Thermal insulation and heat storage fabric
Technical Field
The utility model relates to the technical field of fabrics, in particular to a thermal insulation and heat storage fabric.
Background
Fabric is the material used to make clothing. As one of the three elements of the clothes, the fabric not only can explain the style and the characteristics of the clothes, but also directly controls the expression effects of the color and the shape of the clothes, and the fabric of the clothes is various in every day and is different in every month in the world of the clothes. However, in general, high-quality and high-grade fabrics have the characteristics of comfortable wearing, sweat absorption, air permeability, stiff and smooth suspension, noble vision, soft touch and the like. The clothes worn in formal social occasions are preferably made of pure cotton, pure wool, pure silk and pure hemp. The clothes made of the four pure natural texture fabrics are mostly higher in grade. Sometimes, it is also permissible to wear garments made of pure leather;
in chilly seasons, people can wear some thicker clothes, keeps warm, and the cold-proof heat accumulation effect of current cold-proof surface fabric is relatively poor, can only wear several clothes and just can reach the effect of keeping out the cold more, and the clothes are worn many backs, because the constraint of multilayer clothes makes the wearing personnel be not convenient for move, and is also not pleasing to the eye, consequently provides a cold-proof heat accumulation surface fabric, solves above problem.
SUMMERY OF THE UTILITY MODEL
The utility model provides a thermal insulation and heat storage fabric based on the technical problems that the existing thermal insulation fabric is poor in thermal insulation and heat storage effect, people need to wear a plurality of clothes to keep out the cold, and the supporting and wearing of the people are inconvenient to move and unattractive.
The utility model provides a thermal insulation and heat storage fabric which comprises a thermal insulation and heat storage layer and an antifouling breathable layer, wherein the thermal insulation and heat storage layer is arranged below the antifouling breathable layer and comprises a first main line and a second main line, a heat storage silk thread is wound on the outer surface of the first main line to form a first woven line, a thermal insulation silk thread is wound on the outer surface of the second main line to form a second woven line, and the first woven line and the second woven line are vertically interwoven;
the antifouling breathable layer comprises antifouling silk threads and protective silk threads, and the antifouling silk threads and the protective silk threads are mutually vertically interwoven.
Preferably, the first main yarn and the second main yarn are both formed by twisting a plurality of bamboo charcoal fibers;
through the technical scheme, the far infrared ray passing through the bamboo charcoal fiber can permeate blood vessels, stimulate acupoints of all channels and collaterals of a body, improve the functions of organs of the body, and has multiple functions of anion, heat storage, heat preservation and the like, so that the bamboo charcoal fiber is very suitable for weaving close-fitting wearing clothes, has permanent functions, is not influenced by washing times, and further ensures the quality of the fabric.
Preferably, the heat storage silk thread is formed by plying and twisting a plurality of acrylic fibers;
through the technical scheme, the characteristics of the acrylic fiber are achieved: sunlight resistance and weather resistance, the strength loss is 10 to 25 percent after being exposed to the sun for 800 hours, and the moisture regain of the acrylic fiber under the standard atmospheric condition is 2 percent. The acrylic fiber is resistant to worm-eating and mildew, has good stability to common chemicals, has good heat storage performance, and increases the heat storage performance of the fabric.
Preferably, the warming thread is formed by twisting a plurality of cashmere fibres about their own axis;
through the technical scheme, the natural crimpness through cashmere is high, the cashmere is tightly arranged in spinning weaving, the cohesive force is good, the heat retention is good, the fineness of cashmere fibers is uniform, the density is small, the cross section is mostly regular and circular, the hygroscopicity is strong, the dye can be fully absorbed, the color fading is not easy to occur, and the heat retention and heat storage performance of the fabric is further enhanced.
Preferably, the anti-soil threads are formed by double-twisting flax fibers, and the protective threads are formed by double-twisting pure cotton fibers;
through the technical scheme, the anti-fouling, antibacterial and antistatic performances of the flax fibers are realized, so that the fabric has certain anti-fouling capacity, and static electricity can not be generated in dry seasons.
The beneficial effects of the utility model are as follows:
through setting up cold-proof heat accumulation layer and antifouling ventilative layer, through with bamboo charcoal fiber respectively with acrylic fiber and cashmere fiber combination, form stronger cold-proof heat accumulation precoat, can supply the user to dress next to the shin, make the surface fabric have certain anti-soil ability through flax fiber's anti-soil, antibiotic and antistatic properties, and also can not produce static in dry season.
Drawings
Fig. 1 is a schematic view of a thermal insulation and heat storage fabric provided by the utility model;
FIG. 2 is a perspective view of a thermal insulation layer structure of the thermal insulation and heat storage fabric provided by the utility model;
fig. 3 is a perspective view of a first knitting yarn structure of the thermal insulation and heat storage fabric provided by the utility model.
In the figure: 1. a heat preservation and storage layer; 2. an antifouling breathable layer; 3. a first main line; 4. a second main line; 5. a heat storage wire; 6. a first weaving thread; 7. a warming silk thread; 8. a second weaving thread; 9. antifouling threads; 10. and (4) protecting the silk thread.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Referring to fig. 1-3, a thermal insulation and heat storage fabric comprises a thermal insulation and heat storage layer 1 and an antifouling breathable layer 2, wherein the thermal insulation and heat storage layer 1 is arranged below the antifouling breathable layer 2, the thermal insulation and heat storage layer 1 comprises a first main line 3 and a second main line 4, and the first main line 3 and the second main line 4 are formed by twisting a plurality of bamboo charcoal fibers;
through the technical scheme, the far infrared ray passing through the bamboo charcoal fiber can permeate blood vessels, stimulate acupoints of all channels and collaterals of a body, improve the functions of organs of the body, and has multiple functions of anion, heat storage, heat preservation and the like, so that the bamboo charcoal fiber is very suitable for weaving close-fitting wearing clothes, has permanent functions, is not influenced by washing times, and further ensures the quality of the fabric.
A heat storage silk thread 5 is wound on the outer surface of the first main thread 3 to form a first weaving thread 6, and the heat storage silk thread 5 is formed by stranding and twisting a plurality of acrylic fibers;
through the technical scheme, the characteristics of the acrylic fiber are achieved: sunlight resistance and weather resistance, the strength loss is 10 to 25 percent after being exposed to the sun for 800 hours, and the moisture regain of the acrylic fiber under the standard atmospheric condition is 2 percent. The acrylic fiber is resistant to worm-eating and mildew, has good stability to common chemicals, has good heat storage performance, and increases the heat storage performance of the fabric.
The outer surface of the second main line 4 is wound with a warming silk thread 7 to form a second weaving line 8, and the first weaving line 6 and the second weaving line 8 are vertically interwoven;
the warm keeping silk threads 7 are formed by twisting a plurality of cashmere fibers around the axis of the cashmere fibers;
through the technical scheme, the natural crimpness through cashmere is high, the cashmere is tightly arranged in spinning weaving, the cohesive force is good, the heat retention is good, the fineness of cashmere fibers is uniform, the density is small, the cross section is mostly regular and circular, the hygroscopicity is strong, the dye can be fully absorbed, the color fading is not easy to occur, and the heat retention and heat storage performance of the fabric is further enhanced.
The antifouling breathable layer 2 comprises antifouling silk threads 9 and protective silk threads 10, the antifouling silk threads 9 and the protective silk threads 10 are mutually vertically interwoven, the antifouling silk threads 9 are formed by double twisting of flax fibers, and the protective silk threads 10 are formed by double twisting of pure cotton fibers;
through the technical scheme, the anti-fouling, antibacterial and antistatic performances of the flax fibers are realized, so that the fabric has certain anti-fouling capacity, and static electricity can not be generated in dry seasons.
Through setting up cold-proof heat accumulation layer 1 and antifouling ventilative layer 2, through with bamboo charcoal fiber respectively with acrylic fiber and cashmere fiber combination, form stronger cold-proof heat accumulation precoat, can supply the user to dress next to the shin, make the surface fabric have certain anti-soil ability through flax fiber's anti-soil, antibiotic and antistatic properties, and also can not produce static in dry season.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and equivalent alternatives or modifications according to the technical solution of the present invention and the inventive concept thereof should be covered by the scope of the present invention.