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Microstructure and Aging Behavior of AI-0.2wtZr Alloy Heavily Deformed by ARB Process

机译:ARB工艺严重变形的AI-0.2wt%Zr合金的组织和时效行为

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An Al-0.2wt%Zr alloy was severely deformed up to a strain of 8.0 by accumulative roll bonding (ARB) process, started from the solution-treated state. The microstructural evolution during ARB and its aging behavior were investigated. With increasing the number of ARB cycles, Vickers hardness of the specimens increased and reached to a constant value. The microstructural evolution during the ARB could be understood in terms of grain subdivision. The ultrafine grained (UFG) materials whose mean grain size was 0.4 μm were obtained by 10-cycle ARB process. In aging of the ARB processed specimens at high temperatures above 673K, the UFG microstructures quickly coarsened. On the other hand, it was suggested that the precipitation behaviors of the ARB specimen at 623K were quite unique and completely different from those of the conventionally solution-treated material with coarse grain size.
机译:从固溶处理状态开始,通过累积辊轧结合(ARB)工艺使Al-0.2wt%Zr合金剧烈变形,直至变形为8.0。研究了ARB过程中的微观结构演变及其老化行为。随着ARB循环次数的增加,样品的维氏硬度增加并达到恒定值。 ARB期间的微观结构演变可以通过晶粒细分来理解。通过10循环ARB工艺获得平均粒径为0.4μm的超细颗粒(UFG)材料。在ARB处理过的试样在673K以上的高温下进行时效处理时,UFG的显微组织迅速变粗。另一方面,这表明ARB样品在623K的析出行为是非常独特的,并且与常规的粗粒度固溶处理材料完全不同。

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