CN213322073U - Fibrilia household garment fabric with antibacterial and bacteriostatic properties - Google Patents

Fibrilia household garment fabric with antibacterial and bacteriostatic properties Download PDF

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Publication number
CN213322073U
CN213322073U CN202021908098.8U CN202021908098U CN213322073U CN 213322073 U CN213322073 U CN 213322073U CN 202021908098 U CN202021908098 U CN 202021908098U CN 213322073 U CN213322073 U CN 213322073U
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China
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layer
fiber
antibacterial
fibrilia
flax
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CN202021908098.8U
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陈文历
刘红菲
汤春燕
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Duolong Deqing Jiepin Industrial Co ltd
Fujian Septwolves Industry Co Ltd
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Duolong Deqing Jiepin Industrial Co ltd
Fujian Septwolves Industry Co Ltd
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Abstract

本实用新型公开了一种具有抗菌抑菌性能的麻纤维居家服装面料,包括耐磨层、亚麻纤维层一、吸湿排汗层、透气层、抗菌层一、韧性层、抗菌层二、亚麻纤维二、印花层,所述耐磨层的下端设置有所述亚麻纤维层一,所述亚麻纤维层一的下端设置有所述吸湿排汗层,所述吸湿排汗层的下端设置有所述透气层,所述透气层的下端设置有所述抗菌层一,所述抗菌层一的下端设置有所述韧性层,所述韧性层的下端设置有所述抗菌层二,所述抗菌层二的下端设置有所述亚麻纤维二,所述亚麻纤维二的下端设置有所述印花层。有益效果:有效的满足了使用需求,增加了实用性、使用方便、透气、抑菌的优点。

Figure 202021908098

The utility model discloses a hemp fiber household clothing fabric with antibacterial and bacteriostatic properties, which comprises a wear-resistant layer, a first linen fiber layer, a moisture absorption and perspiration layer, a breathable layer, a first antibacterial layer, a toughness layer, a second antibacterial layer, and a flax fiber layer. 2. Printing layer, the lower end of the wear-resistant layer is provided with the flax fiber layer 1, the lower end of the flax fiber layer 1 is provided with the moisture-absorbing and sweat-wicking layer, and the lower end of the moisture-absorbing and sweat-wicking layer is provided with the breathable layer, the lower end of the breathable layer is provided with the antibacterial layer 1, the lower end of the antibacterial layer 1 is provided with the toughness layer, the lower end of the toughness layer is provided with the antibacterial layer 2, the antibacterial layer 2 The lower end of the second linen fiber is provided with the second linen fiber, and the lower end of the second linen fiber is provided with the printing layer. Beneficial effects: effectively meet the needs of use, and increase the advantages of practicability, convenient use, ventilation, and bacteriostasis.

Figure 202021908098

Description

Fibrilia household garment fabric with antibacterial and bacteriostatic properties
Technical Field
The utility model relates to a, particularly, relate to a fibrilia house garment materials with antibiotic antibacterial property.
Background
The garment is made of fabric, the fabric is used for making the garment and is one of three elements of the garment, the fabric can explain the style and the characteristics of the garment, the expression effects of the color and the shape of the garment are directly controlled, the noble and perfect self-body and soft hand feeling are presented, the fabric of the garment is different from day to day in the world, but the high-quality and high-grade fabric has the characteristics of being comfortable to wear, absorbing sweat, ventilating, hanging, stiff and smooth, noble in vision, soft in touch and the like. The linen fabric has the functions of temperature regulation, allergy resistance, static electricity prevention and bacteria resistance, and meanwhile, the moisture absorption of the linen is good, but the existing linen fabric has higher requirements on ventilation, bacteria resistance and the like, and the cloth in the prior art is only made of a single-layer cloth and cannot meet the high-requirement standard.
An effective solution to the problems in the related art has not been proposed yet.
SUMMERY OF THE UTILITY MODEL
To the problem in the correlation technique, the utility model provides a fibrilia house garment materials with antibiotic antibacterial property to overcome the above-mentioned technical problem that current correlation technique exists.
Therefore, the utility model discloses a specific technical scheme as follows:
the utility model provides a fibrilia clothing surface fabric at home with antibiotic bacteriostasis ability, includes wearing layer, flax fiber layer one, moisture absorption sweat releasing layer, ventilative layer, antibiotic layer one, toughness layer, antibiotic layer two, flax fiber two, stamp layer, the lower extreme of wearing layer is provided with flax fiber layer one, the lower extreme of flax fiber layer one is provided with moisture absorption sweat releasing layer, the lower extreme on moisture absorption sweat releasing layer is provided with ventilative layer, the lower extreme on ventilative layer is provided with antibiotic layer one, the lower extreme on antibiotic layer one is provided with toughness layer, toughness layer's lower extreme is provided with antibiotic layer two, antibiotic layer two's lower extreme is provided with flax fiber two, flax fiber two's lower extreme is provided with stamp layer.
Furthermore, the wear-resistant layer is made of nylon materials.
Furthermore, the moisture absorption and sweat releasing layer is composed of polyester fibers, polyamide fibers and natural bamboo fibers, the polyester fibers and the polyamide fibers are connected in a staggered mode, and the natural bamboo fibers are located in the middle of the polyester fibers and the polyamide fibers.
Furthermore, the toughness layer is formed by weaving nylon fiber and polyether ester elastic fiber, the nylon fiber is located the upper end of polyether ester elastic fiber, the nylon fiber is the wave structure.
Furthermore, the first antibacterial layer is composed of natural bamboo fibers II, modal fibers and sarcandra glabra fibers, the natural bamboo fibers II and the modal fibers are interwoven, mixed and woven, and the sarcandra glabra fibers are inserted into the intersections between the natural bamboo fibers II and the modal fibers and connected.
Furthermore, the second antibacterial layer is formed by warp and weft mixed weaving of a chitin fiber knitted material layer and a nano-silver composite antibacterial fabric material layer.
The utility model provides a fibrilia house garment materials with antibiotic antibacterial property, beneficial effect as follows: the utility model discloses a setting on wearing layer, flax fiber layer one, moisture absorption perspire layer, ventilative layer, antibiotic layer one, toughness layer, antibiotic layer two, flax fiber two, stamp layer has promoted garment materials's antibacterial property greatly, can effectively restrain the growth of bacterium, prevents to breed the bacterium after the clothes is dressed for a long time, and the effectual user demand that has satisfied has increased practicality, convenient to use, ventilative, antibacterial advantage.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a schematic structural diagram of a fibrilia home-use garment fabric with antibacterial and bacteriostatic properties according to an embodiment of the present invention;
fig. 2 is a schematic view of a moisture-absorbing and sweat-releasing layer of a hemp fiber home-made garment fabric with antibacterial and bacteriostatic properties according to an embodiment of the present invention;
fig. 3 is a schematic diagram of a flexible layer of a hemp fiber home-use garment fabric with antibacterial and bacteriostatic properties according to an embodiment of the present invention;
fig. 4 is a schematic view of an antibacterial layer of a fibrilia home-wear fabric with antibacterial and bacteriostatic properties according to an embodiment of the present invention;
fig. 5 is a schematic view of an antibacterial layer two of the fibrilia home-use garment material with antibacterial and bacteriostatic properties according to the embodiment of the present invention.
In the figure:
1. a wear layer; 2. a flax fiber layer I; 3. a moisture absorption and sweat releasing layer; 4. a breathable layer; 5. an antibacterial layer I; 6. a ductile layer; 7. a second antibacterial layer; 8. flax fiber II; 9. printing layer; 10. polyester fiber; 11. polyamide fibers; 12. natural bamboo fiber I; 13. nylon fibers; 14. polyether ester elastic fibers; 15. natural bamboo fiber II; 16. modal fibers; 17. sarcandra glabra fiber; 18. a chitin fiber knitting material layer; 19. the nano-silver composite antibacterial fabric material layer.
Detailed Description
For further explanation of the embodiments, the drawings are provided as part of the disclosure and serve primarily to illustrate the embodiments and, together with the description, to explain the principles of operation of the embodiments, and to provide further explanation of the invention and advantages thereof, it will be understood by those skilled in the art that various other embodiments and advantages of the invention are possible, and that elements in the drawings are not to scale and that like reference numerals are generally used to designate like elements.
According to the utility model discloses an embodiment provides a fibrilia house clothes and fabrics with antibiotic antibacterial property.
The first embodiment is as follows:
as shown in fig. 1-5, the fibrilia home clothing fabric with antibacterial and bacteriostatic properties according to the embodiment of the present invention comprises a wear-resistant layer 1, a flax fiber layer one 2, a moisture absorption and sweat releasing layer 3, a breathable layer 4, an antibacterial layer one 5, a toughness layer 6, an antibacterial layer two 7, a flax fiber layer two 8, and a printing layer 9, the flax fiber layer I2 is arranged at the lower end of the wear-resistant layer 1, the moisture-absorbing and sweat-releasing layer 3 is arranged at the lower end of the flax fiber layer I2, the lower end of the moisture absorption and sweat releasing layer 3 is provided with the breathable layer 4, the lower end of the breathable layer 4 is provided with the antibacterial layer I5, the lower end of the first antibacterial layer 5 is provided with the tough layer 6, the lower end of the tough layer 6 is provided with the second antibacterial layer 7, the lower end of the second antibacterial layer 7 is provided with the second flax fiber 8, and the lower end of the second flax fiber 8 is provided with the printing layer 9.
Example two:
as shown in fig. 1-5, the wear-resistant layer 1 is made of nylon. The moisture absorption and sweat releasing layer 3 is composed of polyester fibers 10, polyamide fibers 11 and natural bamboo fibers I12, the polyester fibers 10 are connected with the polyamide fibers 11 in a staggered mode, and the natural bamboo fibers I12 are located in the middle of the polyester fibers 10 and the polyamide fibers 11. The flexible layer 6 is formed by weaving nylon fibers 13 and polyether ester elastic fibers 14, the nylon fibers 13 are located at the upper ends of the polyether ester elastic fibers 14, and the nylon fibers 13 are of a wave-shaped structure.
As shown in fig. 1 to 5, the first antibacterial layer 5 is composed of a second natural bamboo fiber 15, a modal fiber 16 and a sarcandra glabra fiber 17, the second natural bamboo fiber 15 and the modal fiber 16 are interlaced and mixed, and the sarcandra glabra fiber 17 is connected to the interlaced position between the second natural bamboo fiber 15 and the modal fiber 16. The second antibacterial layer 7 is formed by warp and weft mixed weaving of a chitin fiber knitted material layer 18 and a nano-silver composite antibacterial fabric material layer 19.
For the convenience of understanding the technical solution of the present invention, the following detailed description is made on the working principle or the operation mode of the present invention in the practical process.
In practical application, the moisture absorption and sweat releasing layer 3 can timely absorb sweat generated by a human body and inhibit breeding of bacteria on the body surface, so that a user can wear the blended yarn more comfortably and healthily, the first antibacterial layer 5 and the second antibacterial layer 7 can timely absorb peculiar smell and play an antibacterial effect, and the nano-silver has no stimulation to the skin, so that the fabric has good antibacterial property and is cleaner and safer, meanwhile, the sweat generated by the human body can be absorbed by the fabric and then discharged after antibacterial disinfection, so that the non-toxic, antibacterial and moisture absorption effects of the fabric can be well improved, the softness and skin affinity of the fabric can be improved, so that the fabric has air permeability, coolness, antibiosis, functionality and comfortableness, and the characteristics of antifouling, moisture absorption, heat dissipation, health care and bacteriostasis of the fibrilia on the first flax fiber layer 2 and the second flax fiber layer 8 are utilized, so that the blended yarn has sanitation, coolness, comfortableness, comfort and health care, The antibacterial property is four, and the toughness and the connectivity can be kept while the elasticity and the plasticity are effectively improved through the toughness layer 6.
To sum up, with the help of the utility model discloses an above-mentioned technical scheme, through wearing layer 1, flax fiber layer one 2, moisture absorption perspire layer 3, ventilative layer 4, antibiotic layer one 5, toughness layer 6, antibiotic layer two 7, flax fiber two 8, stamp layer 9's setting, garment materials's antibacterial performance has been promoted greatly, can effectively restrain the growth of bacterium, prevents to breed the bacterium after the clothes is dressed for a long time, the effectual user demand that has satisfied, practicality, convenient to use, ventilative, antibacterial advantage have been increased.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (6)

1. The fibrilia home clothing fabric with antibacterial and bacteriostatic properties is characterized by comprising a wear-resistant layer (1), a flax fiber layer I (2), a moisture absorption and sweat releasing layer (3), a breathable layer (4), an antibacterial layer I (5), a toughness layer (6), an antibacterial layer II (7), a flax fiber II (8) and a printing layer (9), wherein the flax fiber layer I (2) is arranged at the lower end of the wear-resistant layer (1), the moisture absorption and sweat releasing layer (3) is arranged at the lower end of the flax fiber layer I (2), the breathable layer (4) is arranged at the lower end of the moisture absorption and sweat releasing layer (3), the antibacterial layer I (5) is arranged at the lower end of the breathable layer (4), the toughness layer (6) is arranged at the lower end of the antibacterial layer II (7), the flax fiber II (8) is arranged at the lower end of the antibacterial layer II (7), the lower end of the flax fiber II (8) is provided with the printing layer (9).
2. The fibrilia home-made garment material with antibacterial and bacteriostatic properties according to claim 1, wherein the wear-resistant layer (1) is made of nylon material.
3. The linen fiber home clothing fabric with antibacterial and bacteriostatic properties as claimed in claim 1, wherein the moisture-absorbing and sweat-releasing layer (3) is composed of a polyester fiber (10), a polyamide fiber (11) and a natural bamboo fiber (12), the polyester fiber (10) and the polyamide fiber (11) are connected in a staggered manner, and the natural bamboo fiber (12) is located in the middle of the polyester fiber (10) and the polyamide fiber (11).
4. The linen fiber home clothing fabric with antibacterial and bacteriostatic effects as claimed in claim 1, wherein the flexible layer (6) is woven from nylon fibers (13) and polyether ester elastic fibers (14), the nylon fibers (13) are located at the upper ends of the polyether ester elastic fibers (14), and the nylon fibers (13) are in a wavy structure.
5. The fibrilia home clothing material with antibacterial and bacteriostatic properties as claimed in claim 1, wherein the antibacterial layer one (5) is composed of natural bamboo fiber two (15), modal fiber (16) and sarcandra glabra fiber (17), the natural bamboo fiber two (15) and the modal fiber (16) are interlaced and mixed to weave, and the sarcandra glabra fiber (17) is inserted into the interlaced part between the natural bamboo fiber two (15) and the modal fiber (16) to connect.
6. The fibrilia household clothing fabric with antibacterial and bacteriostatic properties as claimed in claim 1, wherein the second antibacterial layer (7) is formed by warp and weft mixed knitting of a chitin fiber knitted material layer (18) and a nano-silver composite antibacterial fabric material layer (19).
CN202021908098.8U 2020-09-04 2020-09-04 Fibrilia household garment fabric with antibacterial and bacteriostatic properties Expired - Fee Related CN213322073U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021908098.8U CN213322073U (en) 2020-09-04 2020-09-04 Fibrilia household garment fabric with antibacterial and bacteriostatic properties

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021908098.8U CN213322073U (en) 2020-09-04 2020-09-04 Fibrilia household garment fabric with antibacterial and bacteriostatic properties

Publications (1)

Publication Number Publication Date
CN213322073U true CN213322073U (en) 2021-06-01

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CN202021908098.8U Expired - Fee Related CN213322073U (en) 2020-09-04 2020-09-04 Fibrilia household garment fabric with antibacterial and bacteriostatic properties

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Granted publication date: 20210601