固溶体
离解(化学)
工作(物理)
化学
热力学
叠加断层
堆积
层错能
材料科学
位错
结晶学
物理化学
物理
有机化学
作者
Touwen Fan,Liuting Wei,Bi‐Yu Tang,Liming Peng,Wenjiang Ding
标识
DOI:10.1080/14786435.2014.890756
摘要
AbstractStacking fault energies (SFEs) of Mg solid solutions at different temperatures are very significant for studying dissociation of dislocation, plasticity deformation and other mechanical properties. Our present work starts with the investigation of interactions between basal stacking faults (SFs) and solutes (Li, Cu, Zn, Al, Y and Zr) using first-principles calculations. It is found that the interactions between basal SFs and solutes can be extended to several closed-packed layers. Combined with Fermi–Dirac function of solute distribution at each layer, the temperature dependence of SFE for Mg–X(X = Li, Cu, Zn, Al, Y and Zr) solid solution has been investigated. This study predicts correctly the increase tendency observed in experiment. Then the SFEs of Mg solid solutions at room temperature of 300 K are investigated at different solute concentrations; the obtained concentration dependence of SFEs is in agreement with the available experimental values. So the solute distribution under finite temperature due to the basal SF–solute interactions plays a critical role in the variation of SFEs of Mg solid solutions.Keywords: Mg solid solutionsstacking fault energytemperature dependencesolute concentration dependencefirst-principles calculations AcknowledgementsThis work is supported by Natural Science Foundation of China (51071053), and the Hunan Provincial Innovation Foundation for Graduate (No. CX2012B244).
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