CN210362743U - Full-starch slashing high-proportion polyester-cotton blended gray fabric - Google Patents

Full-starch slashing high-proportion polyester-cotton blended gray fabric Download PDF

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Publication number
CN210362743U
CN210362743U CN201921201458.8U CN201921201458U CN210362743U CN 210362743 U CN210362743 U CN 210362743U CN 201921201458 U CN201921201458 U CN 201921201458U CN 210362743 U CN210362743 U CN 210362743U
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layer
retardant
cloth
fire
yarns
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CN201921201458.8U
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潘志连
唐友仓
潘建兵
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Zhejiang Tianjun Textile Co Ltd
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Zhejiang Tianjun Textile Co Ltd
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Abstract

The utility model discloses an all-starch slashing high-proportion polyester-cotton blended gray fabric, which comprises an inner layer, an antibacterial layer, a gray fabric body layer, a flame-retardant layer and an antistatic layer which are arranged in sequence from inside to outside; the grey cloth body layer is formed by vertically interweaving warp yarns and weft yarns, the warp yarns are formed by polyester-cotton blended yarns and first composite yarns which are arranged at intervals, and the weft yarns are formed by polyester-cotton blended yarns and second composite yarns which are arranged at intervals; the fire-retardant layer is including adhering to the fire-retardant strip of grey cloth body layer surface, and fire-retardant strip includes fire-retardant rectangular cloth and the rectangular cloth of antibiotic of range upon range of from top to bottom, and the cloth width of the rectangular cloth of antibiotic is greater than the cloth width of the rectangular cloth of fire-retardant, and the antistatic layer is wavy third composite yarn, and the compound yarn of third uses the fire-retardant strip of interval as the tie point, passes the upper surface of connection at fire-retardant layer between the rectangular cloth of fire-retardant and the rectangular cloth of antibiotic follow. The utility model discloses have antibiotic, ventilative, antistatic, fire-retardant advantage concurrently to the starching degree of difficulty of full starch thick liquids has been reduced.

Description

Full-starch slashing high-proportion polyester-cotton blended gray fabric
Technical Field
The utility model relates to a polyester-cotton blended fabric, especially a full starch sizing high proportion polyester-cotton blended grey cloth.
Background
The full-starch slashing high-proportion polyester-cotton blended gray fabric is formed by blending and spinning polyester and cotton as main components, the style of polyester is highlighted, the advantages of cotton fabrics are achieved, the size is stable under dry and wet conditions, the shrinkage rate is small, and the full-starch slashing high-proportion polyester-cotton blended gray fabric has the advantages of being tall and straight, not prone to creasing, easy to wash and fast to dry, but due to the singleness of raw materials, even if the full-starch slashing high-proportion polyester-cotton blended gray fabric is blended, the functions of the fabric are single, problems such as poor air permeability, easy bacterium breeding on the inner surface and the outer surface of the soaked gray fabric, easy static electricity generation due to friction during dry weather and the like can occur, and at present, the rapidly developed cloth, the single; the yarn needs to be subjected to sizing treatment before weaving to avoid the problems of more hairiness and unclear opening of the fabric caused by friction during weaving and finally influence the quality of the fabric, and because the tension during weaving is higher, the unsized yarn also has the problem of easy end breakage. Therefore, a polyester-cotton blended gray fabric with more abundant functions and easy sizing is needed to meet the current demand.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an all starch sizing high proportion polyester-cotton blending grey cloth. The all-starch sizing agent has the advantages of being antibacterial, breathable, antistatic and flame retardant, and the sizing difficulty of the all-starch sizing agent is reduced.
The technical scheme of the utility model: the full-starch slashing high-proportion polyester-cotton blended gray fabric comprises an inner layer, an antibacterial layer, a gray fabric body layer, a flame-retardant layer and an antistatic layer which are sequentially arranged from inside to outside; the grey cloth body layer is formed by vertically interweaving warp yarns and weft yarns, the warp yarns are formed by polyester-cotton blended yarns and first composite yarns which are arranged at intervals, and the weft yarns are formed by polyester-cotton blended yarns and second composite yarns which are arranged at intervals; the first composite yarn is in a structure that polyester fibers and spandex fibers are twisted in a spiral shape; the second composite yarn is in a structure that artificial silk is used as an inner core and spiral artificial cotton fibers are wrapped on the outer side of the artificial silk; the fire-retardant layer is including adhering to the fire-retardant strip of grey cloth body layer surface, and fire-retardant strip includes fire-retardant rectangular cloth and the rectangular cloth of antibiotic of range upon range of from top to bottom, and the cloth width of the rectangular cloth of antibiotic is greater than the cloth width of the rectangular cloth of fire-retardant, and the antistatic layer is wavy third composite yarn, and the compound yarn of third uses the fire-retardant strip of interval as the tie point, passes the upper surface of connection at fire-retardant layer between the rectangular cloth of fire-retardant and the rectangular cloth of antibiotic follow.
In the all-starch slashing high-proportion polyester-cotton blended gray fabric, the inner layer is a cotton cloth layer, the antibacterial layer is a bamboo charcoal fiber layer, and the inner layer and the antibacterial layer are provided with shared air holes.
In the all-starch slashing high-proportion polyester-cotton blended gray fabric, activated carbon particles are arranged in gaps between adjacent flame-retardant strips of the flame-retardant layer.
In the all-starch slashing high-proportion polyester-cotton blended gray fabric, the third composite yarn is in a structure that polyaniline conductive fibers and cotton fibers are spirally twisted.
In the all-starch slashing high-proportion polyester-cotton blended gray fabric, the waterproof layer is coated on the outer side of the cotton fiber of the third composite yarn.
Compared with the prior art, the utility model has a five-layer structure of an inner layer, an antibacterial layer, a grey cloth body layer, a flame-retardant layer and an antistatic layer from inside to outside, wherein the grey cloth body layer is vertically interwoven by warp yarns and weft yarns, the warp yarns are formed by polyester-cotton blended yarns and first composite yarns in an interval arrangement, the first composite yarns are specifically in a structure that polyester fibers and spandex fibers are spirally twisted, the elasticity of the utility model is improved, the weft yarns are formed by the polyester-cotton blended yarns and second composite yarns in an interval arrangement, the second composite yarns are specifically artificial silks as inner cores, the structure of wrapping the spiral artificial cotton fiber on the outer side of the artificial silk has the advantages that the artificial silk and the artificial cotton fiber have low cost and long service life, the artificial cotton fiber is spirally wound on the outer surface of the artificial silk, the outer surface of the second composite yarn is easier to absorb water, and the sizing difficulty of the full starch size on the second composite yarn is greatly reduced.
The antibacterial layer and the flame-retardant layer are respectively arranged inside and outside the grey cloth body layer, the antibacterial layer is made of bamboo charcoal fibers, the advantages of moisture absorption, ventilation, bacteriostasis, antibiosis and warm in winter and cool in summer are achieved, the breeding of bacteria at the contact part of the cloth and a body can be reduced, the flame-retardant layer is of a flame-retardant strip structure, the ventilation performance is not affected due to the spaced arrangement of the flame-retardant strips, the flame-retardant strips comprise flame-retardant strip cloth and antibacterial strip cloth which are stacked up and down, the flame-retardant strip cloth plays a flame-retardant role, the breeding of bacteria at the contact part of the grey cloth and the outside can be reduced through the antibacterial strip cloth, and the inner surface and the outer surface of the grey cloth have excellent; use the fire-retardant strip of interval as the tie point, from passing the third composite yarn of connection at fire-retardant layer upper surface between fire-retardant rectangular cloth and the antibiotic rectangular cloth, the compound yarn of third forms antistatic layer, and the compound yarn of third is polyaniline conductive fiber and cotton fiber and is the structure that the heliciform was twisted with fingers, not only can be antistatic, also starching easily.
In addition, the width of the cloth strip of the antibacterial long-strip cloth is larger than that of the flame-retardant long-strip cloth, so that on one hand, the ventilation of the grey cloth is facilitated, and on the other hand, the third composite yarn is connected more stably after penetrating through the flame-retardant long-strip cloth and the antibacterial long-strip cloth; the inner layer and the antibacterial layer are provided with shared air holes, so that the utility model has good air permeability; be equipped with the active carbon granule in the clearance between the adjacent fire-retardant strip on fire-retardant layer, further improved the utility model discloses an antibacterial property.
To sum up, the utility model discloses have antibiotic, ventilative, antistatic, fire-retardant advantage concurrently to the starching degree of difficulty of full starch thick liquids has been reduced.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is an enlarged view of a portion of FIG. 1 at A;
FIG. 3 is a schematic view of the construction of the body layer of the blank;
FIG. 4 is a schematic of the structure of a first composite yarn;
FIG. 5 is a schematic of the structure of a second composite yarn;
FIG. 6 is a schematic of the structure of a third composite yarn;
fig. 7 is a schematic view of the structure of the inner layer surface.
The labels in the figures are: 1-inner layer, 2-antibacterial layer, 3-grey cloth body layer, 4-flame retardant layer, 5-antistatic layer, 6-air vent, 31-warp, 32-weft, 311-polyester-cotton blended yarn, 312-first composite yarn, 321-second composite yarn, 3121-polyester fiber, 3122-spandex fiber, 3211-artificial silk, 3212-artificial cotton fiber, 41-flame retardant strip, 42-activated carbon particle, 411-flame retardant strip cloth, 412-antibacterial strip cloth, 51-third composite yarn, 511-polyaniline conductive fiber, 512-cotton fiber and 513-waterproof layer.
Detailed Description
The following description is made with reference to the accompanying drawings and examples, but not to be construed as limiting the invention.
Example (b): the structure of the full-starch slashing high-proportion polyester-cotton blended gray fabric is shown in figures 1 to 7, and the full-starch slashing high-proportion polyester-cotton blended gray fabric comprises an inner layer 1, an antibacterial layer 2, a gray fabric body layer 3, a flame-retardant layer 4 and an antistatic layer 5 which are sequentially arranged from inside to outside; the grey cloth body layer 3 is formed by vertically interweaving warp yarns 31 and weft yarns 32, the warp yarns 31 are formed by alternately arranging polyester-cotton blended yarns 311 and first composite yarns 312, and the weft yarns 32 are formed by alternately arranging polyester-cotton blended yarns 311 and second composite yarns 321; the first composite yarn 312 is a structure in which a polyester fiber 3121 and a spandex fiber 3122 are twisted spirally; the second composite yarn 321 is a structure in which artificial silk 3211 is used as an inner core, and spiral artificial cotton fibers 3212 are wrapped outside the artificial silk 3211; flame-retardant layer 4 is including adhering to the flame-retardant strip 41 on grey cloth body layer 3 surface, flame-retardant strip 41 is including the fire-retardant rectangular cloth 411 and the antibiotic rectangular cloth 412 of range upon range of from top to bottom, the cloth width of antibiotic rectangular cloth 412 is greater than the cloth width of fire-retardant rectangular cloth 411, antistatic layer 5 is wavy third composite yarn 51, third composite yarn 51 uses the fire-retardant strip 41 of spaced as the tie point, pass the upper surface of connection at flame-retardant layer 4 between fire-retardant rectangular cloth 411 and the antibiotic rectangular cloth 412.
The inner layer 1 is a cotton cloth layer, the antibacterial layer 2 is a bamboo charcoal fiber layer, and the common air holes 6 are formed in the inner layer 1 and the antibacterial layer 2.
Activated carbon particles 42 are arranged in gaps between adjacent flame-retardant strips 41 of the flame-retardant layer 4.
The third composite yarn 51 is formed by spirally twisting polyaniline conductive fibers 511 and cotton fibers 512.
The outer side of the cotton fiber 512 of the third composite yarn 51 is coated with a waterproof layer 513.
The flame-retardant long cloth 411, the antibacterial long cloth 412 and the third composite yarn 51 possibly existing between the flame-retardant long cloth and the antibacterial long cloth are bonded through glue, the glue is E6000 glue, and the glue is soft after being cured and has good softness and fastness.
The flame-retardant long cloth 411 is specifically a long phenolic resin sheet, and the antibacterial long cloth 412 is cotton cloth blended with nano silver ion fibers.
The utility model discloses each layer yarn all is through full starch thick liquids starching, be antibiotic layer 2 and fire-retardant layer 4 inside and outside grey cloth body layer 3 respectively, antibiotic layer 2 adopts bamboo charcoal fiber, it is ventilative to have the moisture absorption, antibacterial antibiotic, warm in winter and cool in summer's advantage, can reduce the breed of the bacterium of cloth and the human body contact site, and fire-retardant layer 4 is fire-retardant strip 41's structure, fire-retardant strip 41 interval arrangement does not influence air permeability, and fire-retardant strip 41 includes fire-retardant rectangular cloth 411 and the antibiotic rectangular cloth 412 of upper and lower range upon range of, fire-retardant rectangular cloth 411 plays fire-retardant effect, antibiotic rectangular cloth 412 can reduce the breed of grey cloth and external contact site bacterium, the interior external surface of grey cloth all has outstanding antibacterial capacity in antibiotic layer 2 and the cooperation of fire-retardant layer 4; the third composite yarns 51 connected to the upper surface of the flame-retardant layer 4 penetrate between the flame-retardant long cloth 411 and the antibacterial long cloth 412 by taking the spaced flame-retardant strips 41 as connection points, the third composite yarns 51 are arranged in a wave-shaped structure to form an antistatic layer 5, and the third composite yarns 51 are in a structure that polyaniline conductive fibers 511 and cotton fibers 512 are twisted in a spiral shape, so that the antistatic effect is achieved, and the sizing is easy.

Claims (5)

1. Full starch sizing high proportion polyester-cotton blending grey cloth, its characterized in that: comprises an inner layer (1), an antibacterial layer (2), a grey cloth body layer (3), a flame retardant layer (4) and an antistatic layer (5) which are arranged in sequence from inside to outside; the grey cloth body layer (3) is formed by vertically interweaving warp yarns (31) and weft yarns (32), the warp yarns (31) are formed by alternately arranging polyester-cotton blended yarns (311) and first composite yarns (312), and the weft yarns (32) are formed by alternately arranging the polyester-cotton blended yarns (311) and second composite yarns (321); the first composite yarn (312) is in a structure that polyester fibers (3121) and spandex fibers (3122) are twisted in a spiral shape; the second composite yarn (321) is in a structure that artificial silk (3211) is used as an inner core, and spiral artificial cotton fibers (3212) are wrapped outside the artificial silk (3211); flame-retardant layer (4) is including adhering to flame-retardant strip (41) at grey cloth body layer (3) surface, flame-retardant strip (41) are including fire-retardant rectangular cloth (411) and antibiotic rectangular cloth (412) of range upon range of from top to bottom, the cloth width of antibiotic rectangular cloth (412) is greater than the cloth width of fire-retardant rectangular cloth (411), antistatic layer (5) are wavy third composite yarn (51), third composite yarn (51) use spaced flame-retardant strip (41) as the tie point, pass the upper surface of connection in flame-retardant layer (4) between fire-retardant rectangular cloth (411) and antibiotic rectangular cloth (412).
2. The all-starch slashing high-proportion polyester-cotton blended gray fabric according to claim 1, characterized in that: the inner layer (1) is a cotton cloth layer, the antibacterial layer (2) is a bamboo charcoal fiber layer, and common air holes (6) are formed in the inner layer (1) and the antibacterial layer (2).
3. The all-starch slashing high-proportion polyester-cotton blended gray fabric according to claim 1, characterized in that: activated carbon particles (42) are arranged in gaps between adjacent flame-retardant strips (41) of the flame-retardant layer (4).
4. The all-starch slashing high-proportion polyester-cotton blended gray fabric according to claim 1, characterized in that: the third composite yarn (51) is in a structure that polyaniline conductive fibers (511) and cotton fibers (512) are spirally twisted.
5. The all-starch slashing high-proportion polyester-cotton blended gray fabric according to claim 4, characterized in that: the outer side of the cotton fiber (512) of the third composite yarn (51) is coated with a waterproof layer (513).
CN201921201458.8U 2019-07-29 2019-07-29 Full-starch slashing high-proportion polyester-cotton blended gray fabric Active CN210362743U (en)

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CN201921201458.8U CN210362743U (en) 2019-07-29 2019-07-29 Full-starch slashing high-proportion polyester-cotton blended gray fabric

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Application Number Priority Date Filing Date Title
CN201921201458.8U CN210362743U (en) 2019-07-29 2019-07-29 Full-starch slashing high-proportion polyester-cotton blended gray fabric

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113604930A (en) * 2021-06-15 2021-11-05 苏州苏雪纺织科技有限公司 Preparation process of regenerated cellulose blended real silk jacquard fabric for home textiles

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113604930A (en) * 2021-06-15 2021-11-05 苏州苏雪纺织科技有限公司 Preparation process of regenerated cellulose blended real silk jacquard fabric for home textiles

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