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Characterization of anisotropic yield surfaces for titanium sheet using hydrostatic bulging with elliptical dies

机译:椭圆形模具静水胀形钛板各向异性屈服面的表征

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摘要

Progressive testing methods are required to accurately characterize the yield surface and large-strain plastic deformation behavior of anisotropic sheet metals. In the current work, hydrostatic bulging through elliptical dies with various biaxial ratios, coupled with full-field strain mapping, was used to generate sheet metal yield surface data for commercially-pure titanium and an exhaust grade titanium alloy. Supplementary characterization was provided by shear tests and tension test specimens taken at various orientations with respect to the rolling direction. The biaxial and tensile data were used to calibrate linear transformation-based anisotropic yield functions. To accurately apply the elliptical bulge tests results for yield function calibration, it was required to accurately calculate the hoop and longitudinal stresses at the pole of the ellipsoidal dome. The optimized yield function coefficients were calibrated for anisotropic response of the sheet metals to high levels of plastic deformation, up to 50%. Finite element simulations using the calibrated yield functions were then shown to provide accurate predictions of the elliptical bulge tests. Crown Copyright (C) 2016 Published by Elsevier Ltd. All rights reserved.
机译:需要逐步测试方法来准确表征各向异性金属板的屈服面和大应变塑性变形行为。在当前工作中,通过具有各种双轴比的椭圆形模具的静液压凸出,再加上全场应变映射,被用于生成商业纯钛和排气级钛合金的钣金屈服表面数据。通过在相对于轧制方向的不同方向上进行的剪切试验和拉伸试验样品提供了补充特性。使用双轴和拉伸数据来校准基于线性变换的各向异性屈服函数。为了准确地将椭圆形凸起测试结果应用于屈服函数校准,需要准确计算椭圆形球顶杆的环向应力和纵向应力。针对片状金属对高达50%的高塑性变形的各向异性响应进行了校准,优化了屈服函数系数。然后显示了使用校准屈服函数的有限元模拟,可以提供椭圆形凸起测试的准确预测。 Crown版权所有(C)2016,由Elsevier Ltd.发行。保留所有权利。

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