CN103603085A - Perpetual anti-static conductive fiber - Google Patents

Perpetual anti-static conductive fiber Download PDF

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Publication number
CN103603085A
CN103603085A CN201310501022.1A CN201310501022A CN103603085A CN 103603085 A CN103603085 A CN 103603085A CN 201310501022 A CN201310501022 A CN 201310501022A CN 103603085 A CN103603085 A CN 103603085A
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China
Prior art keywords
fiber
conductive fiber
forever
conductive
perpetual
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Pending
Application number
CN201310501022.1A
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Chinese (zh)
Inventor
吴中心
张宝成
吴林芳
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ZHEJIANG SANHE PLASTIC CO Ltd
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ZHEJIANG SANHE PLASTIC CO Ltd
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Priority to CN201310501022.1A priority Critical patent/CN103603085A/en
Publication of CN103603085A publication Critical patent/CN103603085A/en
Pending legal-status Critical Current

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Abstract

The invention relates to perpetual anti-static conductive fiber. The perpetual anti-static conductive fiber employs synthetic fiber as a base material, a conductive polymeric material is arranged at the circumferential direction of the synthetic fiber in an embedded manner, and in the cross section of the conductive fiber, the conductive polymeric material is embedded inthe synthetic fiber base material, wherein the polymeric material employs perpetual anti-static master batch, and the master batch consists of the following components: polyamide, polyether hindered-amine, polystyrene, anti-oxidant 1010, a coupling agent, anti-oxidant 168, a reinforcing agent and a flexibilizer. Not only textile fabrics prepared from the perpetual anti-static conductive fiber have excellent conductivity, but also the conductive fiber is good infineness, length, strength and flexibility, can be blended or interwoven with common textile fabric, has good friction resistance, flexing resistance, water-washing resistance and oxidation resistance, and can resist weaving processing and physical machinery operation during usage, and the performances of the conductive fiber cannot be influenced after the conductive fiber is dyed.

Description

A kind of anti-conductive fiber forever
Technical field
The present invention relates to a kind of anti-conductive fiber forever.
Background technology
If textiles with static dissipation not in time, in use easily adsorb dirt, in some occasion, even can cause serious consequence.As static can make parachutist's landing pack, do not open, threaten athletic life security; Hospital operating room is because textiles static discharge makes anaesthetic blast; In gasoline warehouse, staff pours gasoline in the process of another container into from a container, because the friction of Work Clothes and container produces electrostatic spark, causes fire; Etc. all by static, caused.Therefore a kind of antistatic master batch forever the present invention relates to, thus reach anlistatig effect.
Summary of the invention
In order to address the above problem, the object of this invention is to provide a kind of anti-conductive fiber forever, this conductive fiber not only has mechanical performance and the stainability of common silk thread, and is not having electric shock and the danger of spark discharge after the textiles of making.
In order to realize above-mentioned object, the present invention has adopted following technical scheme:
A kind of anti-conductive fiber forever, this conductive fiber be take synthetic fiber as base material, at synthetic fiber, be circumferentially embedded with conducting polymer composite, in the cross section of fiber, the conducting polymer composite of the above is embedded on synthetic fiber base material, described macromolecular material adopts antistatic master batch forever, and antistatic master batch consists of following component by weight percentage forever:
Polyamide 18%-25% polyethers hindered amine 20%-30%
Polystyrene 50%-60% antioxidant 1010 0.4-0.7%
Coupling agent 0.2%-0.8% antioxidant 168 0.2%-0.7%
Reinforcing agent 0.01-0.05% flexibilizer 0.5-0.6%.
As preferably, described antistatic master batch forever consists of following component by weight percentage:
Polyamide 20% polyethers hindered amine 22%
Polystyrene 56% antioxidant 1010 0.5%
Coupling agent 0.4% antioxidant 168 0.5%
Reinforcing agent 0.05% flexibilizer 0.55%.
As preferably, described synthetic fiber are terylene or nylon.
As preferably, the weight ratio of described synthetic fiber is 70%-90%, and the weight ratio of antistatic master batch is 10%-30% forever.
As preferably in the cross section of fiber, the conducting polymer composite of the above is embedded on synthetic fiber base material in 4 fan-shaped modes.
Another object of the present invention is to provide and adopts the above-mentioned antistatic fabric that forever prepared by anti-conductive fiber.
Of the present invention spin type forever anti-conductive filament mainly use terylene, nylon as belt body, adding antistatic master batch forever, by spinning machine, conductive agglomerate is mounted in nylon (terylene), it is fan-shaped that conductive agglomerate becomes, and is embedded in nylon (terylene).Make its both perfect adaptations.The textiles of for this reason being made by this conductive filament, not only has outside excellent electric conductivity, and the fineness of conductive filament itself, length, intensity and flexibility are good.Can or interweave with common textile fabric blending, there is good rub resistance, resistance to flexing, water-fastness, oxidation resistance, ability textile process and use in physical mechanical operation.And do not affect its performance after conductive filament dyeing yet.
Accompanying drawing explanation
Fig. 1 is cross section structure schematic diagram of the present invention.
Fig. 2 is outline drawing of the present invention.
The specific embodiment
embodiment 1
A kind of anti-conductive fiber forever as shown in Figure 1 and Figure 2, this conductive fiber be take synthetic fiber 1 as base material, synthetic fiber 1 are terylene, at synthetic fiber 1, be circumferentially embedded with conducting polymer composite 2, in the cross section of fiber, the conducting polymer composite 2 of the above is embedded on synthetic fiber 1 base material in 4 fan-shaped modes, the weight ratio of synthetic fiber 1 is 80%, and the weight ratio of conducting polymer composite 2 is 20%.Above-mentioned macromolecular material adopts antistatic master batch forever, and antistatic master batch consists of following component by weight percentage forever:
Polyamide 20% polyethers hindered amine 22%
Polystyrene 56% antioxidant 1010 0.5%
Coupling agent 0.4% antioxidant 168 0.5%
Reinforcing agent 0.05% flexibilizer 0.55%.
Above-mentioned anti-conductive fiber forever can adopt the conventional formula that is embedded spining technology to carry out spinning.
Anti-conductive fiber forever of the present invention is carried out to surface resistivity test, and result is as follows:
Figure 238323DEST_PATH_IMAGE001
Anti-conductive fiber forever of the present invention is made to antistatic fabric, carry out the point-to-point resistance test of fabric and the test of fabric charge density, result is as follows:
Detect unit: petrochemical industry Check and Inspection center, national security production Qingdao
Sample state: outward appearance is without defect, the dirt of breakage, spot and other influences performance
Detect the evaluation part 2 of foundation: GB/T 12703.2-2009 < < textiles antistatic properties: density of surface charge > >, GB12014-2009 < < antistatic clothing > >
Detection data are as follows:
Figure 14518DEST_PATH_IMAGE003
Test result:
1, the point-to-point resistance test of fabric: the point-to-point resistance value of fabric is 4.81*10 10Ω, B level is qualified;
2, surface density of charge test: washing charge density is above 1.82 μ C/m 2, qualified; Washing charge density is below 2.05 μ C/m 2, qualified.

Claims (6)

1. an anti-conductive fiber forever, it is characterized in that: this conductive fiber be take synthetic fiber as base material, at synthetic fiber, be circumferentially embedded with conducting polymer composite, in the cross section of fiber, the conducting polymer composite of the above is embedded on synthetic fiber base material, described macromolecular material adopts antistatic master batch forever, and antistatic master batch consists of following component by weight percentage forever:
Polyamide 18%-25% polyethers hindered amine 20%-30%
Polystyrene 50%-60% antioxidant 1010 0.4-0.7%
Coupling agent 0.2%-0.8% antioxidant 168 0.2%-0.7%
Reinforcing agent 0.01-0.05% flexibilizer 0.5-0.6%.
2. a kind of anti-conductive fiber forever according to claim 2, is characterized in that: antistatic master batch consists of following component by weight percentage forever:
Polyamide 20% polyethers hindered amine 22%
Polystyrene 56% antioxidant 1010 0.5%
Coupling agent 0.4% antioxidant 168 0.5%
Reinforcing agent 0.05% flexibilizer 0.55%.
3. a kind of anti-conductive fiber forever according to claim 1 and 2, is characterized in that: synthetic fiber are terylene or nylon.
4. a kind of anti-conductive fiber forever according to claim 1 and 2, is characterized in that: the weight ratio of synthetic fiber is 70%-90%, and the weight ratio of antistatic master batch is 10%-30% forever.
5. a kind of anti-conductive fiber forever according to claim 1 and 2, is characterized in that: in the cross section of fiber, the conducting polymer composite of the above is embedded on synthetic fiber base material in 4 fan-shaped modes.
6. an antistatic fabric forever, this fabric adopts the anti-conductive fiber forever described in claim 1 or 2 to prepare.
CN201310501022.1A 2013-10-21 2013-10-21 Perpetual anti-static conductive fiber Pending CN103603085A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201310501022.1A CN103603085A (en) 2013-10-21 2013-10-21 Perpetual anti-static conductive fiber

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201310501022.1A CN103603085A (en) 2013-10-21 2013-10-21 Perpetual anti-static conductive fiber

Publications (1)

Publication Number Publication Date
CN103603085A true CN103603085A (en) 2014-02-26

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105401302A (en) * 2015-10-26 2016-03-16 太仓市毅飞化纤织造有限公司 Mint fiber, cotton fiber, and polyester fiber blended fabric
CN107418075A (en) * 2017-06-21 2017-12-01 安徽江淮汽车集团股份有限公司 A kind of PS composites and preparation method thereof
CN109402782A (en) * 2018-10-25 2019-03-01 华祥(中国)高纤有限公司 A kind of antistatic fibre and its manufacturing method
CN109487402A (en) * 2018-10-10 2019-03-19 夏许彬 The dust-free cleaning cloth of antistatic

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2255435Y (en) * 1996-06-07 1997-06-04 西北纺织工学院 Composite compatible fire-retardant anti-static synthetic fiber textile
CN1860261A (en) * 2003-11-03 2006-11-08 阿尔巴尼国际公司 Durable highly conductive synthetic fabric construction
CN1911650A (en) * 2005-08-09 2007-02-14 浙江三和塑料有限公司 Black-less permanent antielectro-static plastic sheet and its preparation method

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2255435Y (en) * 1996-06-07 1997-06-04 西北纺织工学院 Composite compatible fire-retardant anti-static synthetic fiber textile
CN1860261A (en) * 2003-11-03 2006-11-08 阿尔巴尼国际公司 Durable highly conductive synthetic fabric construction
CN1911650A (en) * 2005-08-09 2007-02-14 浙江三和塑料有限公司 Black-less permanent antielectro-static plastic sheet and its preparation method

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105401302A (en) * 2015-10-26 2016-03-16 太仓市毅飞化纤织造有限公司 Mint fiber, cotton fiber, and polyester fiber blended fabric
CN107418075A (en) * 2017-06-21 2017-12-01 安徽江淮汽车集团股份有限公司 A kind of PS composites and preparation method thereof
CN109487402A (en) * 2018-10-10 2019-03-19 夏许彬 The dust-free cleaning cloth of antistatic
CN109402782A (en) * 2018-10-25 2019-03-01 华祥(中国)高纤有限公司 A kind of antistatic fibre and its manufacturing method

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Application publication date: 20140226