CN104963204A - Processing method of radiation protection garment fabric - Google Patents

Processing method of radiation protection garment fabric Download PDF

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Publication number
CN104963204A
CN104963204A CN201510379107.6A CN201510379107A CN104963204A CN 104963204 A CN104963204 A CN 104963204A CN 201510379107 A CN201510379107 A CN 201510379107A CN 104963204 A CN104963204 A CN 104963204A
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parts
fabric
cloth
temperature
minute
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CN201510379107.6A
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Chinese (zh)
Inventor
洪朝坑
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ANHUI DONGJIN GARMENT Co Ltd
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ANHUI DONGJIN GARMENT Co Ltd
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Priority to CN201510379107.6A priority Critical patent/CN104963204A/en
Publication of CN104963204A publication Critical patent/CN104963204A/en
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Abstract

The invention relates to a processing method of a radiation protection garment fabric. The processing method comprises the following steps: (1) selecting polyester plastics as a main raw material, and taking degreased cotton fibers as an auxiliary material; (2) crystallizing and drying the main raw material; (3) changing the main raw material from solid state to liquid state under the high temperature of 300 DEG C, and filtering by a filter; (4) further uniformly mixing filtered melt mass; spraying out the fused mass by virtue of a spinning assembly; winding spun filament bundles to form a drum, and then drawing the drum into the polyester fiber filaments; (5) blending the polyester fiber filaments and degreased cotton fibers to form a fabric, baking the prepared fabric for 30 to 40 minutes at the low temperature environment of 38 to 42 DEG C; (6) spraying natural antibacterial arrangement agent on two sides of the baked fabric; (7) sending the fabric into the drying device; (8) spraying radiation protection latex onto two sides of the obtained fabric in the step (7); sending the obtained fabric in the step (8) into the drying device; (10) shaping and cutting the fabric obtained in the step (9) to form the garment fabric.

Description

The processing method of anti-radiation garment fabric
Technical field:
The present invention relates to garment material technical field, be specifically related to a kind of processing method of anti-radiation garment fabric.
Background technology:
Along with the raising of living standard, quality of life, people propose various functional requirement to textiles, clothes.Functional fibre and function textile represent material, chemical industry, the fibrous material of weaving and association area Sci-Tech Level and textile product, is one of scientific worker's focus in the fields such as fiber, weaving, dyeing and finishing, clothes, fine chemistry industry.Development functionality textiles, integrates comfortable, lies fallow, keeps healthy, and this has become the trend of world today's textiles development.From the latter stage nineties, Study and Development comprises the multi items functional fibres such as fire-retardant, fragrant, anion, antibacterial, uvioresistant, warming, antistatic, accumulation of heat, intelligent air condition fiber, and the exploitation of anti-bacteria health clothes is an important content.
Polyester fiber is the fiber species that in synthetic fiber, output is maximum, purposes is the widest, and trade name is terylene, and its brute force, ABRASION RESISTANCE, resilience and DIMENSIONAL STABILITY all better can meet the needs of various final use.But polyester fiber is a kind of typical hydrophobic fibre, and hydroscopicity only has 0.4%, and as skintight suit material, its snugness of fit is very poor, especially its perspire difficulty when perspiring, to the sensation of the sultry discomfort of people.Meanwhile, polyester fiber hygroscopicity is very poor, also cheats to weave and brings series of problems, and as easily gathered electrostatic, easily inhaling dust, wipe oil stain is difficult.By modification, utilize polyester fiber to develop radiation proof, anti-bacteria health clothes and there is positive meaning.
Summary of the invention:
Technical problem to be solved by this invention is to provide a kind of processing method of easy to implement the method, anti-radiation garment fabric that cost is low.
Technical problem to be solved by this invention adopts following technical scheme to realize:
A processing method for anti-radiation garment fabric, step is as follows:
1) select polyester plastics to be main material, then coordinate degreasing cotton fiber; Wherein the weight ratio of main material and nanoscale auxiliary agent is 100:25;
2) carry out crystallizing and drying to main material, object is the moisture removed in raw material and the softening point improving raw material; Adopt dehumidification dry air to carry out drying, improve drying effect;
3) main material is become liquid state from solid-state under the high temperature of 300 DEG C, through high pressure screw extruder, melt is delivered to filter and filter;
4) melt after filtration is mixed further, make its viscosity consistent, strengthen spinnability; Then through filament spinning component, melt is sprayed (filament spinning component can adopt different size, different pore size and profile spinneret according to demand); Again the tow that spinning sprays is wound into cylinder, then pulls into polyester fiber silk;
5) by polyester fiber silk and degreasing cotton fiber blending, adopt conventional method to be prepared into cloth, by the cloth low-temperature bake 30-40 minute under 38-42 DEG C of environment prepared, then take out that to naturally cool to normal temperature stand-by;
6) in step 5) in two surface sprinkling natural antibacterial finishing agents of cloth after baking, fountain height is 60g/m 2;
7) by step 6) in cloth send into drying plant, under 60 DEG C of-65 DEG C of environment, continuously baking 15-25 minute;
8) by step 7) in the cloth two sides spraying radiation proof latex that obtains, quantity for spray is 0.25kg/m 2;
9) by step 8) in the cloth that obtains send into drying plant, the temperature of drying plant adopts the temperature control method of 3 sections of warm areas to carry out, and the temperature of the first humidity province is incremented to 60 DEG C gradually from 55 DEG C, and time controling is at 10-20 minute; The temperature of the second humidity province is decremented to 50 DEG C gradually from 60 DEG C, and time controling is at 40-50 minute; The temperature of the 3rd humidity province is incremented to 76 DEG C gradually from 50 DEG C, and time controling is at 20-50 minute;
10) to step 9) in the cloth that obtains carry out shaping cutting and obtain garment material.Be made into various model, effectively can prevent radiation.
The preparation method of above-mentioned natural antibacterial finishing agent is as follows:
1. tarragon 100 parts, 10 parts, purple potato leaf, 5 parts, ginger, Jasmine 5 parts, cornstarch 5 parts, water-soluble resin 5 parts, black tea 5 parts, polygala root 5 parts, neem bark 2 parts, chrysanthemum 5 parts, selfheal 5 parts, dried peppermint leaf 10 parts, lily 5 parts, hare's-lettuce 5 parts, fructus viticis 5 parts, paniculate swallowwort 5 parts, caulis piperis futokadsurae 5 parts, lycopodium calvatum 5 parts, purslane 5 parts, the bark of official magnolia 5 parts, Asian puccoon 5 parts, pumpkin seeds 5 parts, camphor 5 parts is taken by weight;
2. by water extraction after tarragon, purple potato leaf, ginger, Jasmine, black tea, polygala root, neem bark, chrysanthemum, selfheal, dried peppermint leaf, lily, hare's-lettuce, fructus viticis, paniculate swallowwort, caulis piperis futokadsurae, lycopodium calvatum, purslane, the bark of official magnolia, Asian puccoon, pumpkin seeds and camphor mixing, extract is collected;
3. cornstarch and water-soluble resin are joined in extract, heat to 80 DEG C and stir, obtain natural antibacterial finishing agent;
Above-mentioned radiation proof latex is made up of the component of following parts by weight: natural emulsion 100 parts, dioctyl phthalate 5 parts, water-soluble resin 10 parts, Graphene 2 parts, zinc stearate 2 parts, 2 parts, antioxidant, nano titanium oxide 2 parts, 5 parts, nanoscale haydite powder, antimony oxide 1 part, iron oxide 1 part, electronic-grade silicon micro mist 5 parts, shitosan 1 part, macrogol 2 parts, nano boron carbide 2 parts.
Anti-radiation face fabric of the present invention (finished product grey cloth), is suitable for human body and wears next to the skin.There is radioresistance, antistatic, antibiotic effect.Under the effect of human body temperature, there is excellent health functions to skin.The present invention, to human body not only radiation proof but also environmental protection, is both organically blending.Dress is nice and cool, and comfortable, having certain physiotherapy and bacteriostasis to eczema, dermatitis, pruitus, is that the clothes decoration that scientific and technological content is higher is suitable for fabric.
The invention has the beneficial effects as follows: the present invention has the advantage of polyester fiber clothes, there is radioresistance, antibacterial functions simultaneously, safe and effective, there is multiple " green health " function, and to human body, environment, nontoxic, harmless, pollution-free, meet the requirement of Green Textiles.
Detailed description of the invention:
The technological means realized to make the present invention, creation characteristic, reaching object and effect is easy to understand, below in conjunction with specific embodiment, setting forth the present invention further.
Embodiment 1
A processing method for anti-radiation garment fabric, step is as follows:
1) select polyester plastics to be main material, then coordinate degreasing cotton fiber; Wherein the weight ratio of main material and nanoscale auxiliary agent is 100:25;
2) carry out crystallizing and drying to main material, object is the moisture removed in raw material and the softening point improving raw material; Adopt dehumidification dry air to carry out drying, improve drying effect;
3) main material is become liquid state from solid-state under the high temperature of 300 DEG C, through high pressure screw extruder, melt is delivered to filter and filter;
4) melt after filtration is mixed further, make its viscosity consistent, strengthen spinnability; Then through filament spinning component, melt is sprayed (filament spinning component can adopt different size, different pore size and profile spinneret according to demand); Again the tow that spinning sprays is wound into cylinder, then pulls into polyester fiber silk;
5) by polyester fiber silk and degreasing cotton fiber blending, adopt conventional method to be prepared into cloth, by the cloth low-temperature bake 30-40 minute under 38-42 DEG C of environment prepared, then take out that to naturally cool to normal temperature stand-by;
6) in step 5) in two surface sprinkling natural antibacterial finishing agents of cloth after baking, fountain height is 60g/m 2;
7) by step 6) in cloth send into drying plant, under 60 DEG C of-65 DEG C of environment, continuously baking 15-25 minute;
8) by step 7) in the cloth two sides spraying radiation proof latex that obtains, quantity for spray is 0.25kg/m 2;
9) by step 8) in the cloth that obtains send into drying plant, the temperature of drying plant adopts the temperature control method of 3 sections of warm areas to carry out, and the temperature of the first humidity province is incremented to 60 DEG C gradually from 55 DEG C, and time controling is at 10-20 minute; The temperature of the second humidity province is decremented to 50 DEG C gradually from 60 DEG C, and time controling is at 40-50 minute; The temperature of the 3rd humidity province is incremented to 76 DEG C gradually from 50 DEG C, and time controling is at 20-50 minute;
10) to step 9) in the cloth that obtains carry out shaping cutting and obtain garment material.Be made into various model, effectively can prevent radiation.
The preparation method of above-mentioned natural antibacterial finishing agent is as follows:
1. tarragon 100 parts, 10 parts, purple potato leaf, 5 parts, ginger, Jasmine 5 parts, cornstarch 5 parts, water-soluble resin 5 parts, black tea 5 parts, polygala root 5 parts, neem bark 2 parts, chrysanthemum 5 parts, selfheal 5 parts, dried peppermint leaf 10 parts, lily 5 parts, hare's-lettuce 5 parts, fructus viticis 5 parts, paniculate swallowwort 5 parts, caulis piperis futokadsurae 5 parts, lycopodium calvatum 5 parts, purslane 5 parts, the bark of official magnolia 5 parts, Asian puccoon 5 parts, pumpkin seeds 5 parts, camphor 5 parts is taken by weight;
2. by water extraction after tarragon, purple potato leaf, ginger, Jasmine, black tea, polygala root, neem bark, chrysanthemum, selfheal, dried peppermint leaf, lily, hare's-lettuce, fructus viticis, paniculate swallowwort, caulis piperis futokadsurae, lycopodium calvatum, purslane, the bark of official magnolia, Asian puccoon, pumpkin seeds and camphor mixing, extract is collected;
3. cornstarch and water-soluble resin are joined in extract, heat to 80 DEG C and stir, obtain natural antibacterial finishing agent;
Above-mentioned radiation proof latex is made up of the component of following parts by weight: natural emulsion 100 parts, dioctyl phthalate 5 parts, water-soluble resin 10 parts, Graphene 2 parts, zinc stearate 2 parts, 2 parts, antioxidant, nano titanium oxide 2 parts, 5 parts, nanoscale haydite powder, antimony oxide 1 part, iron oxide 1 part, electronic-grade silicon micro mist 5 parts, shitosan 1 part, macrogol 2 parts, nano boron carbide 2 parts; During preparation, combinations thereof is stirred in mixing plant all with;
Anti-radiation face fabric of the present invention (finished product grey cloth), is suitable for human body and wears next to the skin.There is radioresistance, antistatic, antibiotic effect.Under the effect of human body temperature, there is excellent health functions to skin.The present invention, to human body not only radiation proof but also environmental protection, is both organically blending.Dress is nice and cool, and comfortable, having certain physiotherapy and bacteriostasis to eczema, dermatitis, pruitus, is that the clothes decoration that scientific and technological content is higher is suitable for fabric.
More than show and describe general principle of the present invention and principal character and advantage of the present invention.The technical staff of the industry should understand; the present invention is not restricted to the described embodiments; what describe in above-described embodiment and description just illustrates principle of the present invention; without departing from the spirit and scope of the present invention; the present invention also has various changes and modifications, and these changes and improvements all fall in the claimed scope of the invention.Application claims protection domain is defined by appending claims and equivalent thereof.

Claims (1)

1. a processing method for anti-radiation garment fabric, is characterized in that, step is as follows:
1) select polyester plastics to be main material, then coordinate degreasing cotton fiber; Wherein the weight ratio of main material and nanoscale auxiliary agent is 100:25;
2) crystallizing and drying is carried out to main material, the softening point of the moisture in removing raw material and raising raw material; Dehumidification dry air is adopted to carry out drying;
3) main material is become liquid state from solid-state under the high temperature of 300 DEG C, through high pressure screw extruder, melt is delivered to filter and filter;
4) melt after filtration is mixed further, make its viscosity consistent, strengthen spinnability; Then through filament spinning component, melt is sprayed; Again the tow that spinning sprays is wound into cylinder, then pulls into polyester fiber silk;
5) by polyester fiber silk and degreasing cotton fiber blending, adopt conventional method to be prepared into cloth, by the cloth low-temperature bake 30-40 minute under 38-42 DEG C of environment prepared, then take out that to naturally cool to normal temperature stand-by;
6) two surface sprinkling natural antibacterial finishing agents of the cloth in step 5) after baking, fountain height is 60g/m 2;
The preparation method of above-mentioned natural antibacterial finishing agent is as follows:
1. tarragon 100 parts, 10 parts, purple potato leaf, 5 parts, ginger, Jasmine 5 parts, cornstarch 5 parts, water-soluble resin 5 parts, black tea 5 parts, polygala root 5 parts, neem bark 2 parts, chrysanthemum 5 parts, selfheal 5 parts, dried peppermint leaf 10 parts, lily 5 parts, hare's-lettuce 5 parts, fructus viticis 5 parts, paniculate swallowwort 5 parts, caulis piperis futokadsurae 5 parts, lycopodium calvatum 5 parts, purslane 5 parts, the bark of official magnolia 5 parts, Asian puccoon 5 parts, pumpkin seeds 5 parts, camphor 5 parts is taken by weight;
2. by water extraction after tarragon, purple potato leaf, ginger, Jasmine, black tea, polygala root, neem bark, chrysanthemum, selfheal, dried peppermint leaf, lily, hare's-lettuce, fructus viticis, paniculate swallowwort, caulis piperis futokadsurae, lycopodium calvatum, purslane, the bark of official magnolia, Asian puccoon, pumpkin seeds and camphor mixing, extract is collected;
3. cornstarch and water-soluble resin are joined in extract, heat to 80 DEG C and stir, obtain natural antibacterial finishing agent;
7) cloth in step 6) is sent into drying plant, under 60 DEG C of-65 DEG C of environment, baking 15-25 minute continuously;
8) the cloth two sides spraying radiation proof latex will obtained in step 7), quantity for spray is 0.25kg/m 2;
Above-mentioned radiation proof latex is made up of the component of following parts by weight: natural emulsion 100 parts, dioctyl phthalate 5 parts, water-soluble resin 10 parts, Graphene 2 parts, zinc stearate 2 parts, 2 parts, antioxidant, nano titanium oxide 2 parts, 5 parts, nanoscale haydite powder, antimony oxide 1 part, iron oxide 1 part, electronic-grade silicon micro mist 5 parts, shitosan 1 part, macrogol 2 parts, nano boron carbide 2 parts;
9) cloth obtained in step 8) is sent into drying plant, the temperature of drying plant adopts the temperature control method of 3 sections of warm areas to carry out, and the temperature of the first humidity province is incremented to 60 DEG C gradually from 55 DEG C, and time controling is at 10-20 minute; The temperature of the second humidity province is decremented to 50 DEG C gradually from 60 DEG C, and time controling is at 40-50 minute; The temperature of the 3rd humidity province is incremented to 76 DEG C gradually from 50 DEG C, and time controling is at 20-50 minute;
10) shaping cutting is carried out to the cloth obtained in step 9) and obtain garment material.
CN201510379107.6A 2015-06-29 2015-06-29 Processing method of radiation protection garment fabric Pending CN104963204A (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107495525A (en) * 2017-09-06 2017-12-22 阜南县邰氏宇崴运动器材有限公司 A kind of children's skidding crash helmet
CN107518489A (en) * 2017-09-06 2017-12-29 阜南县邰氏宇崴运动器材有限公司 A kind of skidding permeable helmet
CN107972721A (en) * 2017-11-28 2018-05-01 浙江多宝贝婴童用品有限公司 A kind of pocket foldable baby trolley
CN109808253A (en) * 2017-11-21 2019-05-28 唐山宇慈生物科技有限公司 Warming antiradiation material of the compound quick-drying of high elasticity abrasion-proof damage and preparation method thereof

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1560347A (en) * 2004-03-10 2005-01-05 王洪云 Water wash cotton for bedding and clothing and production technology thereof
CN101700143A (en) * 2009-10-23 2010-05-05 成钢 Nano-selenium anion far infrared fabric tight vest for preventing electromagnetic radiation
CN102352553A (en) * 2011-07-29 2012-02-15 吴江兰瑞特纺织品有限公司 Natural antimycotic textile containing tarragon extracts and preparation method thereof
CN102409529A (en) * 2011-07-26 2012-04-11 吴江市瑞丰织造有限公司 Uvioresistant textile finishing agent
CN103122576A (en) * 2011-11-18 2013-05-29 大连得达科技发展有限公司 Fiber material with antibacterial anti-radiation function

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1560347A (en) * 2004-03-10 2005-01-05 王洪云 Water wash cotton for bedding and clothing and production technology thereof
CN101700143A (en) * 2009-10-23 2010-05-05 成钢 Nano-selenium anion far infrared fabric tight vest for preventing electromagnetic radiation
CN102409529A (en) * 2011-07-26 2012-04-11 吴江市瑞丰织造有限公司 Uvioresistant textile finishing agent
CN102352553A (en) * 2011-07-29 2012-02-15 吴江兰瑞特纺织品有限公司 Natural antimycotic textile containing tarragon extracts and preparation method thereof
CN103122576A (en) * 2011-11-18 2013-05-29 大连得达科技发展有限公司 Fiber material with antibacterial anti-radiation function

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107495525A (en) * 2017-09-06 2017-12-22 阜南县邰氏宇崴运动器材有限公司 A kind of children's skidding crash helmet
CN107518489A (en) * 2017-09-06 2017-12-29 阜南县邰氏宇崴运动器材有限公司 A kind of skidding permeable helmet
CN109808253A (en) * 2017-11-21 2019-05-28 唐山宇慈生物科技有限公司 Warming antiradiation material of the compound quick-drying of high elasticity abrasion-proof damage and preparation method thereof
CN107972721A (en) * 2017-11-28 2018-05-01 浙江多宝贝婴童用品有限公司 A kind of pocket foldable baby trolley

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