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A Plasticity Induced Anisotropic Damage Model for Sheet Forming Processes

机译:板材成形过程的塑性诱导各向异性损伤模型

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Plastic deformation induces damage in Advanced High Strength Steels (AHSS). Therefore damage development in these steels shall be studied and incorporated in the simulations for accurate failure predictions in forming processes and for determination of the product properties after forming. An efficient anisotropic damage model suitable for large scale metal forming applications has been developed. The standard Lemaitre anisotropic damage model was modified to incorporate lower damage evolution under compression, strain rate dependency in damage and Material Induced Anisotropic Damage (MIAD). Viscoplastic regularization proved to be effective in removing the pathological mesh dependence of the presented local damage model. Anisotropic damage development was characterized in Dual Phase (DP600) steel. The damage model parameters for DP600 were determined from experiments. The Modified Lemaitre's (ML) anisotropic damage model was validated with experiments.
机译:塑性变形会导致高级高强度钢(AHSS)损坏。因此,应研究这些钢中的损伤发展并将其纳入模拟中,以准确预测成形过程中的破坏并确定成形后的产品性能。已经开发出一种适用于大规模金属成型应用的有效各向异性损伤模型。修改了标准的Lemaitre各向异性破坏模型,以合并压缩下的较低破坏演变,破坏中的应变率依赖性以及材料诱发的各向异性破坏(MIAD)。粘塑性正则化被证明可有效消除提出的局部损伤模型的病理网格依赖性。在双相(DP600)钢中表征了各向异性损伤的发展。 DP600的损伤模型参数由实验确定。修改后的Lemaitre(ML)各向异性损伤模型已通过实验验证。

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