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聚乙烯/凹凸棒石纳米复合材料的研究
引用本文:荣峻峰,景振华,洪晓宇,张巍,杨瑞华.聚乙烯/凹凸棒石纳米复合材料的研究[J].乙烯工业,2005,17(1):26-29.
作者姓名:荣峻峰  景振华  洪晓宇  张巍  杨瑞华
作者单位:中国石化石油化工科学研究院,北京,100083
摘    要:采用原位聚合法制备聚乙烯/凹凸棒石纳米复合材料,结果表明:凹凸棒石的纳米级晶须可在聚乙烯树脂中能够较好地分散,聚乙烯在凹凸棒石表面绞缠,并且在不同晶须间绞缠,形成独特的交联网状结构一“有机/无机凝胶”;纳米复合材料能够显著提高聚乙烯的抗冲强度。

关 键 词:纳米复合材料  凹凸棒石  原位聚合法  聚乙烯树脂  无机凝胶  网状结构  抗冲强度  纳米级  晶须
修稿时间:2004年7月23日

Study on polyethylene/palygorskite nanometer composite material
Rong Junfeng,Jing Zhenhua,Hong Xiaoyu,ect. Research Institute of Petroleum Processing,Beijing,P.C.Study on polyethylene/palygorskite nanometer composite material[J].Ethylene Industry,2005,17(1):26-29.
Authors:Rong Junfeng  Jing Zhenhua  Hong Xiaoyu  ect Research Institute of Petroleum Processing  Beijing  PC
Affiliation:Rong Junfeng,Jing Zhenhua,Hong Xiaoyu,ect. Research Institute of Petroleum Processing,Beijing,P.C,100083
Abstract:A polyethylene/palygorskite nanometer composite material was prepared by in-situ polymerization approach. The results showed: the nano-whisker of palygorskte was evenly dispersed in the polyethylene matrix, the molecules of polyethylene was entangled with the nano-whiskers of parlygorskite, and a kind of special network-"organic/inorganic" gel was formed. The impact strength of the nanometer composite material was greatly improved?
Keywords:Nanometer composite material  Polyethylene  Palygorskite  In-situ polymerization  
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