Preparation method for far infrared silk fibers and application thereof

A silk fiber and far-infrared technology, which is applied in the field of far-infrared silk fiber preparation, can solve the problem of inability to play a role in health care and physiotherapy, the combination degree of far-infrared materials and silk fibers has not been further enhanced, and the heating and heat preservation effect of silk cotton products cannot be effectively improved. Problems, achieve the effect of overcoming dispersion uniformity, improving heating and heat preservation effect, and enhancing cohesive force

Inactive Publication Date: 2015-09-02
浙江神神丝绸家纺有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Since the combination degree of far-infrared materials and silk fibers is not further enhanced, the heating and heat preservation effect of silk floss products cannot be effectively improved, and a stronger health care and physical therapy effect cannot be exerted.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0020] Mulberry silkworm cocoons are sprayed and infiltrated with warm soup, pumped by motor, and the cotton sheets are cooked. Put the cooked cotton sheets into an alkali softener for high-temperature cooking and refining. The refining temperature is 100°C, and the refining time is 1 hour. After rinsing and acid-base neutralization, high-elastic silk fibers are obtained. Configure far-infrared composite finishing solution, in which the dosage of nanometer far-infrared generator FRN396 is 20g / L (based on the amount of far-infrared composite finishing solution), the dosage of self-crosslinking adhesive SP is 15g / L, and the dosage of nanometer far-infrared dispersion SK The dosage of -814 is 15g / L, the dosage of superabsorbent softener SF8811 is 15g / L, and the balance is water. The high-elastic silk fiber is impregnated with the far-infrared composite finishing solution, wherein the bath ratio is 1:14, the bath temperature is 20°C, and the immersion time is 30 minutes. The impr...

Embodiment 2

[0022] Silkworm cocoons are sprayed and infiltrated with warm water, cotton is pumped mechanically, and the cotton slices are cooked. Put the cooked cotton slices into an alkali softener for high-temperature cooking and refining. The refining temperature is 110°C, and the refining time is 0.8 hours. After rinsing and acid-base neutralization, high-elastic silk fibers are obtained. Configure far-infrared composite finishing solution, in which the dosage of nanometer far-infrared generator FRN396 is 30g / L (based on the dosage of far-infrared composite finishing solution), the dosage of self-crosslinking adhesive SP is 20g / L, and the dosage of nanometer far-infrared dispersion liquid SK The dosage of -814 is 18g / L, the dosage of superabsorbent softener SF8811 is 20g / L, and the balance is water. The high-elastic silk fiber is impregnated with far-infrared composite finishing solution, the bath ratio is 1:15, the bath temperature is 30°C, and the immersion time is 25 minutes. The ...

Embodiment 3

[0024] Silkworm cocoons are sprayed and infiltrated with warm water, cotton is pumped mechanically, and the cotton slices are cooked. Put the cooked cotton slices into an alkali softener for high-temperature cooking and refining. The refining temperature is 110°C, and the refining time is 0.8 hours. After rinsing and acid-base neutralization, high-elastic silk fibers are obtained. Configure far-infrared composite finishing solution, in which the dosage of nanometer far-infrared generator FRN396 is 30g / L (based on the dosage of far-infrared composite finishing solution), the dosage of self-crosslinking adhesive SP is 20g / L, and the dosage of nanometer far-infrared dispersion liquid SK The dosage of -814 is 20g / L, the dosage of superabsorbent softener SF8811 is 18g / L, and the balance is water. The high-elastic silk fiber is impregnated with the far-infrared composite finishing solution, the bath ratio is 1:15, the bath temperature is 30°C, and the immersion time is 30 minutes. ...

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Abstract

The invention provides a preparation method for far infrared silk fibers, which overcomes the defects in the prior art so as to prepare far infrared silk fibers of high health-care and physiotherapy effects and the products thereof. The preparation method for far infrared silk fibers comprises the steps of preparing highly-elastic silk fibers, subjecting the highly-elastic silk fibers to the dipping treatment in the far infrared composite finishing liquor and then subjecting the highly-elastic silk fibers to the high-temperature baking treatment. According to the invention, the combination degree of the far infrared material with fibers is improved, and the normal thermal emittance of silk fibers is enhanced greatly. Therefore, the heating effect of far infrared silk fibers is improved. Based on the above strength of interaction, the effects of expanding blood capillaries, promoting the blood circulation, strengthening the metabolism of all tissues, enhancing the regeneration capability of tissues, improving the immune capability of human bodies, and improving and preventing various diseases caused by blood circulation disturbance and microcirculation disturbance are realized. As a result, the medical-care effect is realized.

Description

technical field [0001] The invention relates to a production process of silk, in particular to a preparation method and application of far-infrared silk fiber. Background technique [0002] Mulberry silk is a kind of animal protein fiber, which is rich in 18 kinds of essential amino acids. It has the advantages of softness, smoothness, warmth, breathability, moisture removal, high elasticity, and fluffy. It is called the "fiber queen". Far-infrared mulberry silk fiber is a new type of fiber made by adding nano-scale far-infrared materials into silk fiber through special technology-far-infrared silk fiber. It can emit far-infrared rays with a wavelength of 4-14 microns that are most beneficial to organisms, and the far-infrared emission rate is greater than 85%. It can effectively absorb the energy of the surrounding environment and the human body itself, and emit it back to the human body to produce non-thermal biological effects of "radiation", "penetration" and "resonance...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): D06M15/55D06C7/00D06M101/10
Inventor 潘新平
Owner 浙江神神丝绸家纺有限公司
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