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Experimental determination and numerical prediction of mechanical properties of injection molded self-reinforcing polymer composites

机译:注塑自增强聚合物复合材料力学性能的实验确定和数值预测

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摘要

A novel method to calculate the distribution of tensile modules of injection modeled PET/LCP blends across the thickness of the mold cavity has been developed, base don the generalized Halpin-Tsai composite model, but with a variable fiber aspect ratio. Using this method, we re able to make a number of predictions regarding the effects of melt temperature, mold temperature, injection speed, and LCP volume fraction on the moduli of the injection molded blends. Our predictions show that in order to optimize the reinforcement effect of the in-situ formed LCP fibers in the blends, low mold temperature and low injection speed are required. These results are in good agreement with experimental results.
机译:基于通用的Halpin-Tsai复合模型,但具有可变的纤维长径比,已开发出一种新的方法来计算注射成型的PET / LCP混合物在模腔厚度上的拉伸模量分布。使用这种方法,我们能够对熔体温度,模具温度,注射速度和LCP体积分数对注塑共混物模量的影响做出许多预测。我们的预测表明,为了优化共混物中原位形成的LCP纤维的增强效果,需要低模具温度和低注射速度。这些结果与实验结果非常吻合。

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