热扩散率
电迁移
粒度
晶界扩散系数
材料科学
晶界
微晶
扩散
阿累尼乌斯方程
铝
有效扩散系数
阿伦尼乌斯图
热力学
自扩散
冶金
化学
微观结构
活化能
复合材料
物理化学
物理
自助服务
营销
业务
磁共振成像
放射科
医学
作者
Zhen Cui,Yaqian Zhang,Dong Hu,Sten Vollebregt,Jiajie Fan,Xuejun Fan,Guoqi Zhang
标识
DOI:10.1088/1361-648x/ac4b7f
摘要
Understanding the atomic diffusion features in metallic material is significant to explain the diffusion-controlled physical processes. In this paper, using electromigration experiments and molecular dynamic (MD) simulations, we investigate the effects of grain size and temperature on the self-diffusion of polycrystalline aluminium (Al). The mass transport due to electromigration are accelerated by increasing temperature and decreasing grain size. Magnitudes of effective diffusivity (Deff) and grain boundary diffusivity (DGBs) are experimentally determined, in which theDeffchanges as a function of grain size and temperature, butDGBsis independent of the grain size, only affected by the temperature. Moreover, MD simulations of atomic diffusion in polycrystalline Al demonstrate those observations from experiments. Based on MD results, the Arrhenius equation ofDGBsand empirical formula of the thickness of grain boundaries at various temperatures are obtained. In total,DeffandDGBsobtained in the present study agree with literature results, and a comprehensive result of diffusivities related to the grain size is presented.
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