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Dislocation core structures in YAg, a ductile B2 CsCl-type intermetallic compound

机译:延性B2 CsCl型金属间化合物YAg中的位错核心结构

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Dislocations are thought to be the primary mechanism for plastic deformation in the ductile B2 YAg compound, but no reports have been made on whether partial dislocations are operating. Here, direct observations made by high-resolution transmission electron microscopy show that in YAg superlattice dislocations dissociate into two superpartials bound to either a stacking fault or an antiphase boundary. A better understanding of dislocation core structures in YAg should improve the understanding of deformation mechanisms in the family of ductile rare-earth B2 intermetallics.
机译:位错被认为是延性B2 YAg化合物塑性变形的主要机理,但尚未有关于部分位错是否起作用的报道。在这里,通过高分辨率透射电子显微镜进行的直接观察表明,在YAg超晶格中,位错解离为两个与堆垛层错或反相边界结合的上层。更好地了解YAg中的位错核心结构应增进对延性稀土B2金属间化合物家族中变形机理的了解。

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