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Severe Plastic Deformation of Copper: The State of Grain Boundaries and Their Triple Junctions

机译:铜的严重塑性变形:晶界及其三重结的状态

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The results of electron microscopic studies of the structure and phase composition of nanocrys-talline copper produced during severe plastic deformation by torsion under high quasi-hydrostatic pressure are presented. Particular attention was focused on grain triple junctions. It is found that the triple junctions contain partial disclinations and secondary-phase particles. The strain dependences of the fraction of these triple junctions during formation of nanocrystalline copper are measured. Phase analysis of the structure of secondary phases is performed, and the sizes volume fractions of the secondary-phase particles are determined. The torsion—curvature of the crystal lattice appearing near triple junctions is measured. The problem of screening of the long-range field of stresses forming in triple junctions is discussed.
机译:给出了在高准静水压力下,扭转引起的严重塑性变形过程中产生的纳米晶-talline铜的结构和相组成的电子显微镜结果。特别关注的是晶粒三重结。发现三重结包含部分错位和次级相颗粒。测量在纳米晶铜形成过程中这些三重结的分数的应变依赖性。对次级相的结构进行相分析,并且确定次级相颗粒的尺寸体积分数。测量出现在三重结附近的晶格的扭转曲率。讨论了在三重连接处形成应力的长距离场的屏蔽问题。

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