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高抗冲聚苯乙烯中银纹的引发与终止
引用本文:杨军,刘景江.高抗冲聚苯乙烯中银纹的引发与终止[J].高分子学报,2000(3):361-363.
作者姓名:杨军  刘景江
作者单位:中国科学院长春应用化学研究所高分子物理开放实验室
摘    要:银纹是由孔穴和断裂面间相联结的原纤维组成的微小裂纹,其中原纤维的体积分数可达40%.银纹的体积分数与材料的韧性成正比.银纹化是高抗冲聚苯乙烯(HIPS)在脆化温度以下,抵抗破坏而消耗外界能量的主要方式.银纹的产生与材料内部不均一性所导致的应力集中有关.HIPS中的橡胶粒子能够控制银纹在本体中均匀地发展,这是HIPS高韧性的原因1].HIPS的分散相是由聚丁二烯(PB)为连续相,PS为分散相构成的细胞结构粒子.通常HIPS中PB的含量为7%~8%,而细胞结构粒子的体积分数可高达23%,可见细胞结构粒子内部PS的含量为PB的…

关 键 词:高抗冲聚苯乙烯  银纹  橡胶增韧机理

INITIATION AND TERMINATION OF CRAZES IN HIGH IMPACT POLYSTYRENE
YANG Jun,LIU Jingjiang.INITIATION AND TERMINATION OF CRAZES IN HIGH IMPACT POLYSTYRENE[J].Acta Polymerica Sinica,2000(3):361-363.
Authors:YANG Jun  LIU Jingjiang
Abstract:Initiation and termination of crazes in high impact polystyrene (HIPS) were studied by transmission electron microscope. Instead of the first initiation of crazes in the vicinity of the equator or rubber particles, ribbon\|shaped crazes beyond the region were observed on the TEM photos. The starting point and the end point of each ribbon were noticed not to be randomly located on the surface of the cellar particles in HIPS. The spots connecting to the ligaments between the PS rigid inclusions in the cellar particle are found to be the locations where crazes were initiated and terminated preferentially. In addition, the crazes generated at those spots were much thicker and longer. The thoughness of high impact polystyrene was enhanced by the multiple crazes formed in the matrices, through the reduction of the craze stress at room temperature with increasing the volume fraction of polybutadiene at these spots in the dispersed phase. These results conducted that not only the cell structure of the domains in HIPS was not homogeneous but also the polybutadiene ligaments between PS rigid inclusions in the domains were inhomogeneous. Therefore, the responsibility of those polybutadiene ligaments with different thickness to the stresses was different and it forced the crazing initiation and growing preferentially. The crazes were created in some regions in the matrices; On the contrary, rare crazes were formed in the other regions in spite of these regions surrounded around the same dispersed particles. The relation between the spots on the surface and the inner structure of the cellar particle was discussed in this paper.
Keywords:HIPS  Craze  Rubber-toughening mechanism  
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