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Variations in through-thickness recrystallization and grain growth textures in the Al layers in ARB-processed Al/Al(0.3% Sc) composite sheets

机译:ARB处理的Al / Al(0.3%Sc)复合板中Al层中的全厚度再结晶和晶粒生长织构的变化

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摘要

This investigation aims to understand the differences in the recrystallization and grain growth textures in aluminum layers along the thickness direction of two layered composite sheets. The sheets were processed by five cycle accumulative roll bonding of commercially pure aluminum and an aluminum alloy containing 0.3 wt.% Sc both in the supersaturated solid solution and artificially aged conditions. Electron back scattered diffraction and transmission electron microscopy were used to characterize the microstructure and crystallography of the rolled and annealed composites. During the early stages of annealing the β-fiber rolling textures remain unchanged and becomes sustained by the so-called continuous recrystallization process. Then, at the completion of primary recrystallization in the later stages of annealing, orientation selective recrystallization occurs and the Brass orientation becomes eliminated. A strong β-fiber primary recrystallization texture was found to be favorable for the secondary recrystallization growth of Cube orientations. Otherwise, conventional grain growth occurs when the primary recrystallization textures have distortions in the β-fiber.
机译:本研究旨在了解铝层在两层复合板厚度方向上的再结晶和晶粒生长织构的差异。在超饱和固溶体和人工时效条件下,通过商业纯铝和含0.3 wt。%Sc的铝合金的五周期累积辊压粘合来加工片材。电子背散射衍射和透射电子显微镜用于表征轧制和退火复合材料的微观结构和晶体学。在退火的早期阶段,β纤维的滚动织构保持不变,并通过所谓的连续重结晶过程得以维持。然后,在退火的后续阶段中初次再结晶完成时,发生取向选择性再结晶,并且黄铜取向消失。发现强的β-纤维初次再结晶织构有利于立方取向的二次再结晶生长。否则,当初次再结晶织构中的β纤维变形时,就会发生常规的晶粒长大。

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