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Alloy germanium chinlon filament and production method thereof

A nylon and alloy technology, used in the manufacture of conductive/antistatic filaments, single-component polyamide rayon, melt spinning, etc., to achieve the effects of temperature storage and blood circulation, strong deodorization ability, and good air permeability

Inactive Publication Date: 2010-03-10
HAIAN ZHONGSHAN SYNTHETIC FIBER
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] There is no relevant product and production method of adding germanium alloy to nylon filament at present

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0022] In the present embodiment, the raw material composition and production method steps of the alloyed germanium nylon filament are as follows:

[0023] 1. Raw material and weight percentage:

[0024] Nano alloy germanium 60g,

[0025] Nylon 6 slices 2940g

[0026] Among them, 60g of nano-alloyed germanium includes 45g of germanium and 15g of titanium crystals.

[0027] 2. Method: spinning by melt spinning method, which mainly includes the following steps:

[0028] (1) drying: drying nylon 6 slices and nano-alloyed germanium;

[0029] (2) Preparation of spinning fluid: According to a certain ratio, use the masterbatch output pump to accurately add nano-alloy germanium, mix and melt with nylon 6 slices;

[0030] (3) Spinning: The molten fiber-forming high-polymer melt is extruded from the spinneret hole of the spinneret, cooled and solidified into filaments in the surrounding air (or water), and a stable temperature is maintained during the production process. Humidity ...

Embodiment 2

[0033] In the present embodiment, the raw material composition and production method steps of the alloyed germanium nylon filament are as follows:

[0034] 1. Raw material and weight percentage:

[0035] Nano Alloy Germanium 180g

[0036] Nylon 6 slices 2820g

[0037] Among them, 180g of nano-alloyed germanium includes 135g of germanium and 45g of titanium crystals.

[0038] 2. Method: same as Example 1.

Embodiment 3

[0040] In the present embodiment, the raw material composition and production method steps of the alloyed germanium nylon filament are as follows:

[0041] 1. Raw material and weight:

[0042] Nano Alloy Germanium 120g

[0043] Nylon 6 slices 2880g

[0044] Among them, 120g of nano alloy germanium includes 90g of germanium and 30g of titanium crystals.

[0045] 2. Method: same as Example 1.

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PUM

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Abstract

The invention provides an alloy germanium chinlon filament and a production method thereof. The alloy germanium chinlon filament comprises the following components in percentage by weight: 2-6 percentof nano alloy germanium and 94-98 percent of chinlon 6 slice. The nano alloy germanium comprises a germanium crystal and a titanium crystal, wherein the weight ratio of the germanium crystal and thetitanium crystal is 3:1. Compared with the common chinlon filament fabric, the fabric made of the alloy germanium chinlon filament has the following technical advantages: far infrared ray function: the fabric can keep warm and promote blood circulation; (2) antistatic ability; (3) deodorization: nano alloy germanium is provided with large holes, has higher deodorizing ability and can repeatedly adsorb and decompose odor; (4) good air permeability, refreshing and comfort.

Description

technical field [0001] The invention relates to a functional nylon fiber, in particular to a nylon filament added with alloy germanium, which belongs to the field of chemical fibers. Background technique [0002] Nylon fiber is the Chinese name of synthetic fiber nylon. The translated name is also called "nylon" and "nylon". The scientific name is polyamide fiber, which is polyamide fiber. Since Jinzhou Chemical Fiber Factory is the first factory to synthesize polyamide fiber in my country, it is named "Nylon". It is the earliest synthetic fiber variety in the world. It has been widely used due to its excellent performance and rich raw material resources. Strong, good wear resistance, ranking first among all fibers. Its abrasion resistance is 10 times that of cotton fiber, 10 times that of dry viscose fiber, and 140 times that of wet fiber. Therefore, its durability is excellent. Nylon fabric has excellent elasticity and elastic recovery, but it is easy to deform under s...

Claims

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Application Information

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IPC IPC(8): D01F6/90D01F1/09D01D5/10
Inventor 刘长喜
Owner HAIAN ZHONGSHAN SYNTHETIC FIBER
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