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Comparison between superplastic deformation mechanisms at primary and steady stages of the fine grain AA7475 aluminium alloy

机译:细晶粒AA7475铝合金初生和稳态超塑性变形机理的比较

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Evolution of the deformation behaviour, surface and bulk structures at superplastic flow of the АА7475 aluminium-based alloy were studied by scanning and transmission electron microscopes and a focused ion beam technique. Differences between deformation behaviour at a primary stage with strains below 0.69 and a steady stage with strains above 0.69 were discussed. The research showed the grain growth and grain elongation to the stress direction at a primary stage of deformation. Stabilisation of both mean grain size and grain aspect ratio was found at a steady stage of deformation. Grain neighbour switching, grain rotation, dispersoid free zones and some insignificant intragranular strain were observed at both stages. Appearing and disappearing of the grains on the sample surface, with increased dislocation activity occurred at the steady stage of deformation. The current results highlighted the importance of diffusion creep as a dominant mechanism at the beginning of superplastic deformation and as an accommodation mechanism of the grain boundary sliding at the steady stage of deformation. The dislocation creep as an additional accommodation mechanism of the grain boundary sliding at the steady stage of superplastic deformation is suggested.
机译:通过扫描电子显微镜和透射电子显微镜以及聚焦离子束技术研究了А7475铝基合金在超塑性流动下的变形行为,表面和整体结构的演变。讨论了应变低于0.69的初级阶段和应变高于0.69的稳态阶段的变形行为之间的差异。研究表明,在变形的初期,晶粒的生长和晶粒向应力方向的伸长。在变形的稳定阶段发现平均晶粒尺寸和晶粒长宽比均稳定。在两个阶段均观察到晶粒邻域转换,晶粒旋转,弥散性自由区和一些微不足道的晶内应变。样品表面晶粒的出现和消失,以及位错活性的增加都发生在变形的稳定阶段。目前的结果凸显了扩散蠕变作为超塑性变形开始时的主导机制和变形稳定阶段晶界滑动的调节机制的重要性。提出了位错蠕变作为超塑性变形稳定阶段晶界滑动的附加调节机制。

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