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Edge-to-edge plane matching as a criterion for interphase boundaries of low energy

机译:边到边平面匹配作为低能量相间边界的标准

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摘要

As demonstrated by Aaronson and his colleagues over five decades or so, the structure, energy, and dynamic response of interphase boundaries in metallic systems are strongly correlated. It has also become clear that very few, if any, solid/solid transformation interfaces can be considered truly “incoherent.” Most treatments of the geometry of irrational interfaces (facet planes) have focused on the density of coincidence sites or near-coincidence sites (NCS); this naturally involves consideration of the matching of densely packed atomic planes lying parallel to the facet. Edge-to-edge plane matching represents an alternative and, perhaps, more general approach to the geometry of transformation interfaces. For diffusional transformations, growth ledges are required to displace and reproduce the structure of the facet plane; their geometrical properties are distinct from those of the interfacial facets. The role of local thermodynamic driving force in determining the migration mode is assessed. Several recent observations of the transient faceting of irrational interfaces, for which the density of NCS is relatively low, have stimulated considerations of the significance of the invariant-line condition and of edge-to-edge plane matching as criteria for local minima in interfacial free energy.
机译:正如Aaronson及其同事在过去的大约五十年中所证明的那样,金属系统中相间边界的结构,能量和动态响应密切相关。同样很清楚的是,只有很少(如果有的话)的实体/实体转换界面可以被认为是真正的“不连贯的”。无理界面(小平面)的几何形状的大多数处理都集中在重合点或近重合点(NCS)的密度上。这自然涉及考虑平行于小平面的密集堆积原子平面的匹配。边到边的平面匹配表示变换接口几何的一种替代方法,并且也许是更通用的方法。对于扩散转换,需要生长壁架来置换和重现小平面的结构。它们的几何特性与界面不同。评估了局部热力学驱动力在确定迁移模式中的作用。对于NCS密度相对较低的非理性界面的瞬态刻面,最近的一些观察激发了人们对不变线条件和边到边平面匹配作为界面自由中局部最小值的标准的重要性的考虑。能源。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2006年第3期|857-863|共7页
  • 作者

    Gary R. Purdy;

  • 作者单位

    the Department of Materials Science and Engineering McMaster University L8S 4L7 West Hamilton ON Canada;

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  • 正文语种 eng
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