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Flow Induced Crystallization of Poly(ether-block-amide) from the Microinjection Molding Process and its Effect on Mechanical Properties

机译:微观注塑成型过程中流动诱导的聚醚嵌段酰胺结晶及其对力学性能的影响

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摘要

Crystallization during microinjection molding is investigated relative to process conditions. Modulus and hardness of the skin layer are higher than the core layer, regardless of core structure. Young's modulus, strain at break and yield stress all increase with an increase of skin ratio. The relationship between process, morphology and mechanical properties is studied for micro products. By using in-line process monitoring, flow induced crystallization is characterized by shear stress and apparent specific work. Shear stress is shown to be a good candidate to characterize the formation of highly oriented structures under actual microinjection molding processes. This may provide a method for in-line control of morphology development, and then final properties, by controlling the flow conditions.
机译:相对于工艺条件,研究了微注射成型过程中的结晶。不论芯结构如何,表皮层的模量和硬度均高于芯层。杨氏模量,断裂应变和屈服应力均随着表皮比的增加而增加。研究了微型产品的工艺,形态和机械性能之间的关系。通过使用在线过程监控,流致结晶的特征在​​于剪切应力和明显的比功。剪切应力被证明是表征在实际的微注射成型过程中高度取向结构形成的良好候选者。这可以提供通过控制流动条件来在线控制形态发展,然后最终特性的方法。

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