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Grain boundary diffusion of Ni in ultra-fine grain copper-lead alloy produced by equal channel angular pressing

机译:采用等通道角压制超细晶粒铜铅合金中Ni的晶界扩散

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Kinetic characteristics of internal interfaces in ultrafme grained (UFG) materials represent an aspect that is central to their potential applications. Interface diffusion is strongly affected by ultrafme crystallinity and incorporated defects. In the present study the radiotracer technique was applied for measuring grain boundary (GB) diffusion of Ni in UFG Cu-1wt.%Pb alloy. The UFG specimens were prepared by equal channel angular pressing at room temperature. GB diffusion was investigated at room temperature in Harrison's C kinetic regime under conditions in which Ni diffusion - even along general high-angle GBs in pure Cu - would hardly be measurable by the mechanical sectioning (as the corresponding penetration depths would be less than 100 nanometers). The present study highlights the existence of ultra-fast diffusion paths in severely deformed material. An atypical time dependence of the room-temperature diffusion data indicates a quite involved nature of these "fast" diffusion paths in the Cu-1wt.%Pb alloy.
机译:Ultrafme颗粒(UFG)材料中内部界面的动力学特征代表了它们潜在应用的核心方面。界面扩散受超薄结晶度和掺入缺陷的强烈影响。在本研究中,在UFG Cu-1wt中测量Ni的晶界(GB)扩散的放射性机构技术。%PB合金。通过在室温下通过相等的沟道角压制来制备UFG样本。在哈里森的C动力学条件下在室温下在哈里森的C型动力学方面进行了GB扩散,其中Ni扩散甚至沿着纯Cu中的一般高角度GBS - 机械切片几乎可以测量(因为相应的穿透深度小于100纳米)。本研究突出了在严重变形材料中的超快速扩散路径的存在。室温扩散数据的非典型时间依赖性表示Cu-1wt中的这些“快速”扩散路径的相当涉及的性质。%Pb合金。

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