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Numerical prediction of ductile failure in the blanking process by means of uncoupled and coupled phenomenological damage models

机译:通过耦合和非耦合现象学模型对落料过程中延性破坏的数值预测

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Fracture prediction in blanking has gained great attention due to increasing requirements of high-quality products. In this work, the predictive capabilities of different uncoupled and coupled damage models, recently implemented in a fully implicit homemade FE code, for blanking process are compared. Some advanced models considered here include damage sensitivity to both triaxiality and Lode angle in their formulation. The material characterization is based on the history of internal variables during loading, where different mechanical tests are considered. Finally, numerical and experimental results are compared for a wide range of different geometries of blanking.
机译:由于对高质量产品的要求不断提高,落料中的断裂预测已引起了广泛的关注。在这项工作中,比较了最近在完全隐式的自制FE代码中实现的不同的未耦合和耦合损伤模型对消隐过程的预测能力。这里考虑的一些先进模型在其配方中包括对三轴性和洛德角的损伤敏感性。材料表征基于加载过程中内部变量的历史记录,其中考虑了不同的机械测试。最后,比较了各种不同落料几何尺寸的数值和实验结果。

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