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Using Lagrangian particles to efficiently describe microstructure evolution in metal forming - application to texture-induced mechanical anisotropy

机译:使用拉格朗日粒子有效地描述金属成形过程中的微观结构演变-在结构诱导的机械各向异性中的应用

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The paper proposes an original use of the Lagrangian particles concept for finite element computation of microstructure evolution in metal forming. The method amounts to distributing incomplete representations of the microstructure among the integration points of the mesh while a complete microstructure is associated with each Lagrangian particle. This decreases the computation time and enables the transport of microstructural variables when remeshing. While the method is presented for any kind of discretized microstructure, it is applied here to the prediction of mechanical anisotropy induced by crystallographic texture. In this specific case, the numerical predictions are validated against experiment by considering compression of a textured aluminium alloy (AA7175). The model accuracy is assessed with respect to both mechanical anisotropy and texture evolution.
机译:本文提出了拉格朗日粒子概念在金属成形中微观结构演化的有限元计算中的原始用途。该方法相当于在网格的积分点之间分配微观结构的不完整表示,而将完整的微观结构与每个拉格朗日粒子相关联。这样可以减少计算时间,并且可以在重新定格时传输微结构变量。尽管该方法适用于任何种类的离散微结构,但在这里它可用于预测由晶体织构引起的机械各向异性。在这种特定情况下,通过考虑对织构铝合金(AA7175)的压缩,可以对数值预测与实验进行对比。关于机械各向异性和纹理演变,评估模型的准确性。

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