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Combined deformation behavior and microstructure evolution of 7050 aluminum alloy during hot shear-compression deformation

机译:热剪切压缩变形中7050铝合金的组合变形行为和微观结构演化

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摘要

The shear-compression specimen was employed to study the hot deformation behavior and microstructure evolution of 7050 aluminum alloy at transient conditions. Rapid drop of the flow curves after the peak stress was the common feature at low temperatures, which resulted in the strain localization along the edges of the deformation zone. The combined deformation features with a competition between compression and shear were proved. In the early stage of the deformation, the compression strain played the dominated role. Instead, the shear strain became the main strain path in the subsequent stage. For the large equivalent strain and high strain rate, the dynamic microstructure evolution was enhanced. Moreover, the dynamic recrystallization exhibited multiple features in term of geometric, discontinuous and continuous recrystallization. Finally, the relations between flow behavior and microstructure evolution were presented and discussed. (C) 2016 Elsevier Inc. All rights reserved.
机译:采用剪切压缩样品在瞬态条件下研究7050铝合金的热变形行为和微观结构演化。 在峰值应力之后的流动曲线的快速下降是低温下的共同特征,导致沿着变形区的边缘的应变定位。 证明了压缩和剪切之间的竞争的组合变形特征。 在变形的早期阶段,压缩应变起到主导作用。 相反,剪切应变成为后续阶段的主要应变路径。 为了大的等效应变和高应变率,增强了动态微观结构演化。 此外,动态再结晶在几何,不连续和连续的再结晶期间表现出多种特征。 最后,提出和讨论了流动行为与微观结构演化之间的关系。 (c)2016年Elsevier Inc.保留所有权利。

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