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首页> 外文期刊>Journal of Materials Science >Effective in situ polyamide 6 microfibrils in isotactic polypropylene under microinjection molding: significant improvement of mechanical performance
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Effective in situ polyamide 6 microfibrils in isotactic polypropylene under microinjection molding: significant improvement of mechanical performance

机译:显微注射成型过程中等规聚丙烯中的有效原位聚酰胺6微纤维:机械性能的显着改善

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摘要

Microparts of isotactic polypropylene (iPP)/polyamide 6 (PA6) blends were prepared with a particular injection molding method known as microinjection molding (MIM). Continuous and strong shear action exerted on the melts of iPP/PA6 directly promoted the formation of in situ PA6 microfibril in MIM. Moreover, hierarchical structures, namely, spherulite, cylindrites, and transcrystallization, were observed in the microparts. The synergetic effect of PA6 in situ microfibrils, beta-nucleating agent (beta-NA), and strong shear action even induced more oriented beta-crystals around the surface of PA6 microfibrils in the core layer and markedly increased the beta-crystal content. Results showed that adding PA6 and beta-NA markedly raised the crystallization temperature of iPP, and the effect of PA6 microfibrils was evidently more pronounced than that of PA6 spherical particles in conventional blends which implies more nucleation sites on the microfibrils. Moreover, strong orientation of iPP molecular chain was also confirmed by 2D-WAXD. It is well worth mentioning that the mechanical property was remarkably improved by these special morphology and crystalline structures.
机译:等规聚丙烯(iPP)/聚酰胺6(PA6)共混物的微零件是使用一种称为微注射成型(MIM)的特殊注射成型方法制备的。对iPP / PA6熔体施加的持续而强烈的剪切作用直接促进了MIM中原位PA6微纤维的形成。此外,在微零件中观察到层状结构,即球晶,柱状晶和转晶。 PA6原位微纤丝,β成核剂(β-NA)和强剪切作用的协同作用甚至在核心层中的PA6微纤丝表面周围诱导了更多取向的β晶体,并显着增加了β晶体含量。结果表明,添加PA6和β-NA显着提高了iPP的结晶温度,并且在常规共混物中,PA6微纤维的作用明显比PA6球形颗粒的作用更明显,这意味着微纤维上有更多的成核位点。此外,2D-WAXD也证实了iPP分子链的强取向。值得一提的是,这些特殊的形态和晶体结构显着提高了机械性能。

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