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Anion terylene colored fiber and preparation and application thereof

A technology of colored fibers and negative ions, applied in the fields of fiber chemical characteristics, rayon manufacturing, textiles and papermaking, etc., can solve problems such as leakage current density rise and breakdown, and achieve less agglomeration, less addition, and good compatibility Effect

Active Publication Date: 2009-09-30
ZHEJIANG JINXIA NEW MATERIAL TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

But it has a fatal weakness: when the external DC electric field exceeds hundreds of 10 3 After V / cm, the leakage current density increases by several orders of magnitude, and at 2×10 6 Breakdown occurs around V / cm

Method used

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  • Anion terylene colored fiber and preparation and application thereof
  • Anion terylene colored fiber and preparation and application thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0040] Raw material ratio:

[0041] raw material source weight

(share) Modified negative ion powder Shanghai Compida 30 polyester resin Shanghai Jinshan Petrochemical 70

[0042] Preparation steps:

[0043] This test uses a vacuum oven to create good conditions for ensuring the drying effect of the resin. When selecting drying process parameters, it is necessary to ensure that the mass fraction of dry slice water is not greater than 60ppm

[0044] Chip drying process parameters

[0045]

[0046] The chip is cooled down to 90°C under vacuum condition, while the powder is heated up to 30°C. At this temperature, the anion powder and slices are blended and kneaded.

[0047] The SHL~35 twin-screw extruder produced by Shanghai Chemical Machinery No. 4 Factory is used with a self-made static mixer, the feed screw is 50r / min, and the main screw is 150r / min. The resin and negative ion nano powder are blended at a mass ratio of 70:30, melt-e...

Embodiment 2

[0051] Raw material ratio:

[0052] raw material source weight

(share) Negative ion masterbatch Example 1 5 Masterbatch Cixi win-win fiber masterbatch

Ltd. PB307 5 polyester resin Jinshan Petrochemical 90

[0053] Preparation steps:

[0054] Put 5 parts of negative ion masterbatch, 5 parts of color masterbatch, and 90 parts of polyester fiber-forming resin into a vacuum oven according to the weight ratio, heat up to 80 ° C, keep warm for 2 hours, and slice for pre-crystallization. Continue to heat up to 100°C, keep warm for 3 hours, turn off the power, and cool naturally, with a moisture content of 0.08%. The spinning equipment is VC406 spinning machine produced by Changshu Textile Machinery Factory. The blended slices enter the screw extruder for heating, melting and compression. The blended melt extruded by the rotating screw enters the metering pump through the distribution pipe and the static mixer and is delivered to the ...

Embodiment 3

[0057] Raw material ratio:

[0058] raw material source weight

(share) Negative ion masterbatch Example 1 4 Masterbatch Cixi win-win fiber masterbatch

Ltd. PB307 2 polyester resin Jinshan Petrochemical 94

[0059] Preparation steps:

[0060] Put 4 parts of negative ion masterbatch, 2 parts of color masterbatch and 94 parts of polyester fiber-forming resin according to the weight ratio into a vacuum oven, heat up to 80°C, keep warm for 2 hours, and slice for pre-crystallization. Continue to heat up to 100°C, keep warm for 3 hours, turn off the power, and cool naturally, with a moisture content of 0.08%. The spinning equipment is VC406 spinning machine produced by Changshu Textile Machinery Factory. The blended slices enter the screw extruder for heating, melting and compression. The blended melt extruded by the rotating screw enters the metering pump through the distribution pipe and the static mixer and is delivered to the spi...

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Abstract

The invention relates to an anion terylene colored fiber and preparation and preparation and application thereof. The fiber comprises the following components: a terylene anion master batch, a terylene colored master batch and a terylene fiber-forming polyester chip, and the weight ratio is 1-10:1-10: 80-98. The preparation comprises the following steps that: (1) the terylene fiber-forming polyester chip is dried in vacuum, the anion powder is mixed with the chip, and the obtained mixture is subjected to melt extrusion, cooling and granulation; (2) the terylene anion master batch, the terylene colored master batch and the terylene fiber-forming polyester chip are vacuumized, heated and subjected to heat preservation; (3) the raw materials are put in an extruder and heated, melted and compressed; and (4) the obtained product is sent to a distributing pipe, a static mixer and a metering pump respectively to form a melting current, and the melting current is cooled, coated and spun to obtain the finished product. The anion terylene colored fiber is flexible and elastic, resembles the wool fabric in style, maintains the characteristics of lightness and smoothness of terylene, can transmit anions and has different colors; moreover, the preparation method has the advantages of simple operation, easy realization of production process, low dyeing cost and the suitability for industrialized production.

Description

technical field [0001] The invention belongs to the field of polyester colored fiber and its preparation, in particular to an anion colored polyester fiber and its preparation and application. Background technique [0002] Polyester (PET) fiber is increasingly valued by people because of its low cost, excellent performance and wide application. Americans began to produce polyester in 1953. In 2006, the global polyester output exceeded 27,000kt, accounting for 67% of the total synthetic fiber output. Polyester has become the most widely used fiber. In recent years, many modification methods have been proposed for PET fibers to make woven fabrics and clothing more comfortable and hygienic to wear. However, for a long time, PET fibers cannot realize the coexistence of multiple functions, which limits the diversification of fabric varieties. In recent years, breakthroughs have been made in the research on PET fiber stylization and the improvement of negative ion performance, ...

Claims

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Application Information

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IPC IPC(8): D01F6/92D01F1/10D01D5/08B29C47/92B29C48/92
CPCB29C48/04B29C48/05B29C48/92B29C2948/92704B29C2948/92895
Inventor 张志明陈龙
Owner ZHEJIANG JINXIA NEW MATERIAL TECH CO LTD
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