Determination of Residual Stresses in WCu Gradient Materials

G. Bokuchava, N. Shamsutdinov, J. Schreiber, M. Stalder
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引用次数: 1

Abstract

Residual stress measurements were carried out on copper–tungsten gradient materials by means of neutron diffraction on the High Resolution Fourier Diffractometer on IBR-2, JINR, Dubna. The samples so far investigated had a concentration profile that approximates the gradient by step functions. The results show an averaged positive stress (stretch) in the copper phase and negative (compression) in the tungsten phase. A comparison to analytical linear elastic calculations shows that the measured values are nearly an order of magnitude too low, whereas however, a qualitative agreement of the stress distribution exists. That this quantitative discrepancy can be attributed to the model's simplifying assumption of pure elastic behaviour can be shown by recent calculations that also include plasticity and show a much better agreement with the experimental values. Single peak evaluation also strongly suggests that plasticity does indeed play a significant role.
WCu梯度材料中残余应力的测定
利用高分辨率傅氏衍射仪对铜钨梯度材料的残余应力进行了中子衍射测量。到目前为止所研究的样品的浓度分布近似于阶跃函数的梯度。结果表明,铜相的平均应力为正(拉伸),钨相的平均应力为负(压缩)。与解析线性弹性计算的比较表明,实测值几乎低了一个数量级,然而,应力分布存在定性一致。这种数量上的差异可以归因于模型对纯弹性行为的简化假设,这可以通过最近的计算(也包括塑性)来证明,并且显示出与实验值更好的一致性。单峰评价也强烈表明,可塑性确实发挥了重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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