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A Theoretical Study of the Effect of the Double Strain Path Change on the Forming Limits of Metal Sheet

机译:双应变路径变化对金属薄板成形极限影响的理论研究

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The present paper aims at a theoretical study of the forming limits of a sheet metal subjected to double strain path changes by using as reference material the AA6016-T4 aluminium alloy sheet. The simulation of plastic instability is carried out through the Marciniak-Kuczynski analysis. The initial shape of the yield locus is given by the Yld2000-2d plane stress yield function. The strain hardening of the material is described by the Voce type saturation law. Linear and several complex strain paths involving single and double strain path changes are taken into account. The validity of the model is assessed by comparing the predicted and experimental forming limits under linear and selected one strain path change. A good accuracy of the developed software on predicting the forming limits is found. A sensitive analysis of the influence of the type and the value of the double prestrain on the occurrence of the plastic flow localization is performed. A remarkable effect of the double strain path change on the sheet metal forming limits is observed.
机译:本文旨在以AA6016-T4铝合金薄板为参考材料,对经受双应变路径变化的金属薄板的成形极限进行理论研究。通过Marciniak-Kuczynski分析进行塑性不稳定性的模拟。屈服轨迹的初始形状由Yld2000-2d平面应力屈服函数给出。材料的应变硬化由Voce型饱和定律描述。考虑了涉及单应变路径和双应变路径变化的线性应变路径和多个复杂应变路径。通过比较线性和选定应变路径变化下的预测成形极限和实验成形极限,可以评估模型的有效性。发现所开发的软件在预测成形极限方面具有良好的准确性。对双预应力的类型和值对塑性流动局部化的影响进行了敏感分析。观察到双应变路径变化对钣金成形极限的显着影响。

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