首页> 外文会议>International Conference on The Mechanical Behavior of Materials; 20070527-31; Busan(KR) >Extending Creep and Superplasticity to Materials with Submicrometer Grain Sizes
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Extending Creep and Superplasticity to Materials with Submicrometer Grain Sizes

机译:将蠕变和超塑性扩展到亚微米粒度的材料

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摘要

The mechanisms of creep and superplasticity occurring in conventional large-grained materials are now understood reasonably well. However, very recent advances in the processing of theoretically-dense metals with submicrometer grain sizes have provided the opportunity to extend the understanding of flow behavior to include materials where the grains are exceptionally small. Using processing through the application of severe plastic deformation, as in procedures such as equal-channel angular pressing, it is now feasible to fabricate relatively large samples having ultrafine grain sizes in the submicrometer or nanometer range. This paper examines these recent advances and gives examples of the flow behavior in ultrafme-grained aluminum alloys.
机译:现在已经很好地理解了常规大颗粒材料中发生的蠕变和超塑性的机理。但是,在处理具有亚微米级粒度的理论上密集的金属方面的最新进展为扩展对流动行为的理解提供了机会,以包括晶粒非常小的材料。使用通过施加严重塑性变形的加工(例如在等通道角压中进行加工),现在可以制造出具有亚微米或纳米范围内超细晶粒尺寸的相对较大的样品。本文考察了这些最新进展,并举例说明了超细晶粒铝合金的流动行为。

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