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Microstructural evolution of PET under stretching and during stretch blow moulding

机译:拉伸下宠物和拉伸吹塑过程中的宠物微观结构演变

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Strain induced crystallisation of PET designed for stretch blow molding is studied combining well-controlled tensile tests and free blowing on a stretch blow prototype. Microstructure evolution is followed by WAXS and SAXS. Observations on blown parts clearly show that the microstructure can differ along the bottle and from processing conditions to another. Difference can be observed on crystalline orientation, periodic arrangement at the level of lamellae and long period. Range of long period, 8.5 to 13 nm is in agreement with literature. In certain case lamellar organisation disappears. Despite of high level of strain and evidence for strain hardening to occur during blowing no perfect crystalline pattern is observed, except in very thick zones. Interrupted tensile tests followed by quenching demonstrates that strain hardening is not correlated to prefect crystallisation. Microstructure clearly depends on the three parameters: temperature, strain rate and strain. It is concluded that strain hardening is mainly controlled by first stages of crystallisation and that actual crystallisation occurs during a following relaxation step. This later is then highly dependent upon cooling step.
机译:研究了用于拉伸吹塑模塑的宠物的诱导晶体的晶体,组合良好控制的拉伸试验,并在拉伸吹吹式原型上自由吹。微观结构进化之后是蜡和萨克斯。关于吹零件的观察清楚地表明微观结构可以沿着瓶子和处理条件不同。在晶体取向上,可以观察到差异,在LAMLELAE水平和长期的周期性排列。长期长期,8.5至13纳米与文献一致。在某些情况下,层状组织消失了。尽管存在高水平的应变和施加应变硬化的证据,但在吹气期间没有观察到完美的晶体图案,除了非常厚的区域。中断的拉伸试验,然后淬火证明应变硬化与Ege Crystallation不相关。微观结构显然取决于三个参数:温度,应变率和应变。得出结论,应变硬化主要由晶体的第一阶段控制,并且在下列弛豫步骤期间发生实际结晶。然后,这对冷却步骤高度依赖。

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