CN106118525A - A kind of nano-oxide doped and compounded microporous membrane insulating bag band - Google Patents

A kind of nano-oxide doped and compounded microporous membrane insulating bag band Download PDF

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Publication number
CN106118525A
CN106118525A CN201610473246.XA CN201610473246A CN106118525A CN 106118525 A CN106118525 A CN 106118525A CN 201610473246 A CN201610473246 A CN 201610473246A CN 106118525 A CN106118525 A CN 106118525A
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nano
minute
compounded
deionized water
polrvinyl chloride
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王喜东
琚雄
琚一雄
周建军
郜海文
张君君
陈玲
张爱华
宋志威
琚辉
琚一辉
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Hefei Deren Electronic Devices Co Ltd
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Hefei Deren Electronic Devices Co Ltd
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Priority to CN201610473246.XA priority Critical patent/CN106118525A/en
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Abstract

The invention discloses a kind of nano-oxide doped and compounded microporous membrane insulating bag band, it is made up of the raw material of following weight portion: halloysite nanotubes 1.5 1.6, silane coupler kh5700.75 0.77, deionized water is appropriate, dehydrated alcohol is appropriate, sodium lauryl sulphate 1.2 1.4, alkylphenol polyoxyethylene 1.4 1.5, butyl acrylate 55 60, Isooctyl acrylate monomer 40 43, isotactic polypropylene 40 44, polrvinyl chloride 53 55, dibenzylidene sorbitol 34, dioctyl phthalate is appropriate, aluminum isopropylate. 18 20, four n-pro-pyl zirconates 23, N, N, dimethyl acetylamide 0.3 0.4, calcium stearate 23, glycerol 34.The product viscosity that the present invention makes is good, will not be layered, warpage, applied widely.

Description

A kind of nano-oxide doped and compounded microporous membrane insulating bag band
Technical field
The present invention relates to technical field of electricity, particularly relate to a kind of nano-oxide doped and compounded microporous membrane insulating wrapping Band.
Background technology
Insulating bag band is mainly used as looping electric wire, the joint of cable, interface, in addition to for the insulation of common electrical, also Be widely used in engineering pipeline protection, in peep route protection and automotive wire bundle ties up the fields such as protection.The fabricbase of prior art is exhausted Edge adhesive tape is made up of fabricbase and rubber, Colophonium, filler coatings glue, has preferable mechanical strength and an insulation effect, but cloth Base adhesive tape is the most aging, water proofing property, poor sealing performance, and at high temperature under high pressure, the shielding properties of adhesive tape is greatly reduced, and causing cannot For more field.Existing poly-nitrogen ethylene pressure-sensitive tape is a kind of universal electric sticking tape, and it is cheap, has Excellent electric property and physical and mechanical property, electrical strength is up to 60kV/mm, and specific insulation is high, has soft and easy-to-draw The feature such as stretch, also there is the features such as excellent acid and alkali-resistance, ageing-resistant, cold-resistant and moisture-proof, be widely used in the company of alternating current-direct current electric wire Connect winding and being wrapped of insulation protection, the manufacture of electrical equipment, various wire harness and cable, its shortcoming be heatproof rank not Height, heat dispersion is poor.
" be applicable to emulsion pressure-sensitive adhesive and the manufacture method thereof of flexible PVC electric adhesive tape " article, although The advantages such as the adhesive tape softening point made is low, cohesive force strong, quick solidifying, but owing to the straight-chain molecular structure of polyacrylate determines Its performance such as thermostability and mechanical strength is not enough, in addition development of Acrylate Emulsion Pressure-Sensitive Adhesive coating and rate of drying is slow, be dried The shortcomings such as energy consumption is high and surface tension is higher make it apply to be restricted, for widening its range, improve its combination property, There is a need to polrvinyl chloride base material and acrylate pressure-sensitive adhesive are modified.
Summary of the invention
The object of the invention is contemplated to make up the defect of prior art, it is provided that a kind of nano-oxide doped and compounded micropore is thin Film insulating bag band.
The present invention is achieved by the following technical solutions:
A kind of nano-oxide doped and compounded microporous membrane insulating bag band, is made up of the raw material of following weight portion: Ai Luo Stone nanotube 1.5-1.6, silane coupler kh5700.75-0.77, deionized water is appropriate, dehydrated alcohol is appropriate, dodecyl sulfur Acid sodium 1.2-1.4, alkylphenol polyoxyethylene 1.4-1.5, butyl acrylate 55-60, Isooctyl acrylate monomer 40-43, isotactic gather Propylene 40-44, polrvinyl chloride 53-55, dibenzylidene sorbitol 3-4, dioctyl phthalate are appropriate, aluminum isopropylate. 18- 20, four n-pro-pyl zirconate 2-3, N, N ,-dimethyl acetylamide 0.3-0.4, calcium stearate 2-3, glycerol 3-4.
Described a kind of nano-oxide doped and compounded microporous membrane insulating bag band, is made up of step in detail below:
(1) ultrasonic disperse in the dehydrated alcohol of addition 30-35 times amount in galapectite is obtained suspension in 40-50 minute, then add Enter the deionized water with dehydrated alcohol equivalent and silane coupler kh570, be heated to 70-75 DEG C, after stirring is reacted 24 hours Mixture is centrifuged with the speed of 4000 revs/min, and washs to neutral, the product obtained in vacuum drying oven with 90- 100 DEG C of drying, obtain modified halloysite nanotubes;
(2) by modified halloysite nanotubes ultrasonic disperse in the deionized water of 80-85 times amount, be subsequently adding butyl acrylate, Isooctyl acrylate monomer, sodium lauryl sulphate, stir on magnetic stirrer, then heats to 80-85 DEG C, adds half The alkylphenol polyoxyethylene of amount, continuously adds remaining alkylphenol polyoxyethylene after being incubated 30-60 minute, is warming up to 90- 95 DEG C, it is cooled to room temperature after being incubated 60-90 minute, obtains modified acrylic acid emulsion;
(3) by aluminum isopropylate., four n-pro-pyl zirconates, N, N ,-dimethyl acetylamide mixes, and is heated to 60-70 DEG C and stirs, It is subsequently adding the deionized water of total amount equivalent, after being warming up to 350-380 DEG C of reaction 40-60 minute, system is distilled, obtain Nano-oxide dispersion liquid;
(4) polrvinyl chloride, isotactic polypropylene mixing are put in reactor, be subsequently adding the O-phthalic of total amount 3.5-4 times amount Dioctyl phthalate and remaining residual components, add step (3) after stirring 60-90 minute at 180 DEG C and obtain under nitrogen protective condition The nano-oxide dispersion liquid arrived, continues insulation and forms casting solution in 2-3 hour, by knifing machine, casting solution is made Flat Membrane, Controlling to scrape film temperature is 180 DEG C, finally by Thermal inactive technology, immerses 25 DEG C of solidification water-baths through Flat Membrane and divides mutually From, then extract through dehydrated alcohol, obtain polypropylene polrvinyl chloride composite micro porous film after drying;
(5) modified acrylic acid emulsion coating device is uniformly coated on polypropylene polrvinyl chloride composite micro porous film surface, is put Toast 3-4 minute at 75-80 DEG C of baking oven, be subsequently placed in 40 DEG C of constant temperature ageing ovens aging 24 hours, finally cut into banding, i.e. ?.
The invention have the advantage that Thermal inactive method is applied to pressure sensitive insulating wrapping band base film by the present invention In preparation, the composite microporous thin film of polypropylene polrvinyl chloride made, the advantage having polypropylene and polrvinyl chloride concurrently, waterproof, heat-resisting Property is good, resistance to chemical attack, and porosity is moderate simultaneously, is evenly distributed, and micropore communicates with air, can form air insulation structure, Heat dispersion is excellent simultaneously;Polyacrylate dispersion is changed by the present invention also by the mode adding modified halloysite nanotubes Property, the activeness and quietness of modified halloysite nanotubes and the strong interaction with polymeric substrate thereof, so that polymer molecule Chain mobility is deteriorated so that the pressure sensitive adhesive cohesive strength made and creep-resistant property are remarkably reinforced, and the heat that improve pressure sensitive adhesive is steady Qualitative and heat-resisting quantity, has good peel strength and initial bonding strength simultaneously.
The present invention has prepared zirconium oxide by a series of technique and has compounded the micropore laminated film of nano aluminium oxide doping, Improve heat dispersion further, improve the resistance to sparking energy of thin polymer film simultaneously, solve existing insulating bag band easily quilt Surge voltage punctures the problem burnt, it is ensured that product has pliability, puncture resistance and the electrical insulating property of excellence, and makes Product viscosity good, will not be layered, warpage, applied widely.
Detailed description of the invention
A kind of nano-oxide doped and compounded microporous membrane insulating bag band, is prepared by the raw material of following weight portion (kilogram) Make: halloysite nanotubes 1.5, silane coupler kh5700.75, deionized water is appropriate, dehydrated alcohol is appropriate, dodecyl sulfur Acid sodium 1.2, alkylphenol polyoxyethylene 1.4, butyl acrylate 55, Isooctyl acrylate monomer 40, isotactic polypropylene 40, polrvinyl chloride 53, dibenzylidene sorbitol 3, dioctyl phthalate be appropriate, aluminum isopropylate. 18, four n-pro-pyl zirconate 2, N, N, diformazan Yl acetamide 0.3, calcium stearate 2, glycerol 3.
Described a kind of nano-oxide doped and compounded microporous membrane insulating bag band, is made up of step in detail below:
(1) within 40 minutes, obtain suspension by galapectite adds ultrasonic disperse in the dehydrated alcohol of 30 times amount, be subsequently adding and nothing The deionized water of water-ethanol equivalent and silane coupler kh570, be heated to 70 DEG C, stirring reaction 24 hours after by mixture with The speed of 4000 revs/min is centrifuged, and washs to neutral, and the product obtained with 90 DEG C of drying, obtains in vacuum drying oven Modified halloysite nanotubes;
(2) by modified halloysite nanotubes ultrasonic disperse in the deionized water of 80 times amount, it is subsequently adding butyl acrylate, propylene Acid different monooctyl ester, sodium lauryl sulphate, stir on magnetic stirrer, then heat to 80 DEG C, adds the alkane of half amount Base phenol polyethenoxy ether, continuously adds remaining alkylphenol polyoxyethylene after being incubated 30 minutes, is warming up to 90 DEG C, is incubated 60 points It is cooled to room temperature after clock, obtains modified acrylic acid emulsion;
(3) by aluminum isopropylate., four n-pro-pyl zirconates, N, N, dimethyl acetylamide mixes, is heated to 60 DEG C and stirs, then Add the deionized water of total amount equivalent, after being warming up to 350 DEG C of reactions 40 minutes, system is distilled, obtain nano-oxide and divide Dissipate liquid;
(4) polrvinyl chloride, isotactic polypropylene mixing are put in reactor, be subsequently adding the phthalic acid of total amount 3.5 times amount Dioctyl ester and remaining residual components, what after stirring 60 minutes at 180 DEG C under nitrogen protective condition, addition step (3) obtained receives Rice oxidate dispersion solution, continues insulation and forms casting solution in 2 hours, by knifing machine, casting solution is made Flat Membrane, controls knifing Temperature is 180 DEG C, finally by Thermal inactive technology, immerses 25 DEG C of solidification water-baths through Flat Membrane and is separated, then through nothing Water-ethanol extracts, and obtains polypropylene polrvinyl chloride composite micro porous film after drying;
(5) modified acrylic acid emulsion coating device is uniformly coated on polypropylene polrvinyl chloride composite micro porous film surface, is put Toast 3 minutes at 75 DEG C of baking ovens, be subsequently placed in 40 DEG C of constant temperature ageing ovens aging 24 hours, finally cut into banding, to obtain final product.
The insulating bag band that the present invention makes, by test, the hot strength of product more than 15 newton/centimetre, meet state Family's standard;Take appropriate amount of sample when being pasted onto on sample board, with the speed rolling three times back and forth of 300 millis m/min, deposit 30 minutes, 180 ° of peel strengths are up to state standards.

Claims (2)

1. a nano-oxide doped and compounded microporous membrane insulating bag band, it is characterised in that by the raw material of following weight portion Preparation is made: halloysite nanotubes 1.5-1.6, silane coupler kh5700.75-0.77, deionized water is appropriate, dehydrated alcohol is suitable Amount, sodium lauryl sulphate 1.2-1.4, alkylphenol polyoxyethylene 1.4-1.5, butyl acrylate 55-60, Isooctyl acrylate monomer 40-43, isotactic polypropylene 40-44, polrvinyl chloride 53-55, dibenzylidene sorbitol 3-4, dioctyl phthalate be appropriate, Aluminum isopropylate. 18-20, four n-pro-pyl zirconate 2-3, N, N ,-dimethyl acetylamide 0.3-0.4, calcium stearate 2-3, glycerol 3-4.
A kind of nano-oxide doped and compounded microporous membrane insulating bag band, it is characterised in that by Step is made in detail below:
(1) ultrasonic disperse in the dehydrated alcohol of addition 30-35 times amount in galapectite is obtained suspension in 40-50 minute, then add Enter the deionized water with dehydrated alcohol equivalent and silane coupler kh570, be heated to 70-75 DEG C, after stirring is reacted 24 hours Mixture is centrifuged with the speed of 4000 revs/min, and washs to neutral, the product obtained in vacuum drying oven with 90- 100 DEG C of drying, obtain modified halloysite nanotubes;
(2) by modified halloysite nanotubes ultrasonic disperse in the deionized water of 80-85 times amount, be subsequently adding butyl acrylate, Isooctyl acrylate monomer, sodium lauryl sulphate, stir on magnetic stirrer, then heats to 80-85 DEG C, adds half The alkylphenol polyoxyethylene of amount, continuously adds remaining alkylphenol polyoxyethylene after being incubated 30-60 minute, is warming up to 90- 95 DEG C, it is cooled to room temperature after being incubated 60-90 minute, obtains modified acrylic acid emulsion;
(3) by aluminum isopropylate., four n-pro-pyl zirconates, N, N ,-dimethyl acetylamide mixes, and is heated to 60-70 DEG C and stirs, It is subsequently adding the deionized water of total amount equivalent, after being warming up to 350-380 DEG C of reaction 40-60 minute, system is distilled, obtain Nano-oxide dispersion liquid;
(4) polrvinyl chloride, isotactic polypropylene mixing are put in reactor, be subsequently adding the O-phthalic of total amount 3.5-4 times amount Dioctyl phthalate and remaining residual components, add step (3) after stirring 60-90 minute at 180 DEG C and obtain under nitrogen protective condition The nano-oxide dispersion liquid arrived, continues insulation and forms casting solution in 2-3 hour, by knifing machine, casting solution is made Flat Membrane, Controlling to scrape film temperature is 180 DEG C, finally by Thermal inactive technology, immerses 25 DEG C of solidification water-baths through Flat Membrane and divides mutually From, then extract through dehydrated alcohol, obtain polypropylene polrvinyl chloride composite micro porous film after drying;
(5) modified acrylic acid emulsion coating device is uniformly coated on polypropylene polrvinyl chloride composite micro porous film surface, is put Toast 3-4 minute at 75-80 DEG C of baking oven, be subsequently placed in 40 DEG C of constant temperature ageing ovens aging 24 hours, finally cut into banding, i.e. ?.
CN201610473246.XA 2016-06-24 2016-06-24 A kind of nano-oxide doped and compounded microporous membrane insulating bag band Pending CN106118525A (en)

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Application publication date: 20161116