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Correlative Study on Plastic Response and Formability of Ti-6Al-4V Sheets under Hot Forming Conditions

机译:热成形条件下Ti-6Al-4V板塑料响应的相关性研究

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摘要

In this study, the formability behavior of Ti-6Al-4V alloy sheets under uniaxial and multi-axial loading conditions at 923 K (650 degrees C), which has received less attention till now, has been extensively investigated by experiments and numerical modeling. Uniaxial tension tests at various strain rates and limit dome height (LDH) tests at the elevated temperature, covering the uniaxial stretch, plane strain, and biaxial stretch deformation modes, were conducted, and the corresponding constitutive models were constructed. Based on the experimentally characterized mechanical properties and associated constitutive laws, finite element simulations of the LDH tests were conducted, and the formability of the investigated material was analyzed using the Marciniak-Kuczyinski theory by employing the von-Mises isotropic yield function and Voce hardening law, including strain-rate sensitivity. At the elevated temperature, a strong positive rate sensitivity effect was observed. Finally, the predicted load-displacement responses of the LDH tests were in good agreement with the measured data. The corresponding formability analysis can contribute to the design of optimal hot forming processes for Ti-6Al-4V sheets.
机译:在该研究中,通过实验和数值建模,在923K(650℃)下的单轴和多轴加载条件下的Ti-6Al-4V合金板在923K(650℃)下的可关注的可成形性行为已经过度研究,并通过实验和数值模拟进行了广泛的研究。进行单轴张力试验,在各种应变速率下测试和极限圆顶高度(LDH)测试在升高的温度下进行,覆盖单轴拉伸,平面应变和双轴拉伸变形模式,构建了相应的本构模型。基于实验表征的机械性能和相关的本构规定,进行了LDH试验的有限元模拟,并使用Marciniak-kuczyinski理论通过采用Von-Mise各向同性屈服函数和Voce硬化法分析研究的可成形性,包括应变率敏感性。在升高的温度下,观察到强烈的阳性速率敏感效应。最后,LDH测试的预测负载位移响应与测量数据吻合良好。相应的可成形性分析可以有助于为Ti-6AL-4V片材的最佳热成型工艺设计。

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