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ID:33810392
大小:4.36 MB
页数:103页
时间:2019-03-01
《环氧灌封材料的制备、结构与性能研究》由会员上传分享,免费在线阅读,更多相关内容在学术论文-天天文库。
1、西北工业大学硕士学位论文但活性硅微粉用量较大,材料的工艺性能明显降低;纳米Si0:对环氧灌封材料具有显著的增强和增韧作用,冲击强度、弯曲强度由原来的13.95kJ/m2和64.95MPa分别提高到27.64kJ/m2和136.68MPa。蒙脱土使环氧灌封材料的冲击强度和弯曲强度由纯环氧树脂的14.24kJ/m“和91.96MPa分别提高到18.24kJ/m2和109.84MPa;耐热性得到了很大提高,当有机蒙脱土含量为5%时纳米复合材料玻璃化温度比纯环氧固化物的高出13.20C;热变性温度最大提高160C;线膨胀系数当蒙脱土含量为1%时,环氧
2、灌封材料的线膨胀系数比未加时降低了44%,吸水率明显下降。关键词环氧树脂,灌封材料,硅微粉,纳米Si02l蒙脱土,纳米复合材料,原位聚合,插层聚合ABSTRACTABSTRACTEncapsulatingmaterialsofepoxyresinaremodifiedwithHGH,nano-SiO2andorganophilicmontmorillonite,inthepresentinvestigation,themicrostructue,somepropertiesandinfluencefactorsaboutnano-SiO2an
3、dorganophilicmontmorillonitemodifiedEncapsulatigmaterialshavebeensystematicallystudiedusingX-raydiffraction,electronmicroscopyanddifferentialthermalanalysismeasurementtechniques.ThemodifiedepoxyresinmaterialswithHGandHGHhavefirstbeenpreformed.Propertiestestresultsshowthatth
4、eelectricitypropertiesandheatdistortiontemperatureareimprovedbyadditionofHGorHGHintheepoxyresinmaterials,andthematerialscontainingHGorHGHhavelowerlinearthermalexpansioncoefficiencycomparedwithneatepoxyresin.Whenthemodifiedmaterialswereinwaterfor24hours,themechanicalproperti
5、esandelectricitypropertiesofthematerialswithHGHarebeterthanthatofthematerialswithHG.Epoxyresin/nano-Si02compositematerialswereobtainedfrominsitupolymerization,andthenthemicrostructureandpropertiesofthematerialsareinvestigatedbytransmissionelectronmicroscopy,scanningelectron
6、microscopyanddiferentialscanningcalorimetry,etc.Resultsindicatedthatthemicrostructureofthemodifiedmaterialsshewthestructureofnanometermaterials,andthemechanicalproperties,heatdistortiontemperatureandelectricitypropertiesandofthematerialswereallimprovedbyadditionofnano-SiO2.
7、Afterthenano-Si02waspretreatedwithorganicsiliconcouplingagent(H2N-CH2CH2CH2叫Si(OC2HS)}),thenano-Si02particlesweredispersedinepoxyresinmatrixhomogeneously.Whenthecontentofnano-Si02is3wt%,themechanicalpropertiesofthenanocompositeswerethebest,impactstrengthis98%higherthanthato
8、fepoxyresin,flexuralstrengthis112%higherthanwhennano-SiO2isOwt%.Thediferentialscan
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