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Manufacturing method of diacetate and terylene/cotton filament composite blank variable yarn having short fibrous effect

A technology of diacetate and air-textured yarn, applied in textiles and papermaking, etc., to achieve good market prospects and rich styles

Inactive Publication Date: 2006-01-11
DONGHUA UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, it has never been reported that the diacetate filament will produce a short fiber effect with abundant fluff on the surface of the natural spun yarn on the existing air texturing machine without loop grinding device, i.e. the above-mentioned Texspun device

Method used

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  • Manufacturing method of diacetate and terylene/cotton filament composite blank variable yarn having short fibrous effect
  • Manufacturing method of diacetate and terylene/cotton filament composite blank variable yarn having short fibrous effect
  • Manufacturing method of diacetate and terylene/cotton filament composite blank variable yarn having short fibrous effect

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0032] In the present embodiment, the linear density is 115 decitex / 28 diacetate filaments whose cross-sectional shape is square-toothed for use as leather filament A, and the linear density is 56 decitex / 24 wires whose cross-sectional shape is circular. Polyester filament is used as the core yarn B, and the leather yarn A and the core yarn B pass through the input rollers 2, 2 ' and the moisture supply device 3 at an overfeed rate of 117.2% and 104.16% respectively, and the moisture supply of the moisture supply device 3 is 0.2 liters / hour, the air pressure of deformation nozzle 4 is 3.5 kg / cm 2 , the underfeed rate is 98.5%, the speed of the take-up roller is 120 m / min, after being air-deformed in the deformation nozzle 4, it is wound into a cylinder through the output roller 5 and the take-up roller 6, and the obtained product has a short fiber effect The morphological structure of the diacetate and polyester filament composite air variable yarn is as follows image 3 As s...

Embodiment 2

[0034] In the present embodiment, the linear density is 177 dtex / 33 diacetate filaments whose cross-sectional shape is square-toothed for use as leather filament A, and the linear density is 83 dtex / 36 wires whose cross-sectional shape is circular. The polyester filament is used as the core yarn B, and the skin yarn A and the core yarn B pass through the input rollers 2, 2' and the wet supply device 3 at an overfeed rate of 138.5% and 109.69% respectively, and the wet supply device 3 does not supply wet and deforms Air pressure at nozzle 4 is 5 kg / cm 2 , the underfeeding rate is 97%, the take-up roller speed is 200 m / min, and after being deformed by air in the deformation nozzle 4, it is wound into a cylinder by the output roller 5 and the take-up roller 6, so as to obtain a short fiber effect Diacetate and polyester filament composite air variable yarn. After testing, the linear density of the prepared diacetate and polyester filament composite space-changing yarn is 331.76 ...

Embodiment 3

[0036] In the present embodiment, the linear density is 260 decitex / 72 diacetate filaments whose cross-sectional shape is square-toothed as leather silk A, and the linear density is 125 decitex / 48 whose cross-sectional shape is trefoil. Nylon filaments are used as the core yarn B, and the leather yarn A and the core yarn B pass through the input rollers 2, 2' and the wet supply device 3 at an overfeed rate of 184.7%, 112.3% respectively, and the moisture supply of the wet supply device 3 When it is 1.0 liters / hour, the air pressure of deformation nozzle 4 is 7 kg / cm 2 , the underfeeding rate is 98.5%, the take-up roller speed is 280 m / min, and after being deformed by air in the deformation nozzle 4, it is wound into a cylinder by the output roller 5 and the take-up roller 6, so as to obtain a short fiber effect Diacetate and nylon filament composite air variable yarn. After testing, the linear density of the prepared diacetate and polyester filament composite space-changing y...

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Abstract

The present invention utilizes the combination of characteristics of diacetate filament and air-texturing technique, and fully utilizes the short fibrillation effect of diacetate filament in air-texturing production process, and has no need of adding loop-abrading device, and can produce the air-textured yarn with more rich natural spun yarn style.

Description

technical field [0001] The invention belongs to the field of textiles, and relates to a method for preparing air-varying yarns composited with diacetate and polyester / brocade filaments with a short fiber effect. Background technique [0002] The air deformation technology was first successfully researched by the DuPont Company of the United States in the early 1950s, and its key component is the nozzle. The process is that compressed air is introduced into the nozzle, and the deformed multifilament is subjected to high-speed turbulence in the nozzle, and each single filament is separated from each other and moves violently in the turbulent flow. When the filament is tension-free (that is, overfeed) from At the moment when the nozzle is output, many loops, arcs and tangles are produced on the loose filament bundle. This irregularly entangled form makes the smooth filament soft, bulky and low-elasticity. Empty variable yarn. The purpose of the air deformation technology is t...

Claims

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Application Information

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IPC IPC(8): D02G1/18D02G1/16
Inventor 王善元张静张志龙高亚英
Owner DONGHUA UNIV
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