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Flow-induced crystallization in the injection molding of polymers: A thermodynamic approach

机译:聚合物注射成型中的流致结晶:热力学方法

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摘要

The prediction of the crystallinity and microstructure that develop in injection molding is very important for satisfying the required specifications of molded products. A novel approach to the numerical simulation of the skin-layer thickness and crystallinity in moldings of semi-crystalline polymers is proposed. The approach is based on the calculation of the entropy reduction in the oriented melt and the elevated equilibrium melting temperature by means of a nonlinear viscoelastic constitutive equation. The elevation of the equilibrium melting temperature that results from the entropy reduction between the oriented and unoriented melts is used to determine the occurrence of flow-induced crystallization. The crystallization rate enhanced by the flow effect is obtained by the inclusion of the elevated equilibrium melting temperature in the modified Hoffman-Lauritzen equation. Injection-molding experiments at various processing conditions were carried out on polypropylenes of various molecular weights. The thickness of the highly oriented skin layer and the crystallinity in the moldings were measured. The measured data for the microstructures in the moldings agree well with the simulated results. (C) 2004 Wiley Periodicals, Inc.
机译:注塑成型中结晶度和微观结构的预测对于满足成型产品的所需规格非常重要。提出了一种新的数值模拟半结晶聚合物成型品中的表皮层厚度和结晶度的方法。该方法基于借助非线性粘弹性本构方程计算定向熔体的熵降低和升高的平衡熔解温度。由定向和非定向熔体之间的熵降低引起的平衡熔融温度的升高用于确定流致结晶的发生。通过在改进的Hoffman-Lauritzen方程中包含升高的平衡熔化温度,可以得到通过流动效应提高的结晶速率。在各种加工条件下,对各种分子量的聚丙烯进行了注塑实验。测量了高取向皮层的厚度和模制品中的结晶度。模制品中的微观结构的测量数据与模拟结果非常吻合。 (C)2004年Wiley Periodicals,Inc.

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