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Ductile fracture prediction and forming assessment of AA6061-T6 aluminum alloy sheets

机译:AA6061-T6铝合金板材的韧性断裂预测及成型评估

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In this paper, an extension to a modified Gurson porous ductile material model, namely the Dung's model, is introduced to investigate ductile fracture processes of AA6061-T6 aluminum alloy sheets. The combined Dung-Hill48 model accounts for anisotropic hardening effects of the matrix material. The constitutive model is implemented as a user-defined material subroutine in ABAQUS/Explicit to predict ductile fracture and formability of the aluminum alloy sheets. Ductile fracture predictability of the model comes from the description of void growth in an anisotropic strain hardening material. After being calibrated the model is applied to establish a fracture plastic strain-triaxiality relation using only tensile test data of smooth and R-notched specimens. Calculations of forming limits from seven deep drawing simulations with Nakajima specimens estimate the formability of the material. Influence of the material anisotropy on the obtained forming limit diagram is discussed.
机译:本文介绍了改进的Gurson多孔延性材料模型,即粪模型的延伸,研究了AA6061-T6铝合金板的延性断裂过程。 组合的Dung-Hill48模型用于基质材料的各向异性硬化效应。 本构模型以ABAQUS /明确地实现为用户定义的材料子程序,以预测铝合金片材的延展性断裂和可成形性。 模型的延展性裂缝可预测性来自各向异性应变硬化材料中的空隙生长的描述。 校准后,应用模型以使用平滑和r-缺口标本的拉伸试验数据建立断裂塑性应变 - 三轴性关系。 利用Nakajima标本的七种深层绘图模拟计算限制的计算估计了材料的可成形性。 讨论了材料各向异性对所得形成限制图的影响。

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