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Etch Pit Observation of Dislocations in Early Deformation of Cu-AI Alloy and Pure Mg Polycrystals

机译:Cu-Al合金和纯Mg多晶早期形变中位错的蚀坑观察

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In order to make clear the micro-yielding mechanisms of polycrystalline metals including twins, the movement of dislocations in the surface grains of Cu-6.8at%Al alloy and pure Mg polycrystals during the early stages of deformation was directly observed by using etch pit technique. The fresh dislocations multiply from the Frank-Read sources within the grains, and pile up against the twin and grain boundaries of two kinds of specimens. The pile-up dislocations on the primary and/or secondary slip planes are also confirmed in Cu-6.8at%Al alloys. Especially during the compressive loading for pure Mg, the occurrence of deformation twins is remarkable with an increase of strain rate, whereas the distribution of fresh dislocations tends to decrease in the surface grains. The present results suggest that the effect of twin boundaries on micro-yielding is almost equivalent for that of grain boundaries, which act as barriers to moving dislocations even in the pre-yield deformation.
机译:为了弄清包括孪晶在内的多晶金属的微观屈服机理,采用刻蚀坑技术直接观察了Cu-6.8at%Al合金和纯Mg多晶在变形初期的位错运动。 。新鲜的位错从晶粒内的Frank-Read来源中繁衍而来,并堆积在两种标本的孪晶和晶粒边界上。在Cu-6.8at%Al合金中也可以确定在主滑动面和/或第二滑动面上的堆积位错。尤其是在纯Mg的压缩载荷过程中,随着应变速率的增加,孪生孪晶的出现非常明显,而新鲜位错的分布趋于减少。目前的结果表明,孪晶边界对微屈服的影响与晶界的影响几乎相同,即使在屈服前变形中,晶界也成为阻碍位错运动的障碍。

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