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A Novel Approach to Eliminate the Effect of External Stress on Interdiffusivity Measurement

机译:一种新的消除外部压力对间隙测量效果的新方法

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In this paper, the interdiffusivities in fcc Co–Ni alloys at 1373 K due to different types of diffusion couple experiments were firstly re-calculated via the unified Wagner method based on the measured composition profiles. Their maximum difference due to different approaches for diffusion couple preparation was found to be larger than one order of magnitude. Then, a comprehensive analysis on the effect of different preparation methods was performed. After that, a two-step diffusion couple technique in combination with the pragmatic numerical inverse method was proposed to determine the accurate interdiffusivities by eliminating the effect of external stress. Such a novel approach was successfully applied in the binary fcc Co–Ni alloys for demonstration purposes. Moreover, it is anticipated that such novel approach can be utilized as the standard method for accurate interdiffusivity measurement, and the resultant accurate interdiffusivities in different alloys may serve as a benchmark for the later experimental and theoretical studies.
机译:本文首先通过基于测量的组合物型材通过统一的摇头法重新计算了1373k的FCC CCC CO-NI合金的间隙。由于不同的扩散耦合制备方法,它们的最大差异被发现大于一个数量级。然后,对不同制剂方法的效果进行综合分析。之后,提出了一种与语用数值逆方法结合的两步扩散耦合技术,以通过消除外部应力的影响来确定准确的间隙。在二元FCC CO-Ni合金中成功地应用了这种新方法,用于示范目的。此外,预计这种新方法可以用作精确的间隔测量的标准方法,并且不同合金中的所得准确的间隙可用作后期实验和理论研究的基准。

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