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Identification of post-necking strain hardening behavior of thin sheet metals from image-based surface strain data in uniaxial tension tests

机译:从单轴拉伸试验中基于图像的表面应变数据确定薄金属板的颈缩后应变硬化行为

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摘要

A local correction factor method is proposed for identifying the post-necking strain hardening behavior of a thin flat sheet metal under uniaxial tension testing. Based on local surface strain measurements of a flat tension test coupon containing a developing diffuse neck by digital image correlation and the axial force balance at the necking cross-section, the method extends the classical Bridgman approach to thin sheet metals with non-symmetric and irregular necking morphologies and with a general non-quadratic anisotropic flow function. The new method is shown by numerical simulations to be able to obtain reliable post-necking true stress-strain data at large strains up to the onset of localized necking with a multi-linear strain hardening model. It has been successfully applied to extract post-necking true stress-strain curves from three standard flat tension test coupons made of AISI 1018 low carbon steel, C260 Cu-Zn brass, and AA5052-H32 Al-Mg aluminum alloy thin sheet metals respectively. The local correction factor method is relatively simple to use in comparison with many other methods appeared in the literature and it can more readily be implemented as part of a routine data analysis in image-based uniaxial tension testing of sheet metals. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了一种局部校正因子方法,用于在单轴拉伸试验中确定薄平板金属的颈缩后应变硬化行为。基于数字图像相关性和包含颈缩横截面的轴向力平衡的平坦张力测试试样的局部表面应变测量值,该试样包含正在发展的扩散颈部,该方法将经典的Bridgman方法扩展到具有非对称和不规则形状的薄金属板颈缩形态,具有一般的非二次各向异性流动函数。数值模拟表明,该新方法能够获得可靠的颈缩后真实应力-应变数据,该数据通过多线性应变硬化模型在直至局部颈缩开始之前的大应变下即可获得。它已成功应用于从AISI 1018低碳钢,C260 Cu-Zn黄铜和AA5052-H32 Al-Mg铝合金薄金属板分别制成的三个标准平面张力测试试样中提取颈缩后的真实应力-应变曲线。与文献中出现的许多其他方法相比,局部校正因子方法相对简单易用,并且可以更容易地实现为钣金基于图像的单轴拉伸测试中常规数据分析的一部分。 (C)2015 Elsevier Ltd.保留所有权利。

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