“Pure” Grain-Boundary Sliding in Zinc Bicrystals

C. Horton, N. Thompson, C. Beevers
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引用次数: 13

Abstract

AbstractBicrystals of zinc containing basal tilt boundaries of controlled orientation have been tested in simple shear over the range 320–390° C. Rapid grain-boundary sliding was observed in the absence of macroscopic trans crystalline slip. This “pure” grain-boundary sliding was accompanied by the emission of dislocations from the sliding boundaries and the creation of substructure in the crystalline regions adjacent to the boundaries. Grain-boundary slide-hardening was often noted in the absence of observable grain-boundary cusps or irregularities. By assuming a sliding-rate law of the form έ = Aσnt(m−1) exp( − Qs/KT) and by using differential test methods, values were obtained for the apparent activation energy (Qs ) and the stress parameter (n) for the “pure” grain-boundary sliding. The values Qs = 31 ± 5 (kcal/mole) and n = 4.5 ± 1.8 give strong support to the general conclusion that “pure” grain-boundary sliding is controlled by the case with which dislocations can be emitted by a sliding boundary a...
锌双晶的“纯”晶界滑动
摘要在320 ~ 390℃范围内,对含控制取向基底倾斜边界锌的双晶进行了简单剪切实验,在无宏观跨晶滑移的情况下,观察到晶界的快速滑动。这种“纯粹的”晶界滑动伴随着从滑动边界发出的位错和在靠近晶界的晶体区域产生的亚结构。在没有晶界尖点或不规则的情况下,晶界滑动硬化常被注意到。假定滑动速率定律为“έ = Aσnt(m−1)exp(−Qs/KT)”,采用差分试验方法,得到了晶界纯滑动的表观活化能Qs和应力参数n。Qs = 31±5 (kcal/mol)和n = 4.5±1.8有力地支持了晶界“纯”滑动是由晶界在某一区域内可以产生位错的情况下控制的。
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