CN101871138A - Method for manufacturing nylon6/nanometer SiO2 composite fiber material - Google Patents

Method for manufacturing nylon6/nanometer SiO2 composite fiber material Download PDF

Info

Publication number
CN101871138A
CN101871138A CN 201010230835 CN201010230835A CN101871138A CN 101871138 A CN101871138 A CN 101871138A CN 201010230835 CN201010230835 CN 201010230835 CN 201010230835 A CN201010230835 A CN 201010230835A CN 101871138 A CN101871138 A CN 101871138A
Authority
CN
China
Prior art keywords
nylon
sio
nanometer
nylon6
composite
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN 201010230835
Other languages
Chinese (zh)
Inventor
周诗彪
肖安国
陈贞干
郑清云
***
周桓任
申有名
李文林
李琳
郝爱平
陈运道
张晋平
朱卫国
唐杜林
熊志夫
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.)
Hunan University of Arts and Science
Original Assignee
Hunan University of Arts and Science
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hunan University of Arts and Science filed Critical Hunan University of Arts and Science
Priority to CN 201010230835 priority Critical patent/CN101871138A/en
Publication of CN101871138A publication Critical patent/CN101871138A/en
Pending legal-status Critical Current

Links

Abstract

The invention discloses a method for manufacturing an nylon6/nanometer SiO2 composite fiber material, which comprises the following steps: adopting no-soap emulsion polymerization process to modify the surface of the nanometer SiO2 so as to enable the surface of the nanometer SiO2 grains to be attached with a layer of polymer film having good compatibility with the nylon6 polymer molecules to obtain the modified nanometer SiO2 powder; slicing, mixing, evenly stirring the modified nanometer SiO2 powder and the nylon6; carrying out melting and extruding processes to prepare into composite material pellet slices; and using a composite spinning machine to carry out melting and spinning on the nylon6/SiO2 composite material pellet slices to prepare the nylon6/nanometer SiO2 composite fiber material. In the invention, the prepared modified nanometer SiO2/nylon6 has high compatibility; the nylon6/SiO2 composite material is prepared by the steps of melting, extruding, cooling, pelleting and melting and spinning; and the method has simple processing, does not influence the polymerization of nylon, ensures the production efficiency, and ensures the component uniformity and performance stability of the formed composite fiber materials.

Description

Nylon 6/ nanometer SiO 2The complex fiber material preparation method
Technical field
The invention belongs to nylon 6 modified fiber materials of polymer composite, i.e. nylon 6/ nanometer SiO 2The complex fiber material preparation method.
Technical background
Nylon 6 has excellent comprehensive performances, but because have that water absorption rate is big, heat distortion temperature is low, strong alkali-acid resistance is poor, dry state and low temperature impact strength is low and shortcoming such as easy firing, thereby influence the DIMENSIONAL STABILITY and the electrical property of goods.Since people such as Japanese Y.Fukushima in 1987 adopted in-situ inserted complex method to prepare nylon 6/ Nano composite material of montmorillonite first, lot of domestic and international researcher had done a large amount of work on the study on the modification of nylon 6, nanometer SiO 2With the compound of nylon 6 be one of its method of modifying, up to the present, the main practice both domestic and external is to adopt wet-treating nanometer SiO 2, be about to nanometer SiO 2Treatment fluid joins in the caprolactam, makes nylon 6/ nanometer SiO by the original position ring-opening polymerization again 2Complex fiber material, just nylon 6/ nanometer SiO 2The complex fiber material preparation process is at nanometer SiO 2Nylon 6/poly compound forming process under the dispersity.This method advantage is polymer fiber material component homogeneous, the stable performance that forms, and its shortcoming is because SiO 2Adopt wet-treating, make that polymerization system polymerisation decrease in efficiency is that production efficiency descends.
Summary of the invention
In order to overcome wet-treating nanometer SiO 2Make nylon 6/ nanometer SiO 2The inefficient shortcoming of complex fiber material explained hereafter the present invention proposes a kind of nylon 6/ nanometer SiO 2The new method that complex fiber material is made.
This nylon 6/ nanometer SiO 2The complex fiber material preparation method is characterized in that, adopts the emulsifier-free emulsion polymerization method to nanometer SiO 2Carry out surface modification, make nanometer SiO 2Particle surface is enclosed one deck and the good polymer film of nylon 6/poly adduct molecule compatibility, gets modified Nano SiO 2Powder is beneficial to nanometer SiO 2Disperse, with modified Nano SiO 2Powder and nylon 6 slice mix, mix thoroughly, make it to become composite grain sheet by fusion, expressing technique again, with composite spinning machine with nylon 6/SiO 2Composite grain sheet carries out melt spinning, makes nylon 6/ nanometer SiO 2Complex fiber material.
Above-mentioned nylon 6/ nanometer SiO 2The complex fiber material preparation method, concrete steps are as follows:
One, modified Nano SiO 2The preparation of powder:
Weight ratio by following material is prepared:
1. nanometer SiO 2, 30-80nm 90-110 part
2. deionized water 900-1100 part
3. alpha-methylmercapto acrylic acid is 1.0~1.5 parts
4. acrylic acid is 1.0~1.5 parts
5. potassium peroxydisulfate is 0.01~0.015 part
Press following technological operation:
With 90-110 part nanometer SiO 2Put into reaction bulb with 2900-1100 part deionized water, move into ultrasonic dispersion 20min in the ultrasonic disperser, add 1.0~1.5 parts of α-Jia Jibingxisuans, 1.0~1.5 parts of acrylic acid and 0.01~0.015 part of potassium peroxydisulfate after above-mentioned suspension system being moved to Water Tank with Temp.-controlled again, stir, heat up, under 70-90 ℃ of temperature, react 2-4h, after centrifugation, vacuumize makes modified Nano SiO to constant weight 2Powder.
Two, nylon 6/ nanometer SiO 2The preparation of composite grain sheet:
Weight ratio by following material is prepared:
1. nylon 6 slice 90-110 part
2. modified Nano SiO 21~5 part in powder
Press following technological operation:
With 90-110 part nylon 6 slice and modified Nano SiO 21~5 part of mixing, mix thoroughly after, melt extrude through double screw extruder, melt temperature 270-290 ℃, cooling, granulation make nylon 6/SiO 2Composite grain sheet.
Three, with composite spinning machine with above-mentioned nylon 6/SiO 2Composite grain sheet carries out melt spinning, and spinning temperature 270-290 ℃, spray silk machine aperture 0.8-1.2mm, spinning speed 50-150m/min, silk hot-stretch under 80-100 ℃ of environment just, 130-170 ℃ is carried out HEAT SETTING, obtains nylon 6/SiO 2The composite fiber product.On the Instron1122 universal testing machine, measure fibrous mechanical property.
In the method for the present invention, the modified Nano SiO that adopts the emulsifier-free emulsion polymerization method to make 2Have the compatibility of height with nylon 6, by fusion, extrude, cooling, granulation, melt spinning, make nylon 6/SiO 2Complex fiber material, technical process is simple, and does not influence the polymerisation of nylon, has both protected and has levied production efficiency, has guaranteed the homogeneous of composite fibre material component and the stablizing of performance that form simultaneously again.
The specific embodiment
Under to enumerate 2 example in detail as follows:
Example 1:
One, with 100 parts of nanometer SiO 2Put into reaction bulb with 1100 parts of deionized waters, move into and disperse 20min in the ultrasonic disperser, again above-mentioned suspension system is moved in Huan's warm water tank, add 1.5 parts of α-Jia Jibingxisuans, 1.0 parts of acrylic acid and 0.012 part of potassium peroxydisulfate then, stir, heat up, under 85 ℃ of temperature, react 3h, after centrifugation, vacuumize makes modified Nano SiO to constant weight 2Powder.
Two, with 100 parts of nylon 6 slices and 3 parts of modified Nano SiO 2Powder, mix thoroughly after, under 280 ℃ of temperature, melt extrude, through the cooling, granulation, make nylon 6/SiO 2Composite grain sheet.
Three, this sheet is carried out melt spinning, 280 ℃ of spinning temperatures, spinning speed 100m/min, silk hot-stretch under 90 ℃ of environment just, 150 ℃ are carried out HEAT SETTING, obtain fiber product.This product sample is measured on the Instro1122 universal testing machine, and its fracture strength is 7.8cN.dtex -1, elongation at break 25.7%, initial modulus are 63.1cN.dtex -1
Example 2
One, with 90 fens nanometer SiO 2Put into reaction bulb with 1000 parts of deionized waters, move into and disperse 20min in the ultrasonic disperser, again above-mentioned suspension system is moved in Huan's warm water tank, add 1.5 parts of α-Jia Jibingxisuans, 1.5 acrylic acid and 0.015 part of potassium peroxydisulfate then, stir, heat up, under 90 ℃ of temperature, react 2h, be dried to constant weight, make modified Nano SiO through the centrifugation final vacuum 2Powder.
Two, with 110 parts of nylon 6 slices and 3 parts of modified Nano SiO 2Powder, mix thoroughly after, under 280 ℃ of temperature, melt extrude, through the cooling, granulation, make nylon 6/SiO 2Composite grain sheet.
Three, this sheet is carried out melt spinning, spinning condition is identical with example 1, obtains fiber product.This product sample is measured on the Instron1122 universal testing machine, and its fracture strength, elongation at break, initial modulus are respectively 7.5cN.dtex -1, 23.5%, 57.8cN.dtex -1

Claims (4)

1. nylon 6/ nanometer SiO 2The complex fiber material preparation method is characterized in that, adopts the emulsifier-free emulsion polymerization method to nanometer SiO 2Carry out surface modification, make nanometer SiO 2Particle surface is enclosed one deck and the good polymer film of nylon 6/poly adduct molecule compatibility, gets modified Nano SiO 2Powder is beneficial to nanometer SiO 2Disperse, with modified Nano SiO 2Powder and nylon 6 slice mix, mix thoroughly, make it to become composite grain sheet by fusion, expressing technique again, with composite spinning machine with nylon 6/SiO 2Composite grain sheet carries out melt spinning, makes nylon 6/ nanometer SiO 2Complex fiber material.
2. nylon 6/ nanometer SiO according to claim 1 2The complex fiber material preparation method is characterized in that, modified Nano SiO 2The preparation method of powder is as follows:
Weight ratio by following material is prepared:
1. nanometer SiO 2, 30-80nm 90-110 part
2. deionized water 900-1100 part
3. alpha-methylmercapto acrylic acid is 1.0~1.5 parts
4. acrylic acid is 1.0~1.5 parts
5. potassium peroxydisulfate is 0.01~0.015 part
Press following technological operation:
With 90-110 part nanometer SiO 2Put into reaction bulb with 2900-1100 part deionized water, move into ultrasonic dispersion 20min in the ultrasonic disperser, add 1.0~1.5 parts of α-Jia Jibingxisuans, 1.0~1.5 parts of acrylic acid and 0.01~0.015 part of potassium peroxydisulfate after above-mentioned suspension system being moved to Water Tank with Temp.-controlled again, stir, heat up, under 70-90 ℃ of temperature, react 2-4h, after centrifugation, vacuumize makes modified Nano SiO to constant weight 2Powder.
3. nylon 6/ nanometer SiO according to claim 1 2The complex fiber material preparation method is characterized in that, nylon 6/ nanometer SiO 2The preparation method of composite grain sheet is as follows:
Weight ratio by following material is prepared:
1. nylon 6 slice 90-110 part
2. modified Nano SiO 21~5 part in powder
Press following technological operation:
With 90-110 part nylon 6 slice and modified Nano SiO 21~5 part of mixing, mix thoroughly after, melt extrude through double screw extruder, melt temperature 270-290 ℃, cooling, granulation make nylon 6/SiO 2Composite grain sheet.
4. nylon 6/ nanometer SiO according to claim 1 2The complex fiber material preparation method is characterized in that, with composite spinning machine with nylon 6/SiO 2Composite grain sheet carries out melt spinning, and spinning temperature 270-290 ℃, spray silk machine aperture 0.8-1.2mm, spinning speed 50-150m/min, silk hot-stretch under 80-100 ℃ of environment just, 130-170 ℃ is carried out HEAT SETTING, obtains nylon 6/SiO 2The composite fiber product.
CN 201010230835 2010-07-14 2010-07-14 Method for manufacturing nylon6/nanometer SiO2 composite fiber material Pending CN101871138A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201010230835 CN101871138A (en) 2010-07-14 2010-07-14 Method for manufacturing nylon6/nanometer SiO2 composite fiber material

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201010230835 CN101871138A (en) 2010-07-14 2010-07-14 Method for manufacturing nylon6/nanometer SiO2 composite fiber material

Publications (1)

Publication Number Publication Date
CN101871138A true CN101871138A (en) 2010-10-27

Family

ID=42996215

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201010230835 Pending CN101871138A (en) 2010-07-14 2010-07-14 Method for manufacturing nylon6/nanometer SiO2 composite fiber material

Country Status (1)

Country Link
CN (1) CN101871138A (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102746715A (en) * 2012-05-24 2012-10-24 北京化工大学 Silica with surface subjected to polymerization modification, and preparation method thereof
CN103290510A (en) * 2013-05-24 2013-09-11 宁波三邦日用品有限公司 Far infrared polypropylene-polyamide composite superfine fiber and production method thereof
CN104356640A (en) * 2014-11-11 2015-02-18 河北工业大学 Preparation method of polyacrylate compound particles for nylon 6 low-temperature toughening modification
CN106192071A (en) * 2016-08-17 2016-12-07 江苏鸿顺合纤科技有限公司 A kind of preparation method of the composite fibre with binding function
CN106400171A (en) * 2016-08-31 2017-02-15 安徽东锦服饰有限公司 Preparation method of fiber forming composite material with permeability
WO2017088199A1 (en) * 2015-11-24 2017-06-01 南通新帝克单丝科技股份有限公司 Nano-modified large-diameter copolymerized polyamide monofilament and production method therefor

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002008913A (en) * 2000-06-19 2002-01-11 Daido Electronics Co Ltd Rare earth magnet and its molding material
CN1357650A (en) * 2000-12-07 2002-07-10 天津市发博纺织材料有限责任公司 Jinlun-6 uvioresistant fiber and its production process
CN101215416A (en) * 2007-12-26 2008-07-09 华东理工大学 Method for preparing nano silicon dioxide/polycaprolactam composite resin

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002008913A (en) * 2000-06-19 2002-01-11 Daido Electronics Co Ltd Rare earth magnet and its molding material
CN1357650A (en) * 2000-12-07 2002-07-10 天津市发博纺织材料有限责任公司 Jinlun-6 uvioresistant fiber and its production process
CN101215416A (en) * 2007-12-26 2008-07-09 华东理工大学 Method for preparing nano silicon dioxide/polycaprolactam composite resin

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
《化工中间体》 20070228 周诗彪等 MA无皂乳液聚合改性纳米二氧化硅 第23-26页 1-4 , 第2期 2 *

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102746715A (en) * 2012-05-24 2012-10-24 北京化工大学 Silica with surface subjected to polymerization modification, and preparation method thereof
CN103290510A (en) * 2013-05-24 2013-09-11 宁波三邦日用品有限公司 Far infrared polypropylene-polyamide composite superfine fiber and production method thereof
CN103290510B (en) * 2013-05-24 2015-07-15 宁波三邦日用品有限公司 Far infrared polypropylene-polyamide composite superfine fiber and production method thereof
CN104356640A (en) * 2014-11-11 2015-02-18 河北工业大学 Preparation method of polyacrylate compound particles for nylon 6 low-temperature toughening modification
CN104356640B (en) * 2014-11-11 2016-05-11 河北工业大学 The preparation method of polyacrylate compound particle for nylon 6 low temperature toughening modifyings
WO2017088199A1 (en) * 2015-11-24 2017-06-01 南通新帝克单丝科技股份有限公司 Nano-modified large-diameter copolymerized polyamide monofilament and production method therefor
CN106192071A (en) * 2016-08-17 2016-12-07 江苏鸿顺合纤科技有限公司 A kind of preparation method of the composite fibre with binding function
CN106400171A (en) * 2016-08-31 2017-02-15 安徽东锦服饰有限公司 Preparation method of fiber forming composite material with permeability

Similar Documents

Publication Publication Date Title
CN101871138A (en) Method for manufacturing nylon6/nanometer SiO2 composite fiber material
CN102719931B (en) Preparation method of functionalized polyester fiber
CN107513162A (en) A kind of preparation method of graphene/nylon 6 nano-composite
CN103102509B (en) Core-shell type carbon microspheres and preparation method and application thereof
CN103044871A (en) Preparation method of polylactic acid/nano-cellulose composite material
CN103570946B (en) A kind of preparation method of polyimide microsphere
CN106832428B (en) A kind of quick water-responsive composite material of shape memory and preparation method thereof
CN107936547A (en) Nylon/graphene/carbon fiber composite powder and preparation method thereof and the application in Selective Laser Sintering
CN102400234B (en) Method for preparing polyacrylonitrile-based carbon fiber protofilament spinning stock solution
CN106566235A (en) High-temperature-resistant nylon/attapulgite composite material and preparation method thereof
CN108360085A (en) Anti-oxidant fiber of a kind of polyphenylene sulfide based on laminar nano particle and preparation method thereof
CN101555631B (en) Industrial method for preparing PPTA spinning slurry with solid sulphuric acid
CN113893792B (en) High-strength SiO with special wettability 2 Base composite aerogel microspheres
CN104109377B (en) A kind of nano silicon/NYLON610 T composites and preparation method thereof
CN102786737B (en) Binary composite polypropylene nucleating agent and preparation method and application thereof
CN104497362B (en) A kind of preparation method of cellulose/nanometer silicon nitride composite membrane
CN102400239A (en) Method for manufacturing polyacrylonitrile base carbon fiber precursor
CN103360529A (en) Controllable synthetic method of micro-sized mono-disperse polystyrene microsphere
CN101205638A (en) Method for producing skin-core structural anti-bacterial fiber by melt direct spinning
JP2008255195A (en) Composite granulated substance of inorganic material-macromolecular resin and method for producing the same
CN102704029B (en) Preparation method for functionalized polyamide fiber
CN109629032A (en) A kind of preparation method of the high stretch modulus polymer nanometer composite fibers based on electrostatic spinning technique
CN106179497A (en) A kind of preparation method of metal nanoparticles loaded nano-fiber composite film
CN108059720B (en) Graphene oxide, sericite and polyamide 6 composite material and preparation method thereof
CN1170018C (en) Method for preparing aluminium oxide-silicon oxide fibre

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C02 Deemed withdrawal of patent application after publication (patent law 2001)
WD01 Invention patent application deemed withdrawn after publication

Open date: 20101027