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Superplastic Behavior of Ultrafine Grained Al Alloys Fabricated by Severe Plastic Deformation

机译:严重塑性变形制备超细晶粒铝合金的超塑性行为

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摘要

Ultrafine grained (UFG) 5083 Al and 5154 Al alloys were prepared by equal channel angular pressing (ECAP) with an effective strain of ~ 4 or ~ 8. This investigation was aimed at examining the effect of the ECAP strain and post-rolling inducing different microstructure in these alloys on the deformation mechanisms at low temperature superplastic (LTS) and high strain superplastic (HSRS) regimes. The sample after 4 passes (a strain of ~ 4) did not exhibit LTS, but superplastic elongations were obtained in the sample after 8 passes (a strain of ~ 8). An analysis of the mechanical data in light of the standard deformation mechanisms revealed that deformation of the sample after 4 passes was governed by dislocation climb while grain boundary sliding attributed to LTS of the sample after 8 passes. In addition, the 5154 Al alloy processed by ECAP and post-rolling was capable of enhancing HSRS elongation significantly. An analysis revealed that the deformation mode was changed from dislocation viscous glide to grain boundary sliding by additional ECAP strain and post-rolling.
机译:通过等通道角挤压(ECAP)制备有效晶粒度为〜4或〜8的超细晶粒(UFG)5083 Al和5154 Al合金。该研究旨在检验ECAP应变的影响以及轧后诱导不同这些合金的微观结构对低温超塑性(LTS)和高应变超塑性(HSRS)机制下的变形机制的影响。 4次通过后(应变为〜4)的样品未表现出LTS,但8次通过后(应变为〜8)在样品中获得了超塑性伸长。根据标准变形机制对机械数据进行分析,结果表明,经过4次通过后,样品的变形受位错爬升控制,而经过8次通过后,晶界滑动归因于样品的LTS。此外,通过ECAP和后轧处理的5154铝合金能够显着提高HSRS伸长率。分析表明,通过附加的ECAP应变和后轧,变形模式从位错粘性滑移变为晶界滑动。

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