SORONA degradable fabric
Technical Field
The utility model belongs to the technical field of fabrics, and particularly relates to an SORONA degradable fabric.
Background
The fabric is a material for making clothing, and as one of three factors of clothing, the fabric can not only explain the style and the characteristics of clothing, but also directly show the color and the modeling of the clothing, and in the world of clothing, the fabric of the clothing is confetti and is daily and moon, but in general, the high-quality and high-grade fabric has the characteristics of comfort in wearing, sweat absorption, ventilation, draping, stiff, noble vision, soft and graceful touch and the like.
With the improvement of living standard, people are increasingly demanding various functions of the fabric, especially for wearing the clothing next to the skin. Because sweat can be secreted from the skin surface, adhesion between the fabric and the skin can be generated, and wearing experience is affected, the fabric is required to be not only simply warm-keeping, but also good in moisture absorption and sweat release, and sweat on the skin surface needs to be adsorbed in time to keep skin dry and comfortable.
To this end, the applicant has advantageously explored and tried to find a solution to the above-mentioned problems and to be able to perform various functions, the technical solutions to be described below being produced in this context.
Disclosure of utility model
The utility model mainly solves the technical problems in the prior art and provides a SORONA degradable fabric.
The technical problem is mainly solved by the technical scheme that the SORONA degradable fabric comprises a skin-friendly layer, a first elastic layer is fixed at the top of the skin-friendly layer, a second elastic layer is fixed at the bottom of the skin-friendly layer, a sweat-absorbing layer is fixed at the top of the first elastic layer, an air layer is arranged between the sweat-absorbing layer and the first elastic layer, and a wear-resistant layer is fixed at the bottom of the second elastic layer.
Preferably, the skin-friendly layer is formed by knitting cotton yarns and linen yarns in a warp-weft mode.
Preferably, the first elastic layer and the second elastic layer are both woven by yarns made of SORONA fibers.
Preferably, the wear-resistant layer is formed by knitting nylon yarn warp yarns and aramid yarn weft yarns.
Preferably, the sweat-absorbing layer is woven by yarns made of bamboo fibers and cotton yarns.
Preferably, interweaving warps and interweaving wefts are arranged between the sweat absorbing layer and the first elastic layer, and the sweat absorbing layer and the first elastic layer are fixed through sewing of the interweaving warps and the interweaving wefts.
Preferably, the plurality of interwoven warps and the plurality of interwoven wefts are all a plurality of and are interwoven with each other, and the air layer is formed by interweaving the interwoven warps and the interwoven wefts.
The utility model has the beneficial effects that:
Compared with the prior art, the fabric has good sweat absorbing effect by arranging the sweat absorbing layer, the air permeability of the fabric can be improved by arranging the air layer adjacent to the sweat absorbing layer, the fabric can rapidly breathe and dehumidify after sweat absorption, so that the skin can be kept dry and comfortable, the fabric has good elasticity and is not easy to deform and wrinkle due to the arrangement of the first elastic layer and the second elastic layer, and the fabric is more comfortable to wear after being made into clothes due to the arrangement of the skin-friendly layer.
Drawings
FIG. 1 is a schematic cross-sectional view of the present utility model;
FIG. 2 is a schematic view of a weave structure of interwoven warp and weft yarns;
Fig. 3 is a schematic view of a structure in which interwoven warp yarns and interwoven weft yarns are woven to form an air layer.
In the figure, 1, a skin-friendly layer, 2, a first elastic layer, 3, a second elastic layer, 4, a sweat absorbing layer, 5, an air layer, 6, a wear-resistant layer, 7, interweaving warps and 8, interweaving wefts.
Detailed Description
The technical scheme of the utility model is further specifically described below through embodiments and with reference to the structures shown in fig. 1-3.
Examples: SORONA degradable fabric
Including skin-friendly layer 1, the top of skin-friendly layer 1 is fixed with first elastic layer 2, and the bottom of skin-friendly layer 1 is fixed with second elastic layer 3, the top of first elastic layer 2 is fixed with sweat-absorbing layer 4, and is equipped with air bed 5 between sweat-absorbing layer 4 and the first elastic layer 2, the bottom of second elastic layer 3 is fixed with wearing layer 6.
Furthermore, the skin-friendly layer 1 is formed by adopting cotton yarn and linen yarn through warp and weft knitting so as to improve the comfort level of the fabric.
Further, the first elastic layer 2 and the second elastic layer 3 are both woven by yarns made of SORONA fibers. The SORONA fibers have good elasticity and wrinkle resistance, so that the first elastic layer 2 and the second elastic layer 3 woven by yarns made of the SORONA fibers can enable the fabric to have good elasticity and wrinkle resistance, and meanwhile, soft hand feeling of the fabric is also provided.
Furthermore, the wear-resistant layer 6 is formed by knitting nylon yarn warp yarns and aramid yarn weft yarns so as to improve the wear resistance of the fabric.
Furthermore, the sweat-absorbing layer 4 is formed by weaving yarns made of bamboo fibers and cotton yarns, the bamboo fibers have better moisture absorption performance compared with the cotton fibers, and the sweat-absorbing layer 4 is formed by weaving the bamboo fiber yarns and the cotton yarns, and has excellent moisture absorption performance and certain heat retention performance compared with the cotton yarns.
Further, a plurality of interweaving warps 7 and a plurality of interweaving wefts 8 are arranged between the sweat absorbing layer 4 and the first elastic layer 2, the sweat absorbing layer 4 and the first elastic layer 2 are fixed by sewing the interweaving warps 7 and the interweaving wefts 8, and the interweaving warps 7 and the interweaving wefts 8 are interwoven, so that an air layer 5 is formed between the sweat absorbing layer 4 and the first elastic layer 2 to improve the air permeability of the fabric.
Finally, it should be noted that the above embodiments are merely representative examples of the present utility model. Obviously, the utility model is not limited to the above-described embodiments, but many variations are possible. Any simple modification, equivalent variation and modification of the above embodiments according to the technical substance of the present utility model should be considered to be within the scope of the present utility model.