CN101858012A - Three-layer mesh fabric for improving performance of moisture absorption - Google Patents
Three-layer mesh fabric for improving performance of moisture absorption Download PDFInfo
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- CN101858012A CN101858012A CN200910112291A CN200910112291A CN101858012A CN 101858012 A CN101858012 A CN 101858012A CN 200910112291 A CN200910112291 A CN 200910112291A CN 200910112291 A CN200910112291 A CN 200910112291A CN 101858012 A CN101858012 A CN 101858012A
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Abstract
The invention relates to a three-layer mesh fabric for improving the performance of moisture absorption, which comprises an upper surface layer, a lower surface layer and an interlayer, wherein the upper surface layer and the lower surface layer are knitted by yarn in a warp knitting mode, the interlayer is connected between the upper surface layer and the lower surface layer, and at least one comb of yarn in various combs of yarn forming the upper surface layer and/or the lower surface layer is Nylon-6 Hydrofil silk. The invention adds one comb adopting the Nylon-6 Hydrofil silk with better performance of moisture absorption on the basis of an original three-layer mesh fabric knitting method under the condition that other performance indexes of the three-layer mesh fabric are not influenced, thereby achieving the effect of improving the performance of moisture absorption and the wearing performance of the three-layer mesh fabric.
Description
Technical field
The present invention relates to the structure of three-layer mesh fabric, specifically be meant a kind of three-layer mesh fabric that improves moisture pick-up properties.
Background technology
Three-layer mesh fabric is a kind of warp-knitted spacer fabric, is the two-layer fabrics that forms on two needle-bars of the yarn by different material or fineness, has a certain thickness tricot with what the connection yarn of all lengths fineness coupled together between the two.Therefore its structure generally includes three layers, i.e. upper epidermis, top layer and wall down, and upper epidermis and following top layer have the hollow out decorative pattern usually, and wall is connected between upper epidermis, time top layer by monofilament and forms, and total has certain elasticity, and good air permeability.
The three-decker of existing three-layer mesh fabric is made of fibers materials such as nylon usually, has the problem of hygroscopicity difference.
Summary of the invention
The invention provides a kind of three-layer mesh fabric that improves moisture pick-up properties, its main purpose is to overcome the shortcoming of existing three-layer mesh fabric hygroscopicity difference.
The present invention adopts following technical scheme: a kind of three-layer mesh fabric that improves moisture pick-up properties, comprise by yarn with the upper epidermis that is made into through the volume mode, top layer and be connected in wall between the two down, described formation upper epidermis and/or down the top layer comb respectively that to have a comb yarn in the yarn at least be Nylon-6 Hydrofil silk.
Aforementioned a kind of three-layer mesh fabric that improves moisture pick-up properties, its upper epidermis is made into by two comb yarns, wherein a comb by the black silk of 150D/48F low elastic polyester filament and 150D/48F polyester low stretch forms, the mixed yarn of 1872mm/Rack, another comb by 150D/48F low elastic polyester filament and black of 150D/48F polyester low stretch form, the mixed yarn of 1344mm/Rack; Described wall is made into by the polyester monofilament of two comb 30D, 8112mm/Rack; Described top layer is down become by the Nylon-6 Hydrofil silk weaving of comb 90D/34F, a 1780mm/Rack.
By above-mentioned description to structure of the present invention as can be known, compare with prior art, the present invention has following advantage: the present invention is under the situation that does not influence other performance indications of three-layer mesh fabric, on the basis of original three-layer mesh fabric weave, add a comb and adopt hygroscopicity Nylon-6 Hydrofil silk preferably, thereby can reach the effect of improving the three-layer mesh fabric hygroscopicity and taking performance.
Description of drawings
Fig. 1 is a perspective view of the present invention.
The specific embodiment
The specific embodiment of the present invention is described with reference to the accompanying drawings.
A kind of three-layer mesh fabric that improves moisture pick-up properties, with reference to Fig. 1, comprise by yarn with the upper epidermis 1 that is made into through the volume mode, down top layer 3 and be connected in this upper epidermis 1 and following top layer 3 between wall 2.This upper epidermis 1 is made into by two comb yarns 101,102, wherein a comb yarn 101 by the black silk of 150D/48F low elastic polyester filament and 150D/48F polyester low stretch forms, the mixed yarn of 1872mm/Rack, another comb yarn 102 by 150D/48F low elastic polyester filament and black of 150D/48F polyester low stretch form, the mixed yarn of 1344mm/Rack; This wall 2 is made into by the polyester monofilament 201,202 of two comb 30D, 8112mm/Rack; This time top layer 3 is made into by the Nylon-6 Hydrofil silk 301 of comb 90D/34F, a 1780mm/Rack.Nylon-6 Hydrofil is a kind of modification of nylon, can be buied by U.S. UNIFI company.
The implication of above-mentioned constituent parts is as follows: D is the unit of expression filament thickness, and mm/Rack is meant the yarn-using amount of 480 lines, and 90D/34F is meant that rugosity is 90D, and is made of 34 monofilament.
The production craft step of above-mentioned three-layer mesh fabric comprises: warping, go up axle, entry, weave, the grey cloth inspection, put, deliver from godown, join that cylinder, margin to seam, base are fixed in storage, dyeing, washing, dehydration, typing, finished product inspection, packing, finished product warehouse-in.Should control the polyester low stretch thread tension of different colours in the warping process, should note its elongation problem in the Nylon 6Hydrofil warping process, silk is refueled to solve convergence, to satisfy the needs in compiling production process.Warping tension force should be controlled in the 13-20 gram/root, and the warping speed of a motor vehicle is controlled at 500 meters/minute.
The regain of the three-layer mesh fabric in the present embodiment is 2 times of common chemical fibre three-layer mesh fabric regain, and under the situation of 37 ℃ of temperature, relative humidity 95%, just under the situation that human body is perspired, its hygroscopicity is hygroscopic 4 times of other chemical fibre raw materials; Through the siphon property testing, the three-layer mesh fabric siphon in the present embodiment is 3 times of common chemical fibre three-layer mesh fabric.Common chemical fibre three-layer mesh fabric market price is about 28 yuan/kilogram, and the market price of this three-layer mesh fabric can reach about 45.5 yuan/kilogram, and as seen the added value of this three-layer mesh fabric has improved.
Above-mentioned only is the specific embodiment of the present invention, but design concept of the present invention is not limited thereto, and allly utilizes this design that the present invention is carried out the change of unsubstantiality, all should belong to the behavior of invading protection domain of the present invention.
Claims (2)
1. three-layer mesh fabric that improves moisture pick-up properties, comprise by yarn and it is characterized in that with the upper epidermis that is made into through the volume mode, top layer and be connected in wall between the two down: described formation upper epidermis and/or down the top layer comb respectively that to have a comb yarn in the yarn at least be Nylon-6 Hydrofil silk.
2. a kind of three-layer mesh fabric that improves moisture pick-up properties as claimed in claim 1, it is characterized in that: described upper epidermis is made into by two comb yarns, wherein a comb by the black silk of 150D/48F low elastic polyester filament and 150D/48F polyester low stretch forms, the mixed yarn of 1872mm/Rack, another comb by 150D/48F low elastic polyester filament and black of 150D/48F polyester low stretch form, the mixed yarn of 1344mm/Rack; Described wall is made into by the polyester monofilament of two comb 30D, 8112mm/Rack; Described top layer is down become by the Nylon-6Hydrofil silk weaving of comb 90D/34F, a 1780mm/Rack.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN200910112291A CN101858012A (en) | 2009-07-30 | 2009-07-30 | Three-layer mesh fabric for improving performance of moisture absorption |
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CN200910112291A CN101858012A (en) | 2009-07-30 | 2009-07-30 | Three-layer mesh fabric for improving performance of moisture absorption |
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CN101858012A true CN101858012A (en) | 2010-10-13 |
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CN200910112291A Pending CN101858012A (en) | 2009-07-30 | 2009-07-30 | Three-layer mesh fabric for improving performance of moisture absorption |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101994210A (en) * | 2010-12-09 | 2011-03-30 | 江南大学 | Fabric with warp knitting three-dimensional structure |
CN102477660A (en) * | 2010-11-25 | 2012-05-30 | 东丽纤维研究所(中国)有限公司 | Sweat-guiding quick-drying knitted fabric and production method and application thereof |
CN102704179A (en) * | 2012-06-13 | 2012-10-03 | 福建省晋江市华宇织造有限公司 | High-intensity moisture permeable warp knitting layered mesh cloth based on mixed chemical fiber |
-
2009
- 2009-07-30 CN CN200910112291A patent/CN101858012A/en active Pending
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102477660A (en) * | 2010-11-25 | 2012-05-30 | 东丽纤维研究所(中国)有限公司 | Sweat-guiding quick-drying knitted fabric and production method and application thereof |
CN101994210A (en) * | 2010-12-09 | 2011-03-30 | 江南大学 | Fabric with warp knitting three-dimensional structure |
CN102704179A (en) * | 2012-06-13 | 2012-10-03 | 福建省晋江市华宇织造有限公司 | High-intensity moisture permeable warp knitting layered mesh cloth based on mixed chemical fiber |
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Open date: 20101013 |