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Response of the electron work function to deformation and yielding behavior of copper under different stress states

机译:在不同应力状态下电子功函数对铜变形和屈服行为的响应

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摘要

The high sensitivity of the electron work function (EWF) to surface condition has attracted increasing interests from materials scientists and engineers. In this study, using a scanning Kelvin probe changes in the EWF of copper under various loading condition and stress states were investigated. Experimental results showed that the tensile strain decreased the EWF in the elastic deformation range, while compressive strain increased the EWF. However, the EWF in the plastic deformation range always decreased with plastic strain no matter it was tensile or compressive. As shown by the simultaneous measurements of the EWF under conditions of plane stress states, yielding point can be related to the critical stress for the transition of the EWF from smooth variation to steep variation, which strongly depended on stress states. It was therefore demonstrated that Kelvin probing technique could be used for determining the onset of yielding since the EWF was a parameter sensitive to yielding process. The Kelvin probing has appeared to be a very promising method for characterizing the yielding behaviors under complex stress states for both homogeneous and inhomogeneous materials. (C) 2004 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
机译:电子功函数(EWF)对表面状态的高度敏感性吸引了材料科学家和工程师的日益增长的兴趣。在这项研究中,使用扫描开尔文探针研究了在各种负载条件和应力状态下铜的EWF的变化。实验结果表明,在弹性变形范围内,拉伸应变使EWF减小,而压缩应变使EWF增大。但是,无论是拉伸还是压缩,在塑性变形范围内的EWF总是随着塑性应变而降低。如在平面应力状态下同时测量EWF所示,屈服点可能与EWF从平滑变化到陡峭变化的临界应力有关,而临界应力很大程度上取决于应力状态。因此证明,由于EWF是对屈服过程敏感的参数,因此可将Kelvin探测技术用于确定屈服的开始。开尔文(Kelvin)探测似乎是表征均质和非均质材料在复杂应力状态下屈服行为的非常有前途的方法。 (C)2004 WILEY-VCH Verlag GmbH&Co. KGaA,Weinheim。

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