CN213564791U - Nano-level nano-copper fiber antibacterial bedding fabric - Google Patents
Nano-level nano-copper fiber antibacterial bedding fabric Download PDFInfo
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- CN213564791U CN213564791U CN202021995261.9U CN202021995261U CN213564791U CN 213564791 U CN213564791 U CN 213564791U CN 202021995261 U CN202021995261 U CN 202021995261U CN 213564791 U CN213564791 U CN 213564791U
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Abstract
The utility model discloses a nano-scale nano-copper fiber antibacterial bedding fabric, a functional component is arranged on the outer side of a base layer, an antibacterial outer layer is formed by weaving outer layer weaving wires in a staggered manner, vent holes are uniformly formed on the top surface of the base layer, graphene strips are all bonded with graphene sheets at staggered positions, the bottom surface of the base layer is provided with a bottom layer, the bottom layer is formed by plain weave of polypropylene fiber, and activated carbon powder particles are uniformly distributed on the top surface of the bottom layer. The heat distribution can be uniform, and the use is more comfortable.
Description
Technical Field
The utility model relates to the technical field of fabric, in particular to nano-copper fiber antibacterial bedding fabric.
Background
The bedding fabric refers to the fabric used by beddings such as bed sheets, quilt covers, needle head covers and the like, and has high requirements on the quality of the fabric due to the direct contact with the skin of a human body and long contact time.
The patent of application number 201820946047.0 has mentioned "an easily clean bedding surface fabric of resistant sweat stain", and this surface fabric is warm comfortable, resistant sweat stain, and antifouling dustproof, easy cleanness, the gas permeability is good, manages easily, satisfies people's demand to bedding surface fabric, and skin one side antibiotic effect is poor nevertheless is pressed close to this surface fabric, breeds the bacterium easily, and the comfort level is not high enough, is difficult to satisfy the user demand.
SUMMERY OF THE UTILITY MODEL
The utility model provides an antibiotic bedding surface fabric of nanometer copper nanofiber can effectively solve the surface fabric that provides in the above-mentioned background art and press close to skin one side antibiotic effect poor, breeds the bacterium easily, and the comfort level is not high enough, is difficult to satisfy user demand's problem.
In order to achieve the above object, the utility model provides a following technical scheme: the multifunctional composite material comprises a base layer, wherein a functional component is arranged on the outer side of the base layer, and the functional component comprises an antibacterial outer layer, an outer layer braided wire, nano copper fibers, silk fibers, cotton fibers, air holes, graphene strips and graphene sheets;
the antibacterial outer layer is bonded on the top surface of the base layer and formed by interweaving outer layer braided wires, the outer layer braided wires comprise nano copper fibers, silk fibers and cotton fibers, and the silk fibers and the cotton fibers are uniformly wound on the outer sides of the nano copper fibers;
the base layer top surface has evenly seted up the bleeder vent, base layer top surface evenly distributed has a plurality of graphite alkene strips, graphite alkene strip staggered position department all bonds has the graphite alkene piece.
Preferably, the base layer is formed by weaving base layer weaving lines in a staggered mode, the base layer weaving lines comprise polyester fibers and phyllostachys pubescens carbon fibers, and the phyllostachys pubescens carbon fibers are uniformly wound on the outer sides of the polyester fibers.
Preferably, the ratio of the phyllostachys pubescens carbon fibers to the polyester fibers is 2: 1.
Preferably, a plurality of the graphene strips are distributed in a criss-cross mode, and the width of each graphene strip is 3 millimeters.
Preferably, the bottom surface of the base layer is provided with a bottom layer, the bottom layer is formed by plain weave of polypropylene fibers, and activated carbon powder particles are uniformly distributed on the top surface of the bottom layer.
Preferably, the bottom layer is 40 × 40/133 × 100, and the bottom layer is adhered to the bottom surface of the base layer by an adhesive.
Compared with the prior art, the beneficial effects of the utility model are that:
1. be provided with functional unit, the outer braided wire of outer layer that antibiotic skin is become by nanometer copper fiber, silk fibre and cotton fiber composition is worked out, and nanometer copper fiber has bactericidal effect, and silk fibre and cotton fiber cooperation wrap up in nanometer copper fiber outer layer, when having guaranteed bactericidal effect, have improved the comfort level when the surface fabric is pressed close to skin.
2. The basic unit is woven by the basic unit braided wire that polyester fiber and bamboo charcoal fiber constitute and is formed, improves bactericidal effect when guaranteeing intensity, utilizes graphite alkene strip and graphite alkene piece to improve the heat conduction effect of surface fabric for when it is as bedding surface fabric, can make heat distribution even, it is more comfortable during the use.
3. The bamboo charcoal fiber quilt is provided with the bottom layer, the weaving density of the bottom layer is high, and the activated carbon powder particles are matched to absorb peculiar smell, so that the bamboo charcoal fiber of the base layer is protected while down and cotton down inside the quilt are prevented from being drilled out, and the service life of the fabric is prolonged.
Drawings
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the description serve to explain the invention and not to limit the invention.
In the drawings:
fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a schematic structural view of the antibacterial outer layer of the present invention;
fig. 3 is a schematic structural view of the base layer braided wire of the present invention;
FIG. 4 is a schematic view of the structure of the activated carbon powder particles of the present invention;
reference numbers in the figures: 1. a base layer;
2. a functional component; 201. an antibacterial outer layer; 202. weaving wires on the outer layer; 203. nano copper fibers; 204. silk fiber; 205. cotton fibers; 206. air holes are formed; 207. a graphene strip; 208. a graphene sheet;
3. base layer braided wire; 4. polyester fiber; 5. bamboo charcoal fiber; 6. a bottom layer; 7. polyester fiber; 8. activated carbon powder particles.
Detailed Description
The preferred embodiments of the present invention will be described in conjunction with the accompanying drawings, and it will be understood that they are presented herein only to illustrate and explain the present invention, and not to limit the present invention.
Example (b): as shown in fig. 1-4, the utility model provides a nano-scale copper nanofiber antibiotic bedding fabric technical scheme, including basic unit 1, basic unit 1 is woven by basic unit braided wire 3 is crisscross and is formed, basic unit braided wire 3 includes polyester fiber 4 and phyllostachys pubescens carbon fiber 5, phyllostachys pubescens carbon fiber 5 evenly twines in the polyester fiber 4 outside, the proportion of phyllostachys pubescens carbon fiber 5 and polyester fiber 4 is 2:1, improve the proportion of phyllostachys pubescens carbon fiber 5 when guaranteeing basic unit 1 intensity, improve the bactericidal effect, basic unit 1 outside is provided with functional component 2, functional component 2 includes antibiotic outer 201, outer braided wire 202, nano-copper fiber 203, silk fiber 204, cotton fiber 205, bleeder vent 206, graphene strip 207 and graphene sheet 208;
the antibacterial outer layer 201 is adhered to the top surface of the base layer 1, the antibacterial outer layer 201 is formed by interweaving outer layer braided wires 202, the outer layer braided wires 202 comprise nano copper fibers 203, silk fibers 204 and cotton fibers 205, and the silk fibers 204 and the cotton fibers 205 are uniformly wound on the outer sides of the nano copper fibers 203;
The bottom surface of the base layer 1 is provided with a bottom layer 6, the bottom layer 6 is formed by plain weave of polypropylene fiber 7, the specification of the bottom layer 6 is 40 × 40/133 × 100, the bottom layer 6 is adhered to the bottom surface of the base layer 1 through an adhesive, the density of a braided wire of the bottom layer 6 is increased, active carbon powder particles 8 are prevented from leaking, and the top surface of the bottom layer 6 is uniformly distributed with the active carbon powder particles 8.
The utility model discloses a theory of operation and use flow: one side of the antibacterial outer layer 201 is close to the skin, the antibacterial outer layer 201 is composed of nano copper fibers 203, silk fibers 204 and cotton fibers 205, the outer layer braided wires 202 are woven, the nano copper fibers 203 have a sterilization effect, the silk fibers 204 and the cotton fibers 205 are matched and wrapped on the outer layer of the nano copper fibers 203 to protect the nano copper fibers 203, the silk fibers 204 and the cotton fibers 205 directly contact the skin while the sterilization effect is guaranteed, and the comfort degree of the fabric when the fabric is close to the skin is improved;
the base layer 1 is woven by base layer weaving yarns 3 consisting of polyester fibers 4 and phyllostachys pubescens carbon fibers 5, the polyester fibers 4 guarantee strength, meanwhile, the phyllostachys pubescens carbon fibers 5 improve the sterilization effect, and the graphene strips 207 and the graphene sheets 208 are utilized to improve the heat conduction effect of the fabric, so that when the fabric is used as bedding fabric, heat can be uniformly distributed, and the fabric is more comfortable to use;
the bottom layer 6 is arranged, the weaving density of the bottom layer 6 is high, the activated carbon powder particles 8 are matched to adsorb peculiar smell, down and cotton down in the quilt are prevented from being drilled out, meanwhile, the phyllostachys pubescens carbon fibers 5 of the base layer 1 are protected, and the service life of the fabric is prolonged.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (6)
1. Nanometer copper fiber antibiotic bedding surface fabric, including basic unit (1), its characterized in that: the outer side of the base layer (1) is provided with a functional component (2), and the functional component (2) comprises an antibacterial outer layer (201), an outer layer braided wire (202), nano copper fibers (203), silk fibers (204), cotton fibers (205), air holes (206), graphene strips (207) and graphene sheets (208);
the antibacterial outer layer (201) is bonded on the top surface of the base layer (1), the antibacterial outer layer (201) is formed by interweaving outer layer braided wires (202), the outer layer braided wires (202) comprise nano copper fibers (203), silk fibers (204) and cotton fibers (205), and the silk fibers (204) and the cotton fibers (205) are uniformly wound on the outer sides of the nano copper fibers (203);
bleeder vent (206) have evenly been seted up to basic unit (1) top surface, basic unit (1) top surface evenly distributed has a plurality of graphite alkene strips (207), graphite alkene strip (207) staggered position department all bonds has graphite alkene piece (208).
2. The nano-scale nano-copper fiber antibacterial bedding fabric as claimed in claim 1, wherein the base layer (1) is formed by interweaving base layer braided wires (3), the base layer braided wires (3) comprise polyester fibers (4) and phyllostachys pubescens carbon fibers (5), and the phyllostachys pubescens carbon fibers (5) are uniformly wound outside the polyester fibers (4).
3. The nano-copper fiber antibacterial bedding fabric as claimed in claim 2, wherein the ratio of the bamboo charcoal fibers (5) to the polyester fibers (4) is 2: 1.
4. The nano-copper fiber antibacterial bedding fabric as claimed in claim 1, wherein a plurality of graphene strips (207) are distributed in a criss-cross manner, and the width of each graphene strip (207) is 3 mm.
5. The nano-copper fiber antibacterial bedding fabric as claimed in claim 1, wherein a bottom layer (6) is arranged on the bottom surface of the base layer (1), the bottom layer (6) is formed by plain weave of polypropylene fibers (7), and activated carbon powder particles (8) are uniformly distributed on the top surface of the bottom layer (6).
6. The nano-sized copper nanofiber antibacterial bedding fabric as claimed in claim 5, wherein the size of the bottom layer (6) is 40 x 40/133 x 100, and the bottom layer (6) is adhered to the bottom surface of the base layer (1) through an adhesive.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202021995261.9U CN213564791U (en) | 2020-09-14 | 2020-09-14 | Nano-level nano-copper fiber antibacterial bedding fabric |
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CN202021995261.9U CN213564791U (en) | 2020-09-14 | 2020-09-14 | Nano-level nano-copper fiber antibacterial bedding fabric |
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CN213564791U true CN213564791U (en) | 2021-06-29 |
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