教授
硕士生导师
教师拼音名称:wangzhaobo
学位:工学博士
职称:教授
学科:材料物理与化学
材料学材料加工工程材料科学与工程其他专业邮箱:
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2019-09-15 山东省优秀教师
2019-05-16 山东省优秀研究生指导教师
2020-12-10 青岛市高校教学名师
2019-09-04 青岛市教书育人楷模
2019-09-15 青岛市新时代最美劳动者
2020-11-10 山东省大学生高分子实用技术大赛“优秀指导教师”
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摘要:Polyethylene-based composites have been successfully prepared via in-situ ethylene polymerization with a metallocene catalyst previously deposited on the surface of kaolin particles. Molecular weight (M w) of the polyethylene matrix has been estimated from intrinsic viscosity. The filler-matrix interfacial adhesion, rheological behavior, induced nucleation effect, and mechanical properties have been investigated in relation to kaolin filler content. Furthermore, these properties have been compared to those of the melt-mixed counterpart composites. As a rule, the polymerization-filled composites exhibit improved rheological behaviors and mechanical properties compared to the analogues prepared by melt mixing. The improved rheological behaviors and mechanical properties of polymerization-filled polyethylene/kaolin composites are thought to result from the lessening of high elasticity of polyethylene melt, the nucleation of polyethylene crystallization, fine filler dispersion, and good filler-polymer interfacial adhesion. By contrast, the melt-mixed counterpart composites show no obvious enhancement of properties. The superiority of polymerization-filled polyethylene/kaolin composites over melt-mixed composites indicates the formation of good kaolin-polyethylene interfacial adhesion in polymerization-filled composites. © VSP 2007.
卷号:14
期号:2
是否译文:否