CN109183243A - A kind of processing method of garment material with health role - Google Patents
A kind of processing method of garment material with health role Download PDFInfo
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- CN109183243A CN109183243A CN201810773041.2A CN201810773041A CN109183243A CN 109183243 A CN109183243 A CN 109183243A CN 201810773041 A CN201810773041 A CN 201810773041A CN 109183243 A CN109183243 A CN 109183243A
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- D—TEXTILES; PAPER
- D03—WEAVING
- D03D—WOVEN FABRICS; METHODS OF WEAVING; LOOMS
- D03D15/00—Woven fabrics characterised by the material, structure or properties of the fibres, filaments, yarns, threads or other warp or weft elements used
- D03D15/40—Woven fabrics characterised by the material, structure or properties of the fibres, filaments, yarns, threads or other warp or weft elements used characterised by the structure of the yarns or threads
- D03D15/47—Woven fabrics characterised by the material, structure or properties of the fibres, filaments, yarns, threads or other warp or weft elements used characterised by the structure of the yarns or threads multicomponent, e.g. blended yarns or threads
-
- D—TEXTILES; PAPER
- D01—NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
- D01F—CHEMICAL FEATURES IN THE MANUFACTURE OF ARTIFICIAL FILAMENTS, THREADS, FIBRES, BRISTLES OR RIBBONS; APPARATUS SPECIALLY ADAPTED FOR THE MANUFACTURE OF CARBON FILAMENTS
- D01F1/00—General methods for the manufacture of artificial filaments or the like
- D01F1/02—Addition of substances to the spinning solution or to the melt
- D01F1/10—Other agents for modifying properties
-
- D—TEXTILES; PAPER
- D10—INDEXING SCHEME ASSOCIATED WITH SUBLASSES OF SECTION D, RELATING TO TEXTILES
- D10B—INDEXING SCHEME ASSOCIATED WITH SUBLASSES OF SECTION D, RELATING TO TEXTILES
- D10B2501/00—Wearing apparel
- D10B2501/04—Outerwear; Protective garments
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- Engineering & Computer Science (AREA)
- Textile Engineering (AREA)
- Manufacturing & Machinery (AREA)
- Chemical & Material Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
- General Chemical & Material Sciences (AREA)
- Chemical Or Physical Treatment Of Fibers (AREA)
Abstract
The invention discloses a kind of processing methods of garment material with health role, include the following steps: the preparation of (1) modified fibre, (2) warp, weft preparation, (3) starching weaving, the preparation of (4) finished fabric.Rationally, simple process specification is easy to promote and utilize for each step collocation of processing method of the present invention, the soft exquisiteness of garment material obtained, it is good with skin compatibility, and there is good ventilative, warming, rapid-curing cutback, health care characteristics, it is comprehensive good using quality, the great market competitiveness and economic benefit.
Description
Technical field
The invention belongs to garment material working process technical fields, and in particular to a kind of garment material with health role
Processing method.
Background technique
Clothes refer to the general name of clothes shoes packet toy ornament etc., refer to clothes more.Clothes are early stage human social development
Just occur, a variety of materials that can be found at one's side are made into coarse and crude " clothes " to flak jacket by men of old.The initial clothes of the mankind
It is made of animal skin, earliest " fabric " for wrapping up body is made of bast-fibre and grass etc..
Fabric of the modern society for clothes manufacture is many kinds of, but majority only has the function of warming, sun-proof etc., fresh rare
To the fabric with characteristics such as health cares, the fabric of such functional categories more lacks on the market.
Summary of the invention
The purpose of the present invention is being directed to existing problem, a kind of processing side of garment material with health role is provided
Method.
The present invention is achieved by the following technical solutions:
A kind of processing method of garment material with health role, includes the following steps:
(1) prepared by modified fibre:
The monomer crosslinked copolymerization of functional stuffing and fiber is obtained into polymer, it is spare that polymer spinning is then obtained modified fibre;
(2) warp, weft preparation:
Modified fibre made from general fibre, step (1) and carbon fiber are twisted warp and weft of the silk thread as garment material
It is spare;
(3) starching is weaved:
Starching is carried out to latitude and longitude made from step (2), then woven texture weaving is spare at cloth as required;
(4) prepared by finished fabric:
After carrying out desizing to cloth made of step (3), then is cleaned, is dyed, gets product garment material after drying and shaping.
Further, fiber monomer as described in step (1) be for synthesize acrylic fibers, vinylon, polypropylene fibre, in terylene it is any
A kind of monomeric substance;The weight ratio of the functional stuffing and fiber monomer is 1:10 ~ 12.
Further, the preparation method of the functional stuffing includes the following steps:
1) inorganic particle pre-processes:
A. nano-titanium dioxide is put into ultraviolet irradiation instrument and carries out ultraviolet irradiation processing, by nanometer two after 1 ~ 1.2h
Titanium oxide takes out spare;
B. iron tourmaline powder is put into microwave irradiation instrument and carries out microwave irradiation processing, by iron tourmaline powder after 40 ~ 45min
It takes out spare;
C. lanthana is put into plasma radiation instrument and carries out plasma radiation processing, by lanthana after 30 ~ 35min
It takes out spare;Ultraviolet light, microwave and corona treatment are used to above-mentioned three kinds of ingredients respectively, can be good at promoting inorganic particle
The activity and activity group content on surface facilitate compatible combination and mutual grafting to effective component in subsequent processing liquid
It is fixed, improve stability and using effect;
2) once-combined processing:
By step 1) operation b treated iron tourmaline powder, step 1) operation c treated lanthana according to 3 ~ 4:8 of weight ratio ~
9 are mixed, and are then put into single treatment liquid jointly, and it is 55 ~ 60 DEG C that heating, which keeps the temperature of single treatment liquid, use frequency
To be filtered after 1 ~ 1.5h of ultrasonic echography radiation treatment of 450 ~ 500kHz, finally filter residue is rinsed one time with deionized water
It is spare that compound material A is obtained afterwards;The single treatment liquid by following parts by weight material composition: 8 ~ 10 parts of corn fiber gums, 6 ~ 9 parts
Fatty alcohol polyoxyethylene ether, 1 ~ 3 part of sodium pyrophosphate, 4 ~ 6 parts of polyethylene glycol, 25 ~ 30 parts of ethyl acetate, 0.2 ~ 0.4 part of urea,
0.1 ~ 0.3 part of ammonium chloride, 0.2 ~ 0.5 part of disodium ethylene diamine tetraacetate, 180 ~ 200 parts of water;Form of small iron particles tourmaline after present treatment
Powder is effectively fixed in large-particle lanthanum oxide, forms the double-layer structure that a kind of grafting of iron tourmaline powder wraps lanthana;
3) secondary combined processing:
By compound material A made from step 1) operation a treated nano-titanium dioxide, step 2 according to weight ratio 1 ~ 1.5:7 ~ 8
It is mixed, is then put into secondary treatment liquid jointly, it is 70 ~ 74 DEG C that heating, which keeps the temperature of secondary treatment liquid, uses frequency
To be filtered after 2 ~ 3h of ultrasonic echography radiation treatment of 530 ~ 580kHz, after finally being rinsed one time with deionized water to filter residue
It is spare to obtain compound material B;The secondary treatment liquid by following parts by weight material composition: 8 ~ 12 parts of silane coupling agents, 5 ~ 8 part ten
Dialkyl benzene sulfonic acids sodium, 3 ~ 5 parts of polyvinyl alcohol, 130 ~ 150 parts of water;Nanoscale little particle nano-titanium dioxide is effective after present treatment
The outer surface for being fixed on compound material A namely iron tourmaline powder particles outer surface on, form a kind of outermost layer nano-silica
Change titanium, middle layer iron tourmaline powder, innermost layer lanthana three-decker, iron tourmaline powder not be itself sustained release bear from
Son, this does not meet the law of indestructibility of matter yet, but excites air using the weak electric field that the spontaneous polarization effect of itself generates
Middle neutral molecule ionization generates anion, is then discharged.Tourmaline powder discharges the effect of anion as time increases
Fruit is more and more weaker, leads to stablize that persistence is bad, and the filler of above-mentioned three-decker, the oxidation of innermost layer are devised to this application
Lanthanum element in lanthanum can ionization of the catalysed promoted iron tourmaline powder to neutral molecule, outermost nano-titanium dioxide promotes
The exchange of space gases near outside air and iron tourmaline powder, so that air inwardly flows into, anion flows outwardly, this cooperation
It uses so that the steady and sustained output of anion, and then ensure that the lasting of health-care efficacy;
4) it is dried:
The resulting compound material B of step 3) is put into temperature in 82 ~ 86 DEG C of drying box, to be dried to take out after 1 ~ 1.5h and being
It can.
Further, the grain diameter of nano-titanium dioxide described in step 1) operation a is 15 ~ 65nm, the purple
Power when outside line radiation treatment is 950 ~ 1000W, and the wavelength control of ultraviolet light is 260 ~ 320nm.
Further, the grain diameter of iron tourmaline powder described in step 1) operation b is 1 ~ 5 μm, the microwave spoke
Power when according to processing is 1200 ~ 1400W.
Further, the grain diameter of lanthana described in step 1) operation c is 20 ~ 25 μm, the plasma
Radiation treatment carries out radiation treatment using inert gas plasma.
Further, general fibre described in step (2) is bamboo fibre, cotton fiber, flaxen fiber, appointing in wool fiber
It anticipates one kind.
Further, the parts by weight used are corresponded in ready-made clothes fabric described in step (4) when three kinds of fiber blends
Are as follows: 35 ~ 40 parts of general fibres, 45 ~ 50 parts of modified fibres, 8 ~ 12 parts of carbon fibers.
Present invention improves over the processing and treating methods of garment material, be especially added to a kind of special modified fibre at
Point, processing specifically is modified to acrylic fibers, vinylon, polypropylene fibre or terylene with a kind of special functional stuffing ingredient, wherein function
Energy filler is to have chosen three kinds of nano-titanium dioxide, iron tourmaline powder and lanthana inorganic particle ingredients as main substance, right
It carries out composite modified processing and is made, and wherein iron tourmaline powder can discharge anion, far infrared etc., can promote improvement human body
Blood circulation, enhance human immunity, there are good health care characteristics, and in order to enhance its using effect and stability, again
Nano-titanium dioxide and lanthana has been selected to be used in compounding, wherein the rare earth lanthanum element in lanthana can be catalyzed enhancing iron
Tourmaline powder discharges the ability of anion, and a large amount of nano-titanium dioxide has absorption, commutativity well, promotes outside
Circulation between atmospheric environment and iron tourmaline powder ambient gas exchanges, and ensure that uniform, the stable release of anion, final to be made
Functional stuffing stability in use is good, anion generate burst size it is big, to the good health care effect of human body, to impart modified fibre
Tie up good healthcare function;Finally by modified fibre obtained and general fibre and carbon fiber carry out it is blended fabric is made, have
Good ventilative, warming, rapid-curing cutback, health care, softness, the characteristics such as skin is affine.
The present invention has the advantage that compared with prior art
Rationally, simple process specification is easy to promote and utilize, garment material feel obtained for each step collocation of processing method of the present invention
It is soft fine and smooth, it is good with skin compatibility, and there is good ventilative, warming, rapid-curing cutback, health care characteristics, comprehensive good using quality, pole
Have the market competitiveness and economic benefit.
Specific embodiment
Embodiment 1
A kind of processing method of garment material with health role, includes the following steps:
(1) prepared by modified fibre:
The monomer crosslinked copolymerization of functional stuffing and fiber is obtained into polymer, it is spare that polymer spinning is then obtained modified fibre;
(2) warp, weft preparation:
Modified fibre made from general fibre, step (1) and carbon fiber are twisted warp and weft of the silk thread as garment material
It is spare;
(3) starching is weaved:
Starching is carried out to latitude and longitude made from step (2), then woven texture weaving is spare at cloth as required;
(4) prepared by finished fabric:
After carrying out desizing to cloth made of step (3), then is cleaned, is dyed, gets product garment material after drying and shaping.
Further, fiber monomer as described in step (1) is the monomeric substance for synthesizing terylene;The function is filled out
The weight ratio of material and fiber monomer is 1:10.
Further, the preparation method of the functional stuffing includes the following steps:
1) inorganic particle pre-processes:
A. nano-titanium dioxide is put into ultraviolet irradiation instrument and carries out ultraviolet irradiation processing, by nanometer titanium dioxide after 1h
Titanium takes out spare;
B. iron tourmaline powder is put into progress microwave irradiation processing in microwave irradiation instrument, takes iron tourmaline powder after 40min
It is spare out;
C. lanthana is put into progress plasma radiation processing in plasma radiation instrument, takes lanthana after 30min
It is spare out;
2) once-combined processing:
By step 1) operation b treated iron tourmaline powder, step 1) operation c treated lanthana according to weight ratio 3:8 into
Row mixing, then puts into single treatment liquid jointly, and it is 55 DEG C that heating, which keeps the temperature of single treatment liquid, is with frequency
It is filtered after the ultrasonic echography radiation treatment 1h of 450kHz, obtains compound material after finally being rinsed one time with deionized water to filter residue
A is spare;The single treatment liquid by following parts by weight material composition: 8 parts of corn fiber gums, 6 parts of aliphatic alcohol polyethenoxies
Ether, 1 part of sodium pyrophosphate, 4 parts of polyethylene glycol, 25 parts of ethyl acetate, 0.2 part of urea, 0.1 part of ammonium chloride, 0.2 part of ethylenediamine tetrem
Acid disodium, 180 parts of water;
3) secondary combined processing:
Compound material A made from step 1) operation a treated nano-titanium dioxide, step 2 is mixed according to weight ratio 1:7
It closes, is then put into secondary treatment liquid jointly, it is 530kHz's with frequency that it is 70 DEG C that heating, which keeps the temperature of secondary treatment liquid,
It is filtered after ultrasonic echography radiation treatment 2h, it is spare to obtain compound material B after finally being rinsed one time with deionized water to filter residue;Institute
The secondary treatment liquid stated by following parts by weight material composition: 8 parts of silane coupling agents, 5 parts of neopelexes, 3 parts it is poly-
Vinyl alcohol, 130 parts of water;
4) it is dried:
The resulting compound material B of step 3) is put into the drying box that temperature is 82 DEG C, is taken out after being dried 1h.
Further, the grain diameter of nano-titanium dioxide described in step 1) operation a is 15 ~ 65nm, the purple
Power when outside line radiation treatment is 950W, and the wavelength control of ultraviolet light is 260 ~ 320nm.
Further, the grain diameter of iron tourmaline powder described in step 1) operation b is 1 ~ 5 μm, the microwave spoke
Power when according to processing is 1200W.
Further, the grain diameter of lanthana described in step 1) operation c is 20 ~ 25 μm, the plasma
Radiation treatment carries out radiation treatment using inert gas plasma.
Further, general fibre described in step (2) is bamboo fibre.
Further, the parts by weight used are corresponded in ready-made clothes fabric described in step (4) when three kinds of fiber blends
Are as follows: 35 parts of general fibres, 45 parts of modified fibres, 8 parts of carbon fibers.
Embodiment 2
A kind of processing method of garment material with health role, includes the following steps:
(1) prepared by modified fibre:
The monomer crosslinked copolymerization of functional stuffing and fiber is obtained into polymer, it is spare that polymer spinning is then obtained modified fibre;
(2) warp, weft preparation:
Modified fibre made from general fibre, step (1) and carbon fiber are twisted warp and weft of the silk thread as garment material
It is spare;
(3) starching is weaved:
Starching is carried out to latitude and longitude made from step (2), then woven texture weaving is spare at cloth as required;
(4) prepared by finished fabric:
After carrying out desizing to cloth made of step (3), then is cleaned, is dyed, gets product garment material after drying and shaping.
Further, fiber monomer as described in step (1) is the monomeric substance for synthesizing polypropylene fibre;The function is filled out
The weight ratio of material and fiber monomer is 1:11.
Further, the preparation method of the functional stuffing includes the following steps:
1) inorganic particle pre-processes:
A. nano-titanium dioxide is put into ultraviolet irradiation instrument and carries out ultraviolet irradiation processing, by nano-silica after 1.1h
It is spare to change titanium taking-up;
B. iron tourmaline powder is put into progress microwave irradiation processing in microwave irradiation instrument, takes iron tourmaline powder after 43min
It is spare out;
C. lanthana is put into progress plasma radiation processing in plasma radiation instrument, takes lanthana after 32min
It is spare out;
2) once-combined processing:
By step 1) operation b treated iron tourmaline powder, step 1) operation c treated lanthana according to weight ratio 3.5:
8.6 are mixed, and are then put into single treatment liquid jointly, and it is 57 DEG C that heating, which keeps the temperature of single treatment liquid, use frequency
To be filtered after the ultrasonic echography radiation treatment 1.3h of 480kHz, must be answered after finally being rinsed one time with deionized water to filter residue
It is spare to close material A;The single treatment liquid by following parts by weight material composition: 9 parts of corn fiber gums, 8 parts of fatty alcohol polyoxies
Vinethene, 2 parts of sodium pyrophosphates, 5 parts of polyethylene glycol, 28 parts of ethyl acetate, 0.3 part of urea, 0.2 part of ammonium chloride, 0.4 part of ethylenediamine
Tetraacethyl disodium, 190 parts of water;
3) secondary combined processing:
By compound material A made from step 1) operation a treated nano-titanium dioxide, step 2 according to weight ratio 1.2:7.5 into
Row mixing, then puts into secondary treatment liquid jointly, and it is 72 DEG C that heating, which keeps the temperature of secondary treatment liquid, is with frequency
It is filtered, is obtained after finally being rinsed one time with deionized water to filter residue compound after the ultrasonic echography radiation treatment 2.5h of 560kHz
Expect that B is spare;The secondary treatment liquid by following parts by weight material composition: 10 parts of silane coupling agents, 7 parts of detergent alkylate sulphurs
Sour sodium, 4 parts of polyvinyl alcohol, 140 parts of water;
4) it is dried:
The resulting compound material B of step 3) is put into the drying box that temperature is 84 DEG C, is taken out after being dried 1.3h.
Further, the grain diameter of nano-titanium dioxide described in step 1) operation a is 15 ~ 65nm, the purple
Power when outside line radiation treatment is 980W, and the wavelength control of ultraviolet light is 260 ~ 320nm.
Further, the grain diameter of iron tourmaline powder described in step 1) operation b is 1 ~ 5 μm, the microwave spoke
Power when according to processing is 1300W.
Further, the grain diameter of lanthana described in step 1) operation c is 20 ~ 25 μm, the plasma
Radiation treatment carries out radiation treatment using inert gas plasma.
Further, general fibre described in step (2) is cotton fiber.
Further, the parts by weight used are corresponded in ready-made clothes fabric described in step (4) when three kinds of fiber blends
Are as follows: 38 parts of general fibres, 47 parts of modified fibres, 10 parts of carbon fibers.
Embodiment 3
A kind of processing method of garment material with health role, includes the following steps:
(1) prepared by modified fibre:
The monomer crosslinked copolymerization of functional stuffing and fiber is obtained into polymer, it is spare that polymer spinning is then obtained modified fibre;
(2) warp, weft preparation:
Modified fibre made from general fibre, step (1) and carbon fiber are twisted warp and weft of the silk thread as garment material
It is spare;
(3) starching is weaved:
Starching is carried out to latitude and longitude made from step (2), then woven texture weaving is spare at cloth as required;
(4) prepared by finished fabric:
After carrying out desizing to cloth made of step (3), then is cleaned, is dyed, gets product garment material after drying and shaping.
Further, fiber monomer as described in step (1) is the monomeric substance for synthesizing acrylic fibers;The function is filled out
The weight ratio of material and fiber monomer is 1:12.
Further, the preparation method of the functional stuffing includes the following steps:
1) inorganic particle pre-processes:
A. nano-titanium dioxide is put into ultraviolet irradiation instrument and carries out ultraviolet irradiation processing, by nano-silica after 1.2h
It is spare to change titanium taking-up;
B. iron tourmaline powder is put into progress microwave irradiation processing in microwave irradiation instrument, takes iron tourmaline powder after 45min
It is spare out;
C. lanthana is put into progress plasma radiation processing in plasma radiation instrument, takes lanthana after 35min
It is spare out;
2) once-combined processing:
By step 1) operation b treated iron tourmaline powder, step 1) operation c treated lanthana according to weight ratio 4:9 into
Row mixing, then puts into single treatment liquid jointly, and it is 60 DEG C that heating, which keeps the temperature of single treatment liquid, is with frequency
It is filtered, is obtained after finally being rinsed one time with deionized water to filter residue compound after the ultrasonic echography radiation treatment 1.5h of 500kHz
Expect that A is spare;The single treatment liquid by following parts by weight material composition: 10 parts of corn fiber gums, 9 parts of fatty alcohol polyoxy second
Alkene ether, 3 parts of sodium pyrophosphates, 6 parts of polyethylene glycol, 30 parts of ethyl acetate, 0.4 part of urea, 0.3 part of ammonium chloride, 0.5 part of ethylenediamine tetraacetic
Acetic acid disodium, 200 parts of water;
3) secondary combined processing:
Compound material A made from step 1) operation a treated nano-titanium dioxide, step 2 is carried out according to weight ratio 1.5:8
Mixing, then puts into secondary treatment liquid jointly, and it is 580kHz with frequency that it is 74 DEG C that heating, which keeps the temperature of secondary treatment liquid,
Ultrasonic echography radiation treatment 3h after be filtered, finally with deionized water to filter residue rinse one time after compound material B it is spare;
The secondary treatment liquid by following parts by weight material composition: 12 parts of silane coupling agents, 8 parts of neopelexes, 5 parts
Polyvinyl alcohol, 150 parts of water;
4) it is dried:
The resulting compound material B of step 3) is put into the drying box that temperature is 86 DEG C, is taken out after being dried 1.5h.
Further, the grain diameter of nano-titanium dioxide described in step 1) operation a is 15 ~ 65nm, the purple
Power when outside line radiation treatment is 1000W, and the wavelength control of ultraviolet light is 260 ~ 320nm.
Further, the grain diameter of iron tourmaline powder described in step 1) operation b is 1 ~ 5 μm, the microwave spoke
Power when according to processing is 1400W.
Further, the grain diameter of lanthana described in step 1) operation c is 20 ~ 25 μm, the plasma
Radiation treatment carries out radiation treatment using inert gas plasma.
Further, general fibre described in step (2) is flaxen fiber.
Further, the parts by weight used are corresponded in ready-made clothes fabric described in step (4) when three kinds of fiber blends
Are as follows: 40 parts of general fibres, 50 parts of modified fibres, 12 parts of carbon fibers.
Comparative example 1
This comparative example 1 compared with Example 2, in the preparation of functional stuffing, eliminate nano-titanium dioxide ingredient and after
Continue corresponding processing operation, method and step in addition to this is all the same.
Comparative example 2
This comparative example 2 compared with Example 2, in the preparation of functional stuffing, eliminates lanthana ingredient and subsequent correspondence
Processing operation, method and step in addition to this is all the same.
Comparative example 3
This comparative example 3 compared with Example 2, step (1) modified fibre preparation in, with etc. the commercially available ferroelectricity gas of mass parts
Mountain flour replaces functional stuffing ingredient, and method and step in addition to this is all the same.
In order to compare effect of the present invention, to above-described embodiment 2, comparative example 1, comparative example 2, comparative example 3
Corresponding garment material obtained is tested for the property, and specific correlation data is as shown in table 1 below:
Table 1
Note: the instrument that the measurement of anion value described in upper table 1 uses is the manufacture of Japanese COM-SYSTEM INC Co., Ltd.
Ore anionic textiles instrument, model COM-3010pro;Experiment concrete operations are: the corresponding garment material of each group is first cut
Be the sample of 30mm × 30mm at length and width, be then respectively piled into height be 5mm cuboid it is spare, then on cuboid
An anionic textiles are arranged at the surface 2cm of surface center to pop one's head in, for detecting the anion concentration of position herein, with table
The anion for levying garment material generates ability (anion concentration is extremely low in the air of experimental situation ignores);It is described bear from
What subvalue A was indicated is to test the average value that anion concentration is detected in first day, carries out one-time detection every 2h, is then averaged
Value;What the anion value B was indicated is to test the average value that anion concentration is detected in third day, and detection method is same as above;Institute
What the anion value C stated was indicated is to test the average value that anion concentration is detected in the 7th day, and detection method is same as above;Described is negative
What ion value D was indicated is to test the average value that anion concentration is detected in the 30th day, and detection method is same as above.
The garment material that the method for the present invention is processed into it can be seen from upper table 1 can stablize, lasting release anion,
And yield is larger, has good health care using effect.
Claims (8)
1. a kind of processing method of garment material with health role, which comprises the steps of:
(1) prepared by modified fibre:
The monomer crosslinked copolymerization of functional stuffing and fiber is obtained into polymer, it is spare that polymer spinning is then obtained modified fibre;
(2) warp, weft preparation:
Modified fibre made from general fibre, step (1) and carbon fiber are twisted warp and weft of the silk thread as garment material
It is spare;
(3) starching is weaved:
Starching is carried out to latitude and longitude made from step (2), then woven texture weaving is spare at cloth as required;
(4) prepared by finished fabric:
After carrying out desizing to cloth made of step (3), then is cleaned, is dyed, gets product garment material after drying and shaping.
2. the processing method of one kind according to claim 1 garment material with health role, which is characterized in that step
(1) fiber monomer described in is the monomeric substance for synthesizing acrylic fibers, vinylon, polypropylene fibre, any one in terylene;Described
The weight ratio of functional stuffing and fiber monomer is 1:10 ~ 12.
3. the processing method of one kind according to claim 1 or 2 garment material with health role, which is characterized in that
The preparation method of the functional stuffing includes the following steps:
1) inorganic particle pre-processes:
A. nano-titanium dioxide is put into ultraviolet irradiation instrument and carries out ultraviolet irradiation processing, by nanometer two after 1 ~ 1.2h
Titanium oxide takes out spare;
B. iron tourmaline powder is put into microwave irradiation instrument and carries out microwave irradiation processing, by iron tourmaline powder after 40 ~ 45min
It takes out spare;
C. lanthana is put into plasma radiation instrument and carries out plasma radiation processing, by lanthana after 30 ~ 35min
It takes out spare;
2) once-combined processing:
By step 1) operation b treated iron tourmaline powder, step 1) operation c treated lanthana according to 3 ~ 4:8 of weight ratio ~
9 are mixed, and are then put into single treatment liquid jointly, and it is 55 ~ 60 DEG C that heating, which keeps the temperature of single treatment liquid, use frequency
To be filtered after 1 ~ 1.5h of ultrasonic echography radiation treatment of 450 ~ 500kHz, finally filter residue is rinsed one time with deionized water
It is spare that compound material A is obtained afterwards;The single treatment liquid by following parts by weight material composition: 8 ~ 10 parts of corn fiber gums, 6 ~ 9 parts
Fatty alcohol polyoxyethylene ether, 1 ~ 3 part of sodium pyrophosphate, 4 ~ 6 parts of polyethylene glycol, 25 ~ 30 parts of ethyl acetate, 0.2 ~ 0.4 part of urea,
0.1 ~ 0.3 part of ammonium chloride, 0.2 ~ 0.5 part of disodium ethylene diamine tetraacetate, 180 ~ 200 parts of water;
3) secondary combined processing:
By compound material A made from step 1) operation a treated nano-titanium dioxide, step 2 according to weight ratio 1 ~ 1.5:7 ~ 8
It is mixed, is then put into secondary treatment liquid jointly, it is 70 ~ 74 DEG C that heating, which keeps the temperature of secondary treatment liquid, uses frequency
To be filtered after 2 ~ 3h of ultrasonic echography radiation treatment of 530 ~ 580kHz, after finally being rinsed one time with deionized water to filter residue
It is spare to obtain compound material B;The secondary treatment liquid by following parts by weight material composition: 8 ~ 12 parts of silane coupling agents, 5 ~ 8 part ten
Dialkyl benzene sulfonic acids sodium, 3 ~ 5 parts of polyvinyl alcohol, 130 ~ 150 parts of water;
4) it is dried:
The resulting compound material B of step 3) is put into temperature in 82 ~ 86 DEG C of drying box, to be dried to take out after 1 ~ 1.5h and being
It can.
4. the processing method of one kind according to claim 3 garment material with health role, which is characterized in that step
1) grain diameter for operating nano-titanium dioxide described in a is 15 ~ 65nm, and the power when ultraviolet irradiation is handled is
950 ~ 1000W, the wavelength control of ultraviolet light are 260 ~ 320nm.
5. the processing method of one kind according to claim 3 garment material with health role, which is characterized in that step
1) grain diameter for operating iron tourmaline powder described in b is 1 ~ 5 μm, power when the described microwave irradiation processing is 1200 ~
1400W。
6. the processing method of one kind according to claim 3 garment material with health role, which is characterized in that step
1) grain diameter for operating lanthana described in c is 20 ~ 25 μm, and the plasma radiation is handled using indifferent gas
Bulk plasmon carries out radiation treatment.
7. the processing method of one kind according to claim 1 garment material with health role, which is characterized in that step
(2) general fibre described in is bamboo fibre, cotton fiber, flaxen fiber, any one in wool fiber.
8. the processing method of one kind according to claim 1 garment material with health role, which is characterized in that step
(4) the corresponding parts by weight used when three kinds of fiber blends in the ready-made clothes fabric described in are as follows: 35 ~ 40 parts of general fibres, 45 ~
50 parts of modified fibres, 8 ~ 12 parts of carbon fibers.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201810773041.2A CN109183243A (en) | 2018-07-14 | 2018-07-14 | A kind of processing method of garment material with health role |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201810773041.2A CN109183243A (en) | 2018-07-14 | 2018-07-14 | A kind of processing method of garment material with health role |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN111270510A (en) * | 2020-03-13 | 2020-06-12 | 福建省立东信科技发展有限公司 | Preparation method of monocrystalline silicon applied to far infrared health care textile material |
WO2021007943A1 (en) * | 2019-07-18 | 2021-01-21 | 星宇安防科技股份有限公司 | Polyethylene fiber having ultrahigh anti-cutting performance and ultrahigh molecular weight and preparation method therefor |
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2018
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
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WO2021007943A1 (en) * | 2019-07-18 | 2021-01-21 | 星宇安防科技股份有限公司 | Polyethylene fiber having ultrahigh anti-cutting performance and ultrahigh molecular weight and preparation method therefor |
US12116702B2 (en) | 2019-07-18 | 2024-10-15 | Xingyu Safety Protection Technology Co., Ltd | Ultra-high molecular weight polyethylene fiber with ultra-high cut resistance and preparation method thereof |
CN111270510A (en) * | 2020-03-13 | 2020-06-12 | 福建省立东信科技发展有限公司 | Preparation method of monocrystalline silicon applied to far infrared health care textile material |
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Application publication date: 20190111 |