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Uncertainty in flow stress measurements using X-ray diffraction for sheet metals subjected to large plastic deformations

机译:使用X射线衍射对承受大塑性变形的金属板进行流动应力测量的不确定度

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摘要

X-ray diffraction techniques have been developed to measure flow stresses of polycrystalline sheet metal specimens subjected to large plastic deformation. The uncertainty in the measured stress based on this technique has not been quantified previously owing to the lack of an appropriate method. In this article, the propagation of four selected elements of experimental error is studied on the basis of the elasto-viscoplastic self-consistent modeling framework: (1) the counting statistics error; (2) the range of tilting angles in use; (3) the use of a finite number of tilting angles; and (4) the incomplete measurement of diffraction elastic constants. Uncertainties propagated to the diffraction stress are estimated by conducting virtual experiments based on the Monte Carlo method demonstrated for a rolled interstitial-free steel sheet. A systematic report on the quantitative uncertainty is provided. It is also demonstrated that the results of the Monte Carlo virtual experiments can be used to find an optimal number of tilting angles and diffraction elastic constant measurements to use without loss of quality.
机译:已经开发出X射线衍射技术来测量经受大塑性变形的多晶金属薄板样品的流动应力。由于缺乏适当的方法,基于这种技术的应力测量不确定度以前没有得到量化。本文在弹黏塑性自洽模型框架的基础上研究了实验误差的四个选择要素的传播:(1)计数统计误差; (2)使用中的倾斜角度范围; (3)使用有限数量的倾斜角; (4)衍射弹性常数的不完全测量。通过基于蒙特卡洛方法的虚拟实验,对轧制的无间隙钢板进行了虚拟实验,从而估算了传播至衍射应力的不确定度。提供了有关定量不确定性的系统报告。还证明了蒙特卡洛虚拟实验的结果可用于找到最佳的倾角数和衍射弹性常数测量值,而不会降低质量。

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