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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part A. Defect and Diffusion Forum >Experimental Evidence of Iron Segregation in Copper Grain Boundaries as Deduced from Type B Diffusion Measurements
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Experimental Evidence of Iron Segregation in Copper Grain Boundaries as Deduced from Type B Diffusion Measurements

机译:从B型扩散测量推导的铜粒边界中铁偏析的实验证据

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摘要

Grain-boundary heterodiffusion of iron in pure copper and self diffusion of iron in copper-0.091at% iron were measured by the serial sectioning technique in the Harrison B-regime. " The penetration profiles corresponding to iron heterodiffusion in pure copper show a strong positive curvature far beyond the (Dvt) n depth . This peculiar shape, which does not exist for self diffusion in the solid solution, proves the presence of a strong non linear grain-boundary segregation of iron in copper in spite of the respective surface energies of these metals. This segregation is linked to the size effect which is, as predicted by numerical simulation, the main driving force for grain-boundary segregation.
机译:通过哈里森B谱中的连续切片技术,测量了纯铜中铁的晶界杂散和铁在0.091at%铁中的自扩散。 “与纯铜中的铁异质扩散相对应的渗透曲线显示出远大于(Dvt)n深度的强正曲率。这种奇异的形状(对于固溶体中的自扩散不存在)证明存在强的非线性晶粒尽管这些金属具有各自的表面能,但铁在铜中的分界偏析仍与尺寸效应有关,正如数值模拟所预测的,尺寸效应是晶粒边界偏析的主要驱动力。

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