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Constitutive modeling and impact simulation of random carbon fiber polymer matrix composites for automotive applications

机译:用于汽车应用随机碳纤维聚合物基质复合材料的本构模拟及影响模拟

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Damage constitutive models based on micromechanical formulation and a combination of micromechanical and macromechanical effects were developed by the authors to predict progressive damage in aligned and randomly oriented carbon fiber polymer composites. The models are extended in order to account for the microcrack effect on the mechanical behavior of the composites. Progressive interfacial fiber debonding models are considered in accordance with a statistical function to describe the varying probability of fiber debonding. Finally, the complete progressive damage constitutive models are implemented into the finite element code DYNA3D to perform impact simulation of random fiber-reinforced composites for future use in advanced automotive materials. The implemented model is applicable for shell and solid elements in three- dimensional analysis, as well as axisymmetric elements in two-dimensional analysis. In addition, the numerical incorporation allows a prediction of the mechanical response of large composite structures under stress or during impact and eliminates the need for expensive, large-scale experiments.
机译:作者开发了基于微机械制剂的损伤本构模型及微机械和大致力学效应的组合,以预测对齐和随机取向的碳纤维聚合物复合材料的逐渐损伤。延长模型,以便考虑对复合材料的力学行为的微裂纹效应。渐进界面纤维剥离模型是根据统计功能考虑的,以描述光纤剥离的不同可能性。最后,完整的渐进损坏本构模型被实施为有限元码Dyna3d,以执行随机纤维增强复合材料的影响模拟,以便在先进的汽车材料中使用。实施的模型适用于三维分析中的外壳和固体元素,以及二维分析中的轴对称元素。此外,数值掺入允许预测应力或冲击期间大型复合结构的机械响应,并消除对昂贵的大规模实验的需求。

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