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Modeling and Simulation of Compression Molding Process for Sheet Molding Compound (SMC) of Chopped Carbon Fiber Composites

机译:切碎碳纤维复合材料的板成型化合物(SMC)压缩成型过程的建模与仿真

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Compression molded SMC composed of chopped carbon fiber and resin polymer which balances the mechanical performance and manufacturing cost presents a promising solution for vehicle lightweight strategy. However, the performance of the SMC molded parts highly depends on the compression molding process and local microstructure, which greatly increases the cost for the part level performance testing and elongates the design cycle. ICME (Integrated Computational Material Engineering) approaches are thus necessary tools to reduce the number of experiments required during part design and speed up the deployment of the SMC materials. As the fundamental stage of the ICME workflow, commercial software packages for SMC compression molding exist yet remain not fully validated especially for chopped fiber systems. In the present study, SMC plaques are prepared through compression molding process. The corresponding simulation models are built in Autodesk Moldflow with the same part geometry and processing conditions as in the molding tests. The output variables of the compression molding simulations, including press force history and fiber orientation of the part, are compared with experimental data. Influence of the processing conditions to the fiber orientation of the SMC plaque is also discussed. It is found that generally Autodesk Moldflow can achieve a good simulation of the compression molding process for chopped carbon fiber SMC, yet quantitative discrepancies still remain between predicted variables and experimental results.
机译:由切碎的碳纤维和树脂聚合物组成的压缩模塑SMC,其平衡机械性能和制造成本为车辆轻质策略提供了一个有希望的解决方案。然而,SMC模塑部件的性能高度取决于压缩成型过程和局部微观结构,这大大增加了部件级性能测试的成本并延长了设计周期。因此,ICME(集成计算材料工程)方法是必要的工具,以减少部分设计期间所需的实验数量,加快SMC材料的部署。作为ICME工作流的基本阶段,SMC压缩成型的商业软件包仍然不完全验证,特别是对于切碎的光纤系统。在本研究中,SMC斑块通过压缩成型方法制备。相应的仿真模型内置于Autodesk Moldflow中,具有与成型测试中的相同的部件几何和处理条件。将压缩模拟的输出变量与零件的压力历史和纤维取向,与实验数据进行比较。还讨论了处理条件对SMC斑块的纤维取向的影响。结果发现,通常Autodesk Moldflow可以实现切碎的碳纤维SMC的压缩成型过程的良好模拟,但是定量差异仍然存在于预测变量和实验结果之间。

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