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Determination of the transition temperature at different cooling rates and its influence on prediction of shrinkage and warpage in injection molding simulation

机译:注塑模拟中不同冷却速率下转变温度的确定及其对收缩和翘曲预测的影响

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摘要

In injection molding simulation the phase change from melt to solid state is usually simplified by using a so called transition temperature. In the present work, the transition temperatures of several amorphous and semicrystalline polymers were determined using DSC-runs at different cooling rates. The transition temperature was described as a function of cooling rate. The obtained transition temperatures of the semicrystalline polymers were used in injection molding simulations with the commercial software package Autodesk Moldflow Insight 2010 to calculate the shrinkage and warpage of box-shaped test parts. The simulation results were compared with the experimental values of optically measured injection-molded boxes. The results showed a strong influence of the transition temperatures on the simulation results of a 3D model and a very low influence for a 2.5D model. Transition temperatures obtained at higher cooling rates improved the 3D simulation results for several dimensions.
机译:在注射成型模拟中,通常通过使用所谓的转变温度来简化从熔体到固态的相变。在本工作中,使用DSC运行以不同的冷却速率确定了几种无定形和半结晶聚合物的转变温度。转变温度被描述为冷却速率的函数。使用商业软件包Autodesk Moldflow Insight 2010将获得的半结晶聚合物的转变温度用于注塑成型仿真中,以计算盒状测试零件的收缩率和翘曲率。将模拟结果与光学测量的注塑成型盒的实验值进行了比较。结果表明,转变温度对3D模型的模拟结果有很大的影响,而对2.5D模型的影响很小。在较高的冷却速率下获得的转变温度改善了多个尺寸的3D模拟结果。

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