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Grain boundary radiotracer diffusion of Ni in ultra-fine grained Cu and Cu-1wt. Pb alloy produced by equal channel angular pressing

机译:等通道角压制超细晶粒Cu和Cu-1wt。%Pb合金中Ni的晶界放射性示踪剂扩散

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The radiotracer technique was applied for measuring grain boundary diffusion of Ni in ultrafine grained (UFG) copper materials with different nominal purities and in a Cu-lwt.%Pb alloy. The UFG specimens were prepared by equal channel angular pressing at room temperature. The stability of the microstructure was studied by focused ion beam imaging. Grain boundary diffusion of the Ni radioisotope was investigated in the temperature interval from 293 to 490K under the formal Harrison type C kinetic conditions. Two distinct short-circuit diffusion paths were observed. The first (relatively slow) path in the UFG materials corresponds unambiguously to relaxed high-angle grain boundaries with diffusivities which are quite similar to those in the respective coarse-grained reference materials. The second path is characterized by significantly higher diffusivities. The experimental data are discussed to elucidate the contribution of non-equilibrium grain boundaries in the deformed materials. Alternative contributions of other short-circuit diffusion paths cannot be ruled out, particularly for the Cu-Pd alloy.
机译:放射性示踪技术用于测量不同标称纯度的超细晶粒(UFG)铜材料以及Cu-1wt。%Pb合金中Ni的晶界扩散。 UFG样品是通过在室温下等通道角压制得的。通过聚焦离子束成像研究了微结构的稳定性。在正式的哈里森C型动力学条件下,在293至490K的温度区间内研究了Ni放射性同位素的晶界扩散。观察到两个不同的短路扩散路径。 UFG材料中的第一个(相对较慢的)路径明确地对应于松弛的高角度晶界,其扩散率与相应的粗粒度参考材料中的扩散率非常相似。第二路径的特征在于明显更高的扩散率。讨论了实验数据,以阐明变形材料中非平衡晶界的贡献。不能排除其他短路扩散路径的其他影响,特别是对于Cu-Pd合金而言。

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