Numerical simulation analysis of forming of continuous fiber reinforced polypropylene composites: Relaxation, creep, and hot stamping

Wei Guo, Jialong Zhao, Feng Zhao, Xiaorui Liu, Tao Feng, Hongxu Yan
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Abstract

In this study, the viscoelastic constitutive equation of continuous glass fiber reinforced polypropylene composites based on the generalized Maxwell model and SCFM model was constructed by combining genetic algorithm. Based on this, a multi-scale numerical model for describing material relaxation and creep is proposed, and the accuracy of different scale models was compared through experiments. The forming state of the workpiece under various stamping speeds and preheating temperatures was also examined using a hot stamping numerical model. The independent design of the hot stamping hemispherical mold was used to confirm the hot stamping model's accuracy. The study's findings demonstrate that the macroscopic model can accurately simulate the relaxation and creep of composite materials. The hot stamping simulation results are match up well with experimental results. Composite molding defects appeared at the waist of the part, and defects were accompanied by resin loss.
连续纤维增强聚丙烯复合材料成型的数值模拟分析:松弛、蠕变和热冲压
本研究基于广义麦克斯韦模型和 SCFM 模型,结合遗传算法构建了连续玻璃纤维增强聚丙烯复合材料的粘弹性组成方程。在此基础上,提出了描述材料松弛和蠕变的多尺度数值模型,并通过实验比较了不同尺度模型的精度。此外,还利用热冲压数值模型研究了不同冲压速度和预热温度下工件的成形状态。热冲压半球形模具的独立设计用于确认热冲压模型的准确性。研究结果表明,宏观模型可以准确模拟复合材料的松弛和蠕变。热冲压模拟结果与实验结果吻合良好。复合材料成型缺陷出现在零件的腰部,缺陷伴随着树脂流失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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