Wear-resistant antibacterial deodorizing sock
Technical Field
The utility model belongs to the technical field of clothing, and relates to socks with wear-resisting, antibacterial and deodorizing effects.
Background
As a necessary close-fitting fabric for people, the wearing time of the ordinary people is more than 12 hours every day, and the structure and the performance of the textile material determine the actual wearing functionality and the comfort of the finished sock. The sole has a special physiological structure, the very dense sweat gland distribution means more sweat secretion, lactic acid and urea contained in the sweat provide metabolizable substances for bacteria, and the wrapped shoes are relatively airtight and sultry spaces, so that metabolism and propagation of the bacteria are further promoted, and odor, namely foot odor, can be generated by the metabolizable products of the bacteria; secondly, the sole plays a role in supporting the walking of the human body, which means that the sole has larger friction with wearing materials. Therefore, the socks to be worn are required to have antibacterial deodorizing and wear-resisting properties.
Most socks in the market are formed by blending cotton and hemp fibers, the socks have no functionality, and in recent years, the antibacterial deodorizing socks in the market usually realize the antibacterial effect by coating silver ions, but the silver ions cannot be effectively bonded with the fibers, so that the antibacterial effect is greatly reduced after washing for several times, and finally the antibacterial deodorizing function is lost.
Disclosure of utility model
Based on this, the object of the present utility model is to provide a wear-resistant antibacterial deodorant sock, which has comfortable durability, excellent wear resistance and durable antibacterial deodorant property, against the deficiencies of the prior art.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
The utility model provides wear-resistant antibacterial deodorizing socks, which comprise a sock leg with a sock opening at the upper part, and sock surfaces, sock heads, sock bottoms and sock heels which are sewn at the lower part of the sock leg, and are characterized in that: elastic rings are arranged in the sock openings, and the fabric of the sock surface, the sock head, the sock bottom and the sock heel comprises quaternized graphene cotton viscose blended yarns; the sock surface comprises a mesh knitting structure, and the sock head and the sock heel are reinforced by fine nylon threads; the sock bottom comprises a mesh braiding structural layer and is sewn with a raised massage bottom at the outer side, the raised massage bottom is formed by four-side staggered arrangement of terylene raised massage particles, the raised massage particles comprise cuboid lands with side-by-side vent holes at the top, and the lands are fixedly connected with the sock bottom through knitting sewing.
Further, the fabric adopted by the sock opening and the sock leg comprises a textile fabric with a hierarchical structure, wherein the textile fabric comprises pure cotton yarns with the proportion of 70-80% and nylon wrapping yarns with the proportion of 20-30% which are interwoven; the pure cotton yarn is a face yarn, and the nylon wrapping yarn is an inner yarn.
Further, the elastic ring is fixedly connected with the lining nylon wrapping yarn through knitting stitching.
Further, the fabric adopted by the sock surface, the sock head, the sock sole and the sock heel comprises a textile fabric with a hierarchical structure, wherein the textile fabric comprises quaternized graphene cotton viscose blended yarns which are interlaced and woven and account for 65-75% and nylon wrapping yarns which account for 25-35%; the quaternized graphene cotton viscose blended yarn is a face yarn, and the nylon wrapping yarn is an inner yarn; the quaternized graphene cotton viscose blended yarn is formed by blending quaternized graphene cotton yarns and viscose fibers. The invention patent application CN116219738A discloses a preparation method of the quaternary ammonium graphene cotton thread in a modified textile material, a preparation method and application thereof.
Further, the sock surface and sock bottom mesh knitting structure comprises a square shape.
Further, the sock head and the sock heel are reinforced in a Y-shaped mode through fine nylon wires, and the specifications of the fine nylon wires are 15D-70D.
Further, the toe includes any one of an integral toe or a five-toe.
Further, the sock leg includes any one of a long leg, a middle leg, or a short leg.
The beneficial effects of the utility model are as follows:
1. The wear-resistant antibacterial deodorizing sock provided by the utility model has the advantages that the lycra spandex elastic line is added to the sock mouth, the lycra spandex elastic line can be stretched to 4-7 times of the original length and has 100% recovery rate, nylon wrapping yarns are added to the sock mouth, the sock leg, the sock face, the sock head, the sock bottom and the sock heel, the wear is comfortable, fine nylon lines are added to the sock head and the sock heel for Y-shaped reinforcement, the inclusion is improved, meanwhile, the stress on the heel and toe parts of the sock during wearing can be effectively dispersed, the bursting strength is improved, and the sock has lasting usability.
2. The wear-resistant antibacterial deodorizing sock provided by the utility model has the advantages that the design of the raised massage soles of the terylene is added to the sock soles, the raised parts are arranged in a four-side staggered manner and uniformly distributed, the sole massage function is realized, meanwhile, the terylene has good wear resistance and mechanical property, and the wear and pilling of the sock soles caused by walking friction can be effectively reduced.
3. The wear-resistant antibacterial deodorizing sock provided by the utility model adopts the quaternized graphene cotton viscose blended yarn as an antibacterial deodorizing material and covers the whole foot, the yarn is obtained by modifying the quaternized graphene grafted cotton viscose blended yarn, and the contact sterilizing effect of the quaternized graphene is exerted to contact and kill bacteria at the contact part of the whole foot, so that the odor generated by metabolism and propagation of the bacteria can be effectively reduced. The sock surface and the sock bottom with the largest contact area are both in mesh knitting structures, so that the sock has good air permeability and moisture removing performance, can avoid a wet environment required by bacterial reproduction, has an effect of promoting deodorization, and in addition, the specific surface area of viscose fiber in the quaternized graphene cotton viscose fiber yarn is 2 times that of pure cotton fiber, and the higher specific surface area can effectively adsorb peculiar smell gas to eliminate odor.
4. The wear-resistant antibacterial deodorizing sock provided by the utility model has the synergistic effects of antibacterial deodorizing due to the elastic structure, the reinforcing design, the vent hole structure and the material selection, and can improve the wear resistance by matching with the design of the raised massage bottom of the terylene, and has the advantages of reasonable structural design, complete performance and obvious efficacy.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic diagram of the wear-resistant antibacterial deodorizing sock structure provided by the utility model;
FIG. 2 is a schematic view of the sole convex bottom massage sole plane structure of the wear-resistant antibacterial deodorizing sock provided by the utility model;
FIG. 3 is a schematic view of a cross-sectional structure of a sole convex bottom massage of the wear-resistant antibacterial deodorizing sock provided by the utility model;
FIG. 4 is an enlarged schematic view of raised massage particles at the bottom of the sole of the wear-resistant antibacterial deodorizing sock;
FIG. 5 is a schematic diagram of a mesh knitting structure at A1 of the wear-resistant antibacterial deodorizing sock provided by the utility model;
FIG. 6 is a schematic diagram showing a top view of the welt of the wear-resistant antibacterial deodorizing sock provided by the utility model;
In the figure: 1 is a sock opening; 2 is a sock leg; 3 is a sock surface; 4 is a sock head; 5 is the sole of the sock; 6 is a heel; 7 is a fine nylon wire; 8 is a lycra spandex elastic ring; a1 is a sock surface mesh knitting area; 101 is a quaternized graphene cotton viscose blended yarn face yarn; 102 is nylon covered yarn inner yarn; 103 is terylene convex massage particles; 104 is pure cotton yarn face yarn; 105 is a lycra spandex elastic ring.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings. It will be apparent that the described embodiments are only some, but not all, embodiments of the utility model. 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.
As shown in fig. 1 to 6, fig. 1 is a schematic structural view of the wear-resistant antibacterial deodorizing sock according to the present utility model, fig. 2 is a schematic structural view of a convex bottom massage bottom plane according to the present utility model, fig. 3 is a schematic structural view of a convex bottom massage bottom section according to the present utility model, fig. 4 is an enlarged schematic view of convex massage particles according to the present utility model, fig. 5 is a schematic structural view of a mesh weave at a sock A1 according to the present utility model, and fig. 6 is a schematic structural view of a sock opening top view according to the present utility model.
The utility model provides wear-resistant antibacterial deodorizing socks which comprise a sock opening 1, a sock leg 2, a sock surface 3, a sock head 4, a sock bottom 5 and a sock heel 6. From the material aspect, the sock opening 1 and the sock leg 2 are formed by interweaving pure cotton yarns and nylon covered yarns, wherein the pure cotton yarns are surface yarns, the nylon covered yarns are inner yarns, the pure cotton yarns account for 70-80%, and the nylon covered yarns account for 20-30%. Sock surface 3, toe 4, sole 5 and heel 6 are formed by the crisscross blending of quaternized graphene cotton viscose blend yarn and nylon covered yarn, quaternized graphene cotton viscose blend yarn is the face yarn, nylon covered yarn is the lining yarn, quaternized graphene cotton viscose blend yarn accounts for 65-75%, nylon covered yarn accounts for 25-35%, nylon covered yarn has good inclusion, quaternized graphene cotton viscose blend yarn is obtained by grafting modification of quaternized graphene, and has good combination and stability, can provide lasting antibacterial capability, viscose fiber in cotton viscose has high specific surface area, can promote peculiar smell adsorption capability, and has good deodorizing effect.
Structurally, the sock head comprises an integrated sock head or a five-toe sock head; the sock leg comprises a long, medium or short leg. The sock mouth 1 is added with the lycra spandex elastic ring which has high elasticity and restorability, good wrapping force and durable usability can be provided, the sock head 4 and the sock heel 6 are reinforced by adopting the fine nylon thread 7 to improve the bursting resistance of the sock, the sock face 3 and the sock bottom 5 are of a mesh knitting structure, the sock has good air permeability and moisture removal, the outer side of the sock bottom 5 is sewed with the raised massage bottom, the raised massage particles on the sock bottom are arranged in a four-side staggered manner, the raised massage particles are uniformly distributed, the sole massaging function is achieved, the raised massage particles have good wear resistance, and meanwhile, the raised massage particles are distributed with side-by-side ventilation holes, so that the air permeability and the moisture removal performance of the sock are further improved, the wet environment required by bacterial reproduction is avoided, and the antibacterial deodorization is promoted.
According to the sock obtained according to the embodiment of the utility model, through performance test, the ammonia deodorizing rate is 94.6%, the acetic deodorizing rate is 97.2%, the isovaleric acid deodorizing rate is 93.4%, and the 2-nonenal deodorizing rate is 93.3%, so that the sock has a good effect of eliminating peculiar smell gas generated by feet; after the sock is washed for 100 times, the antibacterial rate of the sock to staphylococcus aureus is 99.74%, the antibacterial rate to escherichia coli is 99.9%, the antibacterial rate to candida albicans is 86.3%, the sock has a 5A-level antibacterial effect, meanwhile, the sock bursting strength is 769.4N, the pilling resistance grade is 4, and the sock has good mechanical property and pilling resistance.
In conclusion, the quaternized graphene cotton viscose blended yarn, the lycra spandex elastic ring, the fine nylon wire and the terylene convex bottom massage are used in a matched mode, the structural design of each area is reasonable, and the textile sock has excellent antibacterial property, wear resistance and comfortableness and meets the requirements of users.
It should be understood that the foregoing detailed description of the present utility model is provided for illustration only and is not limited to the technical solutions described in the embodiments of the present utility model, and those skilled in the art should understand that the present utility model may be modified or substituted for the same technical effects; as long as the use requirement is met, the utility model is within the protection scope of the utility model.