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The effect of coarse second-phase particles and fine precipitates on microstructure refinement and mechanical properties of severely deformed Al alloy

机译:第二相粗大颗粒和细小析出物对严重变形铝合金组织和力学性能的影响

摘要

The sub-micrometer microstructure developed during severe plastic deformation by equal channel angular pressing in an Al alloy containing a small amount of dispersed intermetallic particles has been examined in material in a variety of solutionised and precipitated states. Microstructural refinement, and corresponding strengthening, occurs faster in these particle-containing materials than in particle-free equivalents. Coarse precipitate and dispersoid particles remain mostly unaffected by the severe deformation, and appear to help stabilise a finer deformation microstructure, while fine precipitates are sheared and apparently dissolved. The extent of microstructural refinement and strengthening depends more on solute content than on particle distributions. The limited effect of dispersoid and precipitate particles may be due, in part, to their presence in only small volume fractions, less than 1% by volume each. Strengthening depends more on dislocation arrangements and densities than on the nuber of boundaries present. © 2004 Elsevier B.V. All rights reserved.
机译:已经在材料中以各种固溶和沉淀状态检测了在严重塑性变形期间通过等通道角挤压在包含少量分散金属间化合物的铝合金中形成的亚微米微观结构。在这些含颗粒的材料中,微结构的细化和相应的强化要比无颗粒的等同物更快。粗大的沉淀物和分散的颗粒大部分不受严重变形的影响,并且似乎有助于稳定更精细的变形微观结构,而细小的沉淀物被剪切并明显溶解。微观结构细化和强化的程度更多地取决于溶质含量,而不是粒子分布。分散质和沉淀颗粒的有限作用可能部分是由于它们仅以较小的体积分数存在,每个体积分数小于1%。加强工作更多地取决于错位的安排和密度,而不是取决于现有边界的数量。 ©2004 Elsevier B.V.保留所有权利。

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