CN214938111U - High-elasticity moisture-absorbing sweat-releasing quick-drying fiber - Google Patents
High-elasticity moisture-absorbing sweat-releasing quick-drying fiber Download PDFInfo
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- CN214938111U CN214938111U CN202120528873.5U CN202120528873U CN214938111U CN 214938111 U CN214938111 U CN 214938111U CN 202120528873 U CN202120528873 U CN 202120528873U CN 214938111 U CN214938111 U CN 214938111U
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Abstract
The utility model discloses a high elasticity moisture absorption sweat releasing fast dry fiber, including the main fiber, the main fiber includes main fiber inner core and winds the main fiber on main fiber inner core surface around the cladding, the main fiber inner core is arranged side by at least two functional composite fiber and forms, the main fiber winds the cladding and is the network structure that is twisted with fingers by chitin fibre and lyocell fibre, functional composite fiber is by with at least two functional composite fiber inner cores and the functional composite fiber cladding of cladding on functional composite fiber inner core surface, functional composite fiber inner core is twisted by wet guiding sweat releasing fibre and high strength fibre and forms, the utility model discloses a main fiber is in leading sweat to the main fiber inner core fast around the cladding, avoids sweat to stop on human skin surface and bring the discomfort, has the advantage of moisture absorption fast dry, the fabric has the advantages of being light, high in elasticity and wear-resisting, and the quality of the fabric is improved.
Description
Technical Field
The utility model relates to the technical field of fiber, specifically a high elasticity moisture absorption perspire rapid-curing cutback fibre.
Background
With the continuous increase of Chinese economy and the continuous improvement of the consumption level of people, the lives of people are changing qualitatively, the people become fashionable in outdoor sports and physical exercise, the requirements of outdoor sports coats such as outdoor mountain climbing clothes, golf suits, rock climbing clothes, field investigation clothes and the like on extension, elasticity and firmness are met in order to meet the consumption requirement of the layer, and the people gradually tend to the development of ecological environmental protection. However, the existing outdoor sports coat fabrics in the market generally have the defects of poor sweat-discharging and moisture-absorbing performance, poor natural environment protection, poor elasticity and the like. With the continuous improvement of living standard of people, the requirements of people on the quality of clothes are higher and higher, and the clothes are made of fabrics through cutting processing, so the quality of the clothes is determined to a great extent by the characteristics of the fabrics. The existing fabrics have some defects, such as: the fabric has a single structure, is poor in moisture absorption and quick drying effects, even has no moisture absorption and quick drying effects or is poor in air permeability and the like, so that the fabric is poor in comfort function, and the serviceability of the elastic fabric is affected.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a high elasticity moisture absorption perspire rapid-curing cutback fibre is in order to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a high elasticity moisture absorption sweat-discharging rapid-curing cutback fibre, includes the main fibre, the main fibre includes the main fibre inner core and winds the covering around the main fibre of package on main fibre inner core surface, the cross-section of main fibre is positive direction or rectangle structure, the main fibre inner core is arranged side by two piece at least functional composite fiber and forms, the main fibre is the network structure who forms by chitin fibre and lyocell fibre hank around the covering, functional composite fiber comprises with two piece at least functional composite fiber inner cores and the functional composite fiber coating of cladding on functional composite fiber inner core surface, functional composite fiber inner core is formed by leading wet sweat-discharging fibre and high strength fibre twisting.
Further, the moisture-conducting and sweat-releasing fiber is pineapple fiber silk.
Further, the high-strength fiber is glass fiber yarn or bamboo fiber.
Further, the functional composite fiber coating layer is a net structure formed by twisting cotton fibers and soybean fibers.
Further, the mesh diameter of the functional composite fiber covering layer is larger than that of the main fiber wrapping covering layer.
Compared with the prior art, the beneficial effects of the utility model are that:
(1) the utility model discloses well main fiber includes main fiber inner core and winds the covering around the main fiber of package on main fiber inner core surface, main fiber inner core is arranged by two piece at least functional composite fiber side by side and forms, main fiber winds the covering and is the network structure that is twisted with fingers by chitin fibre and lyocell fibre, because chitin fibre has hydrophilic groups such as a large amount of hydroxyl and amino on its big molecular chain, so make it have fine hydrophilicity and very high hygroscopicity, and still have antibiotic, anti-inflammatory and deodorant efficiency, have fine maintenance effect to skin, and lyocell fibre has toughness, high strength, not shrink, moisture permeability and gas permeability are the preferred, therefore, sweat that human body produced can lead to arrange to main fiber inner core fast through main fiber around the covering, avoid sweat to stop on human skin surface and bring uncomfortable sense, but also has health promoting effect.
(2) The utility model discloses well main fibre inner core is arranged side by two piece at least functional composite fiber and forms, functional composite fiber comprises with two piece at least functional composite fiber inner cores and the functional composite fiber coating of cladding on functional composite fiber inner core surface, functional composite fiber inner core is formed by leading wet sweat-discharging fiber and high strength fiber twisting, functional composite fiber coating is the network structure who is formed by cotton fiber and soybean fiber twisting, the combination of functional composite fiber inner core and functional composite fiber coating, make main fibre inner core have good high elasticity, moisture absorption sweat-discharging and light soft advantage, not only accelerated the discharge of sweat, and the surface fabric that makes has gracefully, the characteristics of high elasticity and wearability, thereby the quality of surface fabric has been improved.
(3) The utility model discloses in, the mesh diameter of functional composite fiber coating is greater than the mesh diameter of main fibre around the covering, when the surface fabric that main fibre was woven and human skin contact, the sweat that human production was in proper order is finally absorbed moisture by functional composite fiber inner core around covering and functional composite fiber coating through main fibre, and the mesh diameter of functional composite fiber coating is greater than main fibre and is making the partial sweat that human body produced can also directly be absorbed moisture by functional composite fiber inner core fast through main fibre around the mesh of covering and the mesh of functional composite fiber coating, further accelerate sweat and discharge from the skin surface.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural view of a functional composite fiber core.
In the figure: 1. a main fiber inner core; 2. wrapping the primary fiber with a covering layer; 10. a functional composite fiber inner core; 11. a functional composite fiber coating layer; 101. moisture-conducting and sweat-releasing fibers; 102. high strength fibers.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-2, the present invention provides an embodiment: the utility model provides a high elasticity moisture absorption perspire fast dry fiber, includes the main fiber, the main fiber includes main fiber inner core 1 and winds the main fiber on main fiber inner core 1 surface around the covering 2, the cross-section of main fiber is positive direction or rectangle structure, main fiber inner core 1 is formed by two piece at least functional composite fiber arranging side by side, main fiber winds the covering 2 and is the network structure that is twisted and twisted by chitin fibre and lyocell fibre, because chitin fibre has hydrophilic groups such as a large amount of hydroxyl and amino on its big molecular chain, makes it have fine hydrophilicity and very high hygroscopicity, and still have antibiotic, anti-inflammatory and deodorant efficiency, has fine maintenance effect to the skin, belongs to green textile, and lyocell fibre has toughness, intensity height, non-shrink, moisture permeability and gas permeability and is the preferred. Therefore, the combination of the chitin fiber and the lyocell fiber greatly improves the moisture absorption and sweat releasing performance and the wear resistance of the main fiber, the functional composite fiber is composed of at least two functional composite fiber inner cores 10 and a functional composite fiber coating layer 11 coated on the surface of the functional composite fiber inner core 10, and the functional composite fiber inner core 10 is formed by twisting the moisture-guiding and sweat releasing fiber 101 and the high-strength fiber 102.
In this embodiment, the moisture-wicking and sweat-releasing fiber 101 is pineapple fiber, which contains higher amount of hemicellulose and lignin, and has more longitudinal slits and holes, and has horizontal branches, a linear middle cavity, and a cylindrical shape, so that it has the advantages of rapid moisture absorption and release, and can play a role of rapid sweat releasing.
In this embodiment, the high-strength fibers 102 are glass fiber filaments or bamboo fibers, which improve the strength of the functional composite fibers, thereby indirectly improving the mechanical strength of the entire main fiber and prolonging the service life thereof.
In this embodiment, the functional composite fiber coating layer 11 is a net structure formed by twisting cotton fibers and soybean fibers, and a fabric formed by interweaving the cotton fibers and the soybean fibers has the characteristics of eliminating sweat stains generated by a human body and being adhered to the skin after moisture absorption, and in addition, the combination of the cotton fibers and the soybean fibers also has the advantages of good elasticity, high tensile strength, good moisture absorption and conductivity and good light flexibility, so that the functional composite fiber has the characteristics of excellent high elasticity, moisture absorption and sweat releasing, and lightness and softness due to the combination of the functional composite fiber inner core 10 and the functional composite fiber coating layer 11.
In this embodiment, the mesh diameter of functional composite fiber coating 11 is greater than the mesh diameter of main fibre around cladding 2, and when the surface fabric that main fibre was woven contacted with human skin, the sweat that the human body produced was finally absorbed moisture by functional composite fiber inner core 10 through main fibre around cladding 2 and functional composite fiber coating 11 in proper order, and the mesh diameter of functional composite fiber coating 11 is greater than the mesh diameter of main fibre around cladding 2's purpose is that the partial sweat that makes the human body produce can also directly be directly through the mesh of main fibre around cladding 2 and the mesh of functional composite fiber coating 11 directly by functional composite fiber inner core 10 quick moisture absorption, further accelerates sweat and discharges from the skin surface.
The working principle is as follows: when a consumer wears clothes woven by main fibers, the main fiber wrapping layer 2 formed by twisting chitin fibers and lyocell fibers has good hygroscopicity, so that sweat generated by the body is quickly guided and discharged onto the main fiber inner core 1 through the main fiber wrapping layer 2, one part of the sweat absorbed by the main fiber wrapping layer 2 is further guided and discharged into the functional composite fiber inner core 10 through the functional composite fiber wrapping layer 11, the other part of the sweat absorbed by the main fiber wrapping layer 2 can be directly and quickly absorbed by the functional composite fiber inner core 10 through meshes of the main fiber wrapping layer 2 and meshes of the functional composite fiber wrapping layer 11, the sweat is prevented from staying on the surface of the skin of the human body and causing discomfort, and the functional composite fiber inner core 10 is formed by twisting the moisture-guiding fibers 101 and the high-strength fibers 102, the moisture-conducting and sweat-releasing fiber 101 is pineapple fiber silk, the pineapple fiber contains high amount of hemicellulose and lignin, and has more longitudinal gaps and holes, branches and nodes are transversely arranged, and a linear middle cavity is cylindrical, so that sweat finally entering the functional composite fiber inner core 10 is quickly discharged along the axial direction of the functional composite fiber inner core 10 under the action of the pineapple fiber.
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 or portions thereof without departing from the spirit and scope of the invention.
Claims (5)
1. A high elasticity moisture absorption perspires fast dry fiber which characterized in that: including the main fiber, the main fiber includes main fiber inner core (1) and winds the package main fiber on main fiber inner core (1) surface around covering (2), the cross-section of main fiber is positive direction or rectangle structure, main fiber inner core (1) is arranged side by two piece at least functional composite fiber and forms, main fiber is the network structure who is twisted with fingers by chitin fibre and lyocell fibre around covering (2), functional composite fiber comprises with two piece at least functional composite fiber inner cores (10) and functional composite fiber coating (11) of cladding on functional composite fiber inner core (10) surface, functional composite fiber inner core (10) are formed by leading wet perspire fibre (101) and high strength fiber (102) twisting.
2. The high elasticity moisture absorption and sweat releasing quick drying fiber according to claim 1, which is characterized in that: the moisture-conducting and sweat-releasing fiber (101) is pineapple fiber silk.
3. The high elasticity moisture absorption and sweat releasing quick drying fiber according to claim 1, which is characterized in that: the high-strength fibers (102) are glass fiber yarns or bamboo fibers.
4. The high elasticity moisture absorption and sweat releasing quick drying fiber according to claim 1, which is characterized in that: the functional composite fiber coating layer (11) is a net-shaped structure formed by twisting cotton fibers and soybean fibers.
5. The high elasticity moisture absorption and sweat releasing quick drying fiber according to claim 3, which is characterized in that: the mesh diameter of the functional composite fiber coating layer (11) is larger than that of the main fiber wrapping coating layer (2).
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CN202120528873.5U CN214938111U (en) | 2021-03-09 | 2021-03-09 | High-elasticity moisture-absorbing sweat-releasing quick-drying fiber |
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CN202120528873.5U CN214938111U (en) | 2021-03-09 | 2021-03-09 | High-elasticity moisture-absorbing sweat-releasing quick-drying fiber |
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