enhanced, but also certain elasticity and resilience are given to the fabric, and even when the fabric is pulled or impacted by external force, the strength can be effectively dispersed, so that the tearing is prevented.
The ventilation micropores are uniformly formed in the ventilation inner layer 4, and a large number of ventilation micropores are uniformly and finely formed in the surface of the ventilation inner layer 4. Although the micropores are small, the micropores are similar to thousands of miniature ventilation openings, and a bridge is built between the inside of the fabric and the external environment. Can effectively promote air circulation, so that the moisture and heat on the skin surface can be rapidly discharged, and the sultry sensation and the accumulation of the moisture are avoided. Meanwhile, the ventilation micropores can also enhance the ventilation of the fabric to a certain extent, so that a wearer can enjoy fresh and dry wearing feeling while keeping warm.
The antibacterial inner layer 5 comprises a first antibacterial coating 501 and a second antibacterial coating 502, wherein the surfaces of the first antibacterial coating 501 and the second antibacterial coating 502 are coated with uniformly distributed antibacterial agents, a filling adhesion layer 503 is arranged between the first antibacterial coating 501 and the second antibacterial coating 502, nano-scale antibacterial particles are arranged on the filling adhesion layer 503, the first antibacterial coating 501 and the second antibacterial coating 502 serve as core layers of the antibacterial inner layer 5, and the surfaces of the core layers are uniformly coated with high-efficiency antibacterial agents. These antimicrobial agents are effective in inhibiting and killing a wide variety of harmful bacteria, providing a safe, healthy microenvironment for the wearer. A filling adhesive layer 503 is arranged between the two layers of antibacterial coatings, so that the adhesive force and the stability of the coating are enhanced, and nano antibacterial particles uniformly dispersed on the filling adhesive layer 503 are further amplified in antibacterial effect by the extremely small size and the large specific surface area, so that the fabric can keep excellent antibacterial performance under any use scene.
The wear-resistant outer layer 6 is made of nylon fiber, which is known for its excellent wear resistance, tear resistance and weather resistance, and provides a durable outer layer protection for the fabric. Whether friction and abrasion in daily wear or complex challenges in outdoor environment are met, the wear-resistant outer layer 6 can be used for easily coping with the friction and abrasion, the lasting durability of the fabric is ensured, the crease-resistant layer 7 is made of Modal fiber, the fabric can be kept smooth and stiff in the wearing process, wrinkles are reduced, and the fabric is softer and skin-friendly. The natural nature of the modal fibres also makes the anti-wrinkling layer 7 excellent in breathability and hygroscopicity, further enhancing the comfort of wear.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present utility model may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present disclosure describes embodiments, not every embodiment is provided with a separate embodiment, and that this description is provided for clarity only, and that the disclosure is not limited to the embodiments described in detail below, and that the embodiments described in the examples may be combined as appropriate to form other embodiments that will be apparent to those skilled in the art.
Claims (8)
1. The warm-keeping antibacterial fabric comprises an embedded warm-keeping layer (1) and a close-fitting warm-keeping layer (2), and is characterized in that an anti-tearing reinforcing layer (3) is fixedly arranged on one side surface of the embedded warm-keeping layer (1), the number of the anti-tearing reinforcing layers (3) is divided into two, an air-permeable inner layer (4) is arranged between the anti-tearing reinforcing layers (3), the close-fitting warm-keeping layer (2) is fixed on one side of the anti-tearing reinforcing layer (3), an antibacterial inner layer (5) is fixed on the other side surface of the embedded warm-keeping layer (1), a wear-resistant outer layer (6) is fixedly arranged on the antibacterial inner layer (5), and an anti-wrinkling layer (7) is arranged between the wear-resistant outer layer (6) and the antibacterial inner layer (5).
2. The warm-keeping antibacterial fabric according to claim 1, wherein the embedded warm-keeping layer (1) and the close-fitting warm-keeping layer (2) are made of micro-denier fiber materials.
3. The warm-keeping antibacterial fabric according to claim 1, wherein the tearing-preventing reinforcing layer (3) comprises a first shaping layer (301) and a second shaping layer (302), a reinforcing net (303) is arranged between the first shaping layer (301) and the second shaping layer (302), and the reinforcing net (303) is woven by two vertically-staggered elastic fiber yarns.
4. The warm-keeping antibacterial fabric according to claim 3, wherein the first shaping layer (301) and the second shaping layer (302) are made of polyester fiber.
5. The warm-keeping antibacterial fabric according to claim 1, wherein the breathable inner layer (4) is uniformly provided with breathable micropores.
6. The warm-keeping antibacterial fabric according to claim 1, wherein the antibacterial inner layer (5) comprises a first antibacterial coating (501) and a second antibacterial coating (502), uniformly distributed antibacterial agents are coated on the surfaces of the first antibacterial coating (501) and the second antibacterial coating (502), a filling attachment layer (503) is arranged between the first antibacterial coating (501) and the second antibacterial coating (502), and nanoscale antibacterial particles are arranged on the filling attachment layer (503).
7. The warm-keeping antibacterial fabric according to claim 1, wherein the wear-resistant outer layer (6) is made of nylon fiber.
8. The warm-keeping antibacterial fabric according to claim 1, wherein the crease-resistant layer (7) is made of Modal fiber.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520246155.7U CN224044783U (en) | 2025-02-17 | 2025-02-17 | Warm-keeping antibacterial fabric |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520246155.7U CN224044783U (en) | 2025-02-17 | 2025-02-17 | Warm-keeping antibacterial fabric |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN224044783U true CN224044783U (en) | 2026-03-27 |
Family
ID=99206736
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202520246155.7U Active CN224044783U (en) | 2025-02-17 | 2025-02-17 | Warm-keeping antibacterial fabric |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN224044783U (en) |
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2025
- 2025-02-17 CN CN202520246155.7U patent/CN224044783U/en active Active
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