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Tailoring toughness of injection molded bar of polypropylene random copolymer through processing melt temperature

机译:通过加工熔体温度调节聚丙烯无规共聚物注塑棒的韧性

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摘要

In this study, a facile route to realize the superior toughness of injection molded polypropylene random copolymer (PPR) is reported. The toughness of PPR is increased about twofold when the processing melt temperature increases from 180 to 250 °C. Systematic and detailed structural characterizations have been carried out to establish the structure-property relationships by using polarized light microscopy, scanning electron microscopy, infrared microscopy and dynamic mechanical analysis. It is found that increasing the melt temperature is beneficial for the coalescence of rubbery domains and enhanced molecular mobility which are mainly responsible for the improvement in toughness. Other factors, such as molecular orientation, crystallinity and so on, seem to have little effect. The vital role of enhanced molecular mobility in improving toughness is further demonstrated by the annealing of injection molded samples at elevated temperature, i.e. 110 °C.
机译:在这项研究中,报告了一种实现注塑聚丙烯无规共聚物(PPR)优异韧性的简便途径。当加工熔体温度从180℃增加到250℃时,PPR的韧性增加了两倍。已经进行了系统和详细的结构表征,以通过使用偏振光显微镜,扫描电子显微镜,红外显微镜和动态力学分析来建立结构-性能关系。发现提高熔体温度有利于橡胶域的聚结和增强的分子迁移率,这主要是韧性的提高。其他因素,例如分子取向,结晶度等,似乎影响很小。通过在升高的温度,即110℃下对注射成型的样品进行退火,进一步证明了提高分子迁移率在改善韧性中的重要作用。

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