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Grain Boundary Motion during Ag and Cu Grain Boundary Diffusion in Cu Polycrystals

机译:Cu和Cu多晶中Ag和Cu晶界扩散过程中的晶界运动

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Grain boundary (GB) motion in high-purity Cu material (5N8 and 5N Cu) is investigated using the results of radiotracer GB diffusion measurements with tracers exhibiting fundamental differences in the solute-matrix atom interactions. The results on GB solute diffusion of Ag (revealing a miscribility gap in the Ag-Cu phase diagram) and Au (forming intermetalic compounds with Cu) in Cu and on Cu self-diffusion are analyzed. The initial parts of the Ag and Cu penetration profiles turned out to be substantially curved. The profile curvature is explained via the effect of GB motion during ~(110m)Ag and ~(64)Cu GB penetration. The activation enthalpies of GB motion in these two independent measurements occurred to be very close, 95 and 103 kJ/mol, respectively. Moreover, these values turn out to be lose, but still somewhat larger than the activation enthalpy of Cu GB self-diffusion in Cu material of the same very high purity, Q_(gb)~(Cu) = 72 kJ/mol. Although tracer diffusion measurements of Au GB diffusion in Cu yielded only limited information on GB motion, the absolute values of GB velocities are consistent with those calculated from the Ag and Cu GB diffusion data.
机译:使用放射性示踪剂GB扩散测量结果研究了高纯度铜材料(5N8和5N Cu)中的晶界(GB)运动,示踪剂在溶质-基体原子相互作用中表现出基本差异。分析了Ag(在Ag-Cu相图中显示出可混溶间隙)和Au(与Cu形成金属间化合物)在GB上的溶质扩散以及Cu自扩散的结果。 Ag和Cu的渗透轮廓的初始部分被证明是基本上弯曲的。通过〜(110m)Ag和〜(64)Cu GB穿透过程中GB运动的影响解释了轮廓曲率。在这两个独立的测量中,GB运动的激活焓分别非常接近,分别为95和103 kJ / mol。而且,这些值被证明是损失的,但仍然比相同极高纯度Q_(gb)〜(Cu)= 72 kJ / mol的Cu材料中Cu GB自扩散的活化焓大。尽管在铜中Au GB扩散的示踪扩散测量仅产生了关于GB运动的有限信息,但GB速度的绝对值与从Ag和Cu GB扩散数据计算得出的值一致。

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