堆积
层错能
叠加断层
断层(地质)
衍射
材料科学
各向异性
X射线晶体学
能量(信号处理)
结晶学
X射线
凝聚态物理
位错
物理
化学
地质学
复合材料
光学
核磁共振
量子力学
地震学
作者
R. P. Reed,R. E. Schramm
摘要
Stacking-fault energies can be determined by measuring the positions and profiles of x-ray diffraction lines. Use of this method has been hampered by the uncertainty of the relationship between stacking-fault energy and the ratio of microstrain to stacking-fault probability. Microstrains and stacking-fault probabilities have been determined for five fcc metals by x-ray diffraction line profile analysis. For these metals, Ag, Au, Cu, Al, and Ni, stacking-fault energies have been estimated from a comprehensive updated review of the experimental literature. A linear correlation does exist between γ and 〈ε502〉111/α and thus, the x-ray technique can be applied more confidently. The possible role of elastic anisotropy is also considered.
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