CN105671734A - Composite fiber fabric and preparation method thereof - Google Patents

Composite fiber fabric and preparation method thereof Download PDF

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Publication number
CN105671734A
CN105671734A CN201610107496.1A CN201610107496A CN105671734A CN 105671734 A CN105671734 A CN 105671734A CN 201610107496 A CN201610107496 A CN 201610107496A CN 105671734 A CN105671734 A CN 105671734A
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CN
China
Prior art keywords
stainless steel
yarn
mixed
fiber
steel fibre
Prior art date
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Pending
Application number
CN201610107496.1A
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Chinese (zh)
Inventor
陈文龙
陈自辉
陈博
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ningbo Hi-Tech Zone Hongbang Information Consulting Co Ltd
Original Assignee
Ningbo Hi-Tech Zone Hongbang Information Consulting Co Ltd
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Filing date
Publication date
Application filed by Ningbo Hi-Tech Zone Hongbang Information Consulting Co Ltd filed Critical Ningbo Hi-Tech Zone Hongbang Information Consulting Co Ltd
Priority to CN201610107496.1A priority Critical patent/CN105671734A/en
Publication of CN105671734A publication Critical patent/CN105671734A/en
Pending legal-status Critical Current

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Classifications

    • DTEXTILES; PAPER
    • D03WEAVING
    • D03DWOVEN FABRICS; METHODS OF WEAVING; LOOMS
    • D03D15/00Woven fabrics characterised by the material, structure or properties of the fibres, filaments, yarns, threads or other warp or weft elements used
    • D03D15/40Woven 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
    • D03D15/47Woven 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
    • DTEXTILES; PAPER
    • D03WEAVING
    • D03DWOVEN FABRICS; METHODS OF WEAVING; LOOMS
    • D03D15/00Woven fabrics characterised by the material, structure or properties of the fibres, filaments, yarns, threads or other warp or weft elements used
    • D03D15/50Woven fabrics characterised by the material, structure or properties of the fibres, filaments, yarns, threads or other warp or weft elements used characterised by the properties of the yarns or threads
    • D03D15/593Stiff materials, e.g. cane or slat
    • DTEXTILES; PAPER
    • D10INDEXING SCHEME ASSOCIATED WITH SUBLASSES OF SECTION D, RELATING TO TEXTILES
    • D10BINDEXING SCHEME ASSOCIATED WITH SUBLASSES OF SECTION D, RELATING TO TEXTILES
    • D10B2101/00Inorganic fibres
    • D10B2101/10Inorganic fibres based on non-oxides other than metals
    • D10B2101/12Carbon; Pitch
    • DTEXTILES; PAPER
    • D10INDEXING SCHEME ASSOCIATED WITH SUBLASSES OF SECTION D, RELATING TO TEXTILES
    • D10BINDEXING SCHEME ASSOCIATED WITH SUBLASSES OF SECTION D, RELATING TO TEXTILES
    • D10B2101/00Inorganic fibres
    • D10B2101/20Metallic fibres
    • DTEXTILES; PAPER
    • D10INDEXING SCHEME ASSOCIATED WITH SUBLASSES OF SECTION D, RELATING TO TEXTILES
    • D10BINDEXING SCHEME ASSOCIATED WITH SUBLASSES OF SECTION D, RELATING TO TEXTILES
    • D10B2201/00Cellulose-based fibres, e.g. vegetable fibres
    • D10B2201/01Natural vegetable fibres
    • D10B2201/02Cotton
    • DTEXTILES; PAPER
    • D10INDEXING SCHEME ASSOCIATED WITH SUBLASSES OF SECTION D, RELATING TO TEXTILES
    • D10BINDEXING SCHEME ASSOCIATED WITH SUBLASSES OF SECTION D, RELATING TO TEXTILES
    • D10B2201/00Cellulose-based fibres, e.g. vegetable fibres
    • D10B2201/01Natural vegetable fibres
    • D10B2201/08Ramie
    • DTEXTILES; PAPER
    • D10INDEXING SCHEME ASSOCIATED WITH SUBLASSES OF SECTION D, RELATING TO TEXTILES
    • D10BINDEXING SCHEME ASSOCIATED WITH SUBLASSES OF SECTION D, RELATING TO TEXTILES
    • D10B2401/00Physical properties
    • D10B2401/13Physical properties anti-allergenic or anti-bacterial

Abstract

The invention relates to a composite fiber fabric and a preparation method thereof and belongs to the technical field of spinning engineering. Warp yarn of the composite fiber is blended yarn of stainless steel fibers, carbon fibers and cotton fibers, and weft yarn is blended yarn of stainless ramie and cotton fibers. In the blended yarn of the warp yarn, the content of the stainless steel fibers is 10-18%, the content of the carbon fibers is 2-5% and the content of the cotton fibers is 77-88%. In the blended yarn of the weft yarn, the content of the stainless steel fibers is 8-15%, the content of the ramie is 5-8% and the content of the cotton fibers is 77-87%. The fabric has the environmental protection performance and functionality in the aspects of bacteria resistance and bacteriostasis, moisture absorption, fast drying, biodegradation and the like of the ramie, has the strength of the carbon fibers so that the tear resistance of the fabric can be improved, and also has a good anti-radiation shielding effect of the stainless steel fibers, a cloth cover is level, soft and smooth, the anti-radiation effect is larger than or equal to 95%, and the moisture regain is 8-10%; the fiber bacteriostasis rate is larger than or equal to 90%.

Description

A kind of composite fiber material and preparation method thereof
Technical field
The present invention relates to a kind of composite fiber material and preparation method thereof, belong to spinning engineering technical field.
Background technology
Mixed yarn is the yarn being spun into by two or more fiber, such as fiber crops/cotton, hair/cotton, hair/fiber crops/thin,tough silk, polyester cotton, wash/hair etc., break the boundary between original cotton, fiber crops, hair, silk, chemical fibre, the deficiency of certain textile material single can be made up, embody the superiority of each component fibre, to improve the einnehmen function of fabric, expand the scope of application. Existing blended yarn facing materials function is complete not enough.
Summary of the invention
The present invention is directed to the defect existing for prior art, it is provided that a kind of radioprotective usefulness is good, and toughness is higher, has the composite fiber material of bacteriostasis antibiosis effect simultaneously.
The above-mentioned purpose of the present invention can be carried out by the following technical programs: a kind of composite fiber material, the warp thread of described composite material is the mixed yarn of stainless steel fibre, carbon fiber and cotton fiber, and the weft yarn of described composite material is the mixed yarn of stainless steel fibre, ramee and cotton fiber.
The present invention selects the mixed yarn of different fiber to make warp thread and weft yarn, plays the advantage between each fiber. Wherein, stainless steel fibre has certain anti-electromagnetic radiation effect, has good shield effectiveness in fabric; The excellent in mechanical performance of carbon fiber, being remarkably improved the crushing resistance of hybrid yams, tear resistance, to improve single carbon fiber toughness poor etc. simultaneously, and carbon fiber light weight, the mixed yarn that stainless steel fibre, carbon fiber and cotton fiber mix is made warp thread, merge the advantage of three, yarn feel is smooth, stainless steel fibre, carbon fiber Homogeneous phase mixing are in yarn, the intensity of existing carbon fiber and the advantage of light weight, alleviate weight, improve the tear resistance of fabric, toughness, have again good radiation-resistant glass effect.
And ramee has the property that one, antibacterial bacteriostatic function, same amount of antibacterial is examined under a microscope, and antibacterial can multiply in a large number in cotton, wool fibre goods, and the antibacterial on Boehmeria goods is killed about 75% after 24 hours. This is because ramee contain give repeated exhortations, the trace element such as pyrimidine, purine, staphylococcus aureus, bacillus pyocyaneus, escherichia coli etc. are played inhibition, there is natural bacteriostatic, anti-demodicid mite, deodorant function. Tests prove that, after 50 cyclic washings, its sterilization effect still reaches more than 98%, can effectively check the antibacterial of textile, acarid secondary pollution problem.Two, deodorization adsorption function, the internal special ultrafine micropore structure of ramee makes it have powerful absorbability, can formaldehyde in absorbed air, benzene, toluene, the harmful substance such as ammonia, eliminate bad smell. after Exposure to Sunlight, it is possible to the harmful substance of absorption is vapored away so that its adsorption function automatic regeneration. three, moisture absorption airing function, ramee has the good reputation of " king of natural fiber ", its exclusive active cavity leads antiperspirant fibre structure can make the sweat saturation of suction and quickly derive in cavity, it is allowed to have possessed superior breathability and conductivity of heat, absorb water many and wet dissipation is fast, there is the cooling feeling making people very pleasantly surprised, four, mildew-resistant wear-resisting functions, ramee is very tough and tensile, powerful big and ductility is little, plus being susceptible to mold corrosion and damaging by worms, it is described as " not rotten soft gold in thousand ", thus it is widely used in flight parachute, safety rope, the fields such as home textile, there is superpower mildew-resistant wear-resisting functions, extend the service life of article well. the mixed yarn that stainless steel fibre, ramee and cotton fiber mix is made weft yarn, merge the advantage of three, yarn feel is smooth, stainless steel fibre, Boehmeria dimension Homogeneous phase mixing are in yarn, existing ramee antibacterial bacteriostatic, hydroscopic fast-drying, the aspect such as biodegradable the feature of environmental protection with functional, have again good radiation-resistant glass effect.
In above-mentioned composite fiber material, in described composite material in warp thread mixed yarn, the content of stainless steel fibre, carbon fiber and cotton fiber respectively 10-18%, 2-5% and 77-88%. Stainless steel fibre content is more high, then during blending, arranging density is more big, fabric radioprotective usefulness is more good, if but stainless steel fibre content is more than 18%, because the factors such as the characteristic of itself and spinnability difference, the blending uniformity can be caused on the contrary to reduce, yarn strength declines, production efficiency is low, if stainless steel fibre content is lower than 10%, does not have good radiation-proof effect. In warp thread of the present invention, if the tear resistance of the too low warp thread of carbon fiber content is poor; If carbon fiber content is too high, higher than 5%, causing that warp thread toughness is poor on the contrary, fragility is bigger, it is easy to damage. Therefore, comprehensive each side factor, through constantly testing discovery, stainless steel fibre, carbon fiber by content 10-18%, 2-5% and 77-88%, are mixed resultant yarn with cotton fiber and make warp thread best results.
In above-mentioned composite fiber material, in described composite material in weft yarn mixed yarn, the content of stainless steel fibre, ramee and cotton fiber respectively 8-15%, 5-8% and 77-87%. Stainless steel fibre content is more high, then during blending, arranging density is more big, fabric radioprotective usefulness is more good, but stainless steel fibre and ramee need to be uniformly mixed in cotton fiber in weft yarn, stainless steel fibre is not easily too much, if stainless steel fibre content is more than 15%, because the factor such as the characteristic of itself and spinnability difference, not only result in the reduction of the blending uniformity, yarn strength declines, production efficiency is low, also can affect antibacterial bacteriostatic effect and the hygroscopicity of ramee; If but stainless steel fibre content is lower than 8%, not having good radiation-proof effect. In weft yarn of the present invention, if ramee content is too low, the antibacterial bacteriostatic weak effect of parallel, the sucting wet air permeability of fabric is poor; If ramee too high levels, the radiation-proof effect of stainless steel fibre can be affected, also can reduce the performance of parallel simultaneously.Therefore, comprehensive each side factor, through constantly testing discovery, stainless steel fibre, ramee by content 8-15%, 5-8% and 77-87%, are mixed resultant yarn with cotton fiber and make weft yarn best results.
As preferably, in above-mentioned composite fiber material, its fabric tissue is highly dense plain weave. Highly dense plain weave is adopted to be to ensure that the performance of fabric, especially radiation-proof effect and toughness. In warp thread weft yarn, the common stainless steel fibre existed runs through whole fabric; Carbon fiber in warp thread crosses fabric, further increases the toughness of fabric, resistance to impact; Ramee in weft yarn is perpendicular wears fabric, further increases antibacterial bacteriostatic effect and the sucting wet air permeability of fabric. And by contrast test, better by its radiation-proof effect of highly dense plain weave and toughness compared to twill, satin weave, warp thread different in composite fiber material of the present invention and weft yarn.
The preparation method that the invention also discloses a kind of above-mentioned composite fiber material, described preparation method comprises the steps:
Spinning: cotton fiber is through blowing, comb and parallel cotton fibers prior to spinning, combing, the mixed also operation of multiple tracks, then through rove, spun yarn, winding procedure, is progressively mixed into into mixed yarn by stainless steel fibre, carbon fiber in the mixed also operation of multiple tracks;
Spinning: cotton fiber is through blowing, comb and parallel cotton fibers prior to spinning, combing, the mixed also operation of multiple tracks, then through rove, spun yarn, winding procedure, is progressively mixed into into mixed yarn by stainless steel fibre, ramee in the mixed also operation of multiple tracks;
Weaving: make warp thread with the mixed yarn of stainless steel fibre, carbon fiber and cotton fiber, become fabric with the mixed yarn of cotton fiber as weft weaving with stainless steel fibre, ramee, fabric tissue adopts plain weave;
Final finishing: dyed, soft, sizing can be prepared by composite fiber material of the present invention.
As preferably, ramee adding before blending antistatic additive and antilubricant.
The present invention changes the deficiency that conventional Single Fiber fabric exists, by the stainless steel fibre in rational proportion warp thread, carbon fiber and cotton fiber, stainless steel fibre in rational proportion weft yarn, ramee and cotton fiber, not only with three kinds of fiber composite resultant yarns, and warp thread is different from weft yarn, improve the performance of fabric, make its existing ramee antibacterial bacteriostatic, hydroscopic fast-drying, the feature of environmental protection of the aspect such as biodegradable is with functional, there is again the intensity of carbon fiber, improve the tear resistance of fabric, also there is the radiation-resistant glass effect that stainless steel fibre is good, and fabric cloth cover of the present invention is smooth, soft smooth, radioprotective usefulness reaches more than 95%, regain 8%-10%, fiber bacteriostasis rate >=90%. therefore, composite fiber material of the present invention is widely used, and is especially suitable for makeing child, anemia of pregnant woman's protective garment or household electrical appliance, Medical Instruments protective cover etc.
Detailed description of the invention
The following is specific embodiments of the invention, technical scheme is further described, but the present invention is not limited to these embodiments.
Embodiment 1
Spinning: cotton fiber is through blowing, comb and parallel cotton fibers prior to spinning, combing, the mixed also operation of multiple tracks, then through rove, spun yarn, winding procedure, stainless steel fibre, carbon fiber are progressively mixed into into mixed yarn by and operation mixed in multiple tracks, wherein the content of stainless steel fibre, carbon fiber and cotton fiber respectively 15%, 3% and 82%;
Spinning: cotton fiber is through blowing, comb and parallel cotton fibers prior to spinning, combing, the mixed also operation of multiple tracks, then through rove, spun yarn, winding procedure, stainless steel fibre, ramee are progressively mixed into into mixed yarn by and operation mixed in multiple tracks, wherein the content of stainless steel fibre, ramee and cotton fiber respectively 12%, 6% and 82%;Ramee adds antistatic additive and antilubricant before blending;
Weaving: make warp thread with the mixed yarn of stainless steel fibre, carbon fiber and cotton fiber, become fabric with the mixed yarn of cotton fiber as weft weaving with stainless steel fibre, ramee, fabric tissue adopts highly dense plain weave;
Final finishing: dyed, soft, sizing can be prepared by composite fiber material of the present invention.
Embodiment 2
The content of stainless steel fibre, carbon fiber and cotton fiber respectively 16%, 4% and 80% in warp thread in the present embodiment; The content of stainless steel fibre, ramee and cotton fiber respectively 10%, 7% and 83% in weft yarn; Other techniques as described in Example 1, are not repeated herein.
Embodiment 3
The content of stainless steel fibre, carbon fiber and cotton fiber respectively 12%, 4% and 84% in warp thread in the present embodiment; The content of stainless steel fibre, ramee and cotton fiber respectively 14%, 6% and 80% in weft yarn; Other techniques as described in Example 1, are not repeated herein.
Embodiment 4
The content of stainless steel fibre, carbon fiber and cotton fiber respectively 10%, 5% and 85% in warp thread in the present embodiment; The content of stainless steel fibre, ramee and cotton fiber respectively 15%, 8% and 77% in weft yarn; Other techniques as described in Example 1, are not repeated herein.
Embodiment 5
The content of stainless steel fibre, carbon fiber and cotton fiber respectively 18%, 2% and 80% in warp thread in the present embodiment; The content of stainless steel fibre, ramee and cotton fiber respectively 8%, 8% and 84% in weft yarn; Other techniques as described in Example 1, are not repeated herein.
Comparative example 1
In this comparative example, the warp thread of fabric, weft yarn are single cotton fiber.
Comparative example 2
In this comparative example, the warp thread of fabric, weft yarn are the hybrid yams that stainless steel fibre and cotton fiber are by 10% and 90%.
Comparative example 3
Differing only in of this comparative example and embodiment 1, the content of stainless steel fibre, carbon fiber and cotton fiber respectively 8%, 3%, 89% in fabric warp thread in this comparative example 3.
Comparative example 4
Differing only in of this comparative example and embodiment 1, the content of stainless steel fibre, carbon fiber and cotton fiber respectively 20%, 3%, 77% in fabric warp thread in this comparative example 4.
Comparative example 5
Differing only in of this comparative example and embodiment 1, the content of stainless steel fibre, carbon fiber and cotton fiber respectively 15%, 1%, 84% in fabric warp thread in this comparative example 5.
Comparative example 6
Differing only in of this comparative example and embodiment 1, the content of stainless steel fibre, carbon fiber and cotton fiber respectively 15%, 6%, 79% in fabric warp thread in this comparative example 6.
Comparative example 7
Differing only in of this comparative example and embodiment 1, the content of stainless steel fibre, ramee and cotton fiber respectively 6%, 3%, 91% in fabric parallel in this comparative example 7.
Comparative example 8
Differing only in of this comparative example and embodiment 1, the content of stainless steel fibre, ramee and cotton fiber respectively 16%, 3%, 81% in fabric parallel in this comparative example 8.
Comparative example 9
Differing only in of this comparative example and embodiment 1, the content of stainless steel fibre, ramee and cotton fiber respectively 15%, 3%, 82% in fabric parallel in this comparative example 9.
Comparative example 10
Differing only in of this comparative example and embodiment 1, the content of stainless steel fibre, ramee and cotton fiber respectively 15%, 10%, 75% in fabric parallel in this comparative example 10.
Technique that the technique not clearly stated in the embodiment of the present invention and reagent are in prior art normal conventional and reagent, such as blowing, comb and parallel cotton fibers prior to spinning, combing, the mixed also operation of multiple tracks, rove, spun yarn, winding procedure, the technique such as weaving, dyeing, softness, sizing, the reagent such as antistatic additive, antilubricant.
The fabric of embodiment 1-5 and comparative example 1-10 is carried out performance test, and test result is as shown in table 1.
Table 1: embodiment 1-5 and the performance of fabric in comparative example 1-10
In sum, the present invention changes the deficiency that conventional Single Fiber fabric exists, by the stainless steel fibre in rational proportion warp thread, carbon fiber and cotton fiber, stainless steel fibre in rational proportion weft yarn, ramee and cotton fiber, not only with three kinds of fiber composite resultant yarns, and warp thread is different from weft yarn, improve the performance of fabric further, make its existing ramee antibacterial bacteriostatic, hydroscopic fast-drying, the feature of environmental protection of the aspect such as biodegradable is with functional, there is again the intensity of carbon fiber, improve the tear resistance of fabric, improve the toughness of carbon fiber, also there is the radiation-resistant glass effect that stainless steel fibre is good. and fabric cloth cover of the present invention is smooth, soft smooth, radioprotective usefulness reaches more than 95%, regain 8%-10%, fiber bacteriostasis rate >=90%. therefore, composite fiber material of the present invention is widely used, and is especially suitable for makeing child, anemia of pregnant woman's protective garment or household electrical appliance, Medical Instruments protective cover etc.
Above example is merely to illustrate technical scheme but not limiting the scope of the invention; although the present invention being explained in detail with reference to preferred embodiment; it will be understood by those within the art that; technical scheme can be modified or equivalent replacement, without deviating from the spirit and scope of technical solution of the present invention.

Claims (6)

1. a composite fiber material, it is characterised in that the warp thread of described composite material is the mixed yarn of stainless steel fibre, carbon fiber and cotton fiber, the weft yarn of described composite material is the mixed yarn of stainless steel fibre, ramee and cotton fiber.
2. composite fiber material according to claim 1, it is characterised in that in described composite material in warp thread mixed yarn, the content of stainless steel fibre, carbon fiber and cotton fiber respectively 10-18%, 2-5% and 77-88%.
3. composite fiber material according to claim 1, it is characterised in that in described composite material in weft yarn mixed yarn, the content of stainless steel fibre, ramee and cotton fiber respectively 8-15%, 5-8% and 77-87%.
4. the composite fiber material according to claim 1 or 2 or 3, it is characterised in that fabric tissue is highly dense plain weave.
5. the preparation method of a composite fiber material, it is characterised in that described preparation method comprises the steps:
Spinning: cotton fiber is through blowing, comb and parallel cotton fibers prior to spinning, combing, the mixed also operation of multiple tracks, then through rove, spun yarn, winding procedure, is progressively mixed into into mixed yarn by stainless steel fibre, carbon fiber in the mixed also operation of multiple tracks;
Spinning: cotton fiber is through blowing, comb and parallel cotton fibers prior to spinning, combing, the mixed also operation of multiple tracks, then through rove, spun yarn, winding procedure, is progressively mixed into into mixed yarn by stainless steel fibre, ramee in the mixed also operation of multiple tracks;
Weaving: make warp thread with the mixed yarn of stainless steel fibre, carbon fiber and cotton fiber, become fabric with the mixed yarn of cotton fiber as weft weaving with stainless steel fibre, ramee, fabric tissue adopts plain weave;
Final finishing: dyed, soft, sizing can be prepared by composite fiber material of the present invention.
6. the preparation method of composite fiber material according to claim 5, it is characterised in that add antistatic additive and antilubricant before blending in ramee.
CN201610107496.1A 2016-02-26 2016-02-26 Composite fiber fabric and preparation method thereof Pending CN105671734A (en)

Priority Applications (1)

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CN201610107496.1A CN105671734A (en) 2016-02-26 2016-02-26 Composite fiber fabric and preparation method thereof

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Application Number Priority Date Filing Date Title
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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106702568A (en) * 2016-11-17 2017-05-24 无锡市长安曙光手套厂 Graphene anti-radiation fiber fabric
CN107034568A (en) * 2016-11-17 2017-08-11 无锡市长安曙光手套厂 A kind of radiation resistant fiber fabric
CN107034569A (en) * 2016-11-17 2017-08-11 无锡市长安曙光手套厂 A kind of radiation resistant fiber fabric
CN107338537A (en) * 2017-07-25 2017-11-10 太仓艺佳乐化纤有限公司 A kind of radioresistance chemical fibre composite fibre
CN108457090A (en) * 2018-05-15 2018-08-28 佛山市衣香蒂丝服装设计有限公司 A kind of flame retardant type textile fabric
CN109056159A (en) * 2018-08-31 2018-12-21 江苏京展能源科技有限公司 The solar energy evacuated effective protective cover of one kind and its production technology
CN110578195A (en) * 2019-08-01 2019-12-17 陈桂川 Preparation method of wave-absorbing radiation-proof composite textile material

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CN103147209A (en) * 2013-03-14 2013-06-12 江苏悦达纺织集团有限公司 Stainless steel fiber radiation protection face fabric and fabrication method thereof
JP5279121B2 (en) * 2008-11-21 2013-09-04 兵庫県 Fiber reinforced composite material
CN104389075A (en) * 2014-11-28 2015-03-04 常熟市钟杰针织有限公司 Preparation method of antistatic radiation-proof fabric
CN105113089A (en) * 2015-07-28 2015-12-02 南通大学 Temperature-regulating blended woven fabric and production method thereof

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Publication number Priority date Publication date Assignee Title
CN101182662A (en) * 2007-12-03 2008-05-21 保定依棉集团有限公司 Functional properties conductivity yarns and manufacturing method
JP5279121B2 (en) * 2008-11-21 2013-09-04 兵庫県 Fiber reinforced composite material
CN102808271A (en) * 2012-08-30 2012-12-05 宜兴乐威牛仔布有限公司 Denim with functions of moisture absorption and perspiration elimination and manufacturing method thereof
CN103147209A (en) * 2013-03-14 2013-06-12 江苏悦达纺织集团有限公司 Stainless steel fiber radiation protection face fabric and fabrication method thereof
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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106702568A (en) * 2016-11-17 2017-05-24 无锡市长安曙光手套厂 Graphene anti-radiation fiber fabric
CN107034568A (en) * 2016-11-17 2017-08-11 无锡市长安曙光手套厂 A kind of radiation resistant fiber fabric
CN107034569A (en) * 2016-11-17 2017-08-11 无锡市长安曙光手套厂 A kind of radiation resistant fiber fabric
CN107338537A (en) * 2017-07-25 2017-11-10 太仓艺佳乐化纤有限公司 A kind of radioresistance chemical fibre composite fibre
CN108457090A (en) * 2018-05-15 2018-08-28 佛山市衣香蒂丝服装设计有限公司 A kind of flame retardant type textile fabric
CN109056159A (en) * 2018-08-31 2018-12-21 江苏京展能源科技有限公司 The solar energy evacuated effective protective cover of one kind and its production technology
CN110578195A (en) * 2019-08-01 2019-12-17 陈桂川 Preparation method of wave-absorbing radiation-proof composite textile material
CN110578195B (en) * 2019-08-01 2020-09-04 深圳市盛鸿医疗科技有限公司 Preparation method of wave-absorbing radiation-proof composite textile material

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Application publication date: 20160615