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Evolution of microstructure and texture during annealing of Al-2.5Mg-0.2Sc severely deformed by a combination of accumulative roll bonding (ARB) and conventional rolling

机译:通过累积辊粘合(ARB)和常规轧制的Al-2.5%Mg-0.2%Sc的产生和纹理的演化和纹理期间

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Evolution of microstructure and texture during heavy cold-rolling and annealing of Al-2.5%Me-0.2%Sc alloy was investigated. For this purpose recrystallized sheets of 1mm thickness having finely dispersed precipitates were processed to 3 cycles of ARB (equivalent strain, ε_(eq) =2.4) followed by conventional rolling to a final thickness of 200μm resulting in total equivalent strain of 4.0. Evolution of ultrafine microstructure and strong copper or pure metal type texture were observed during deformation. During annealing very stable microstructure was observed up to 400°C but further annealing resulted in formation of a layered microstructure with deformed layer sandwiched between recrystallized layers. Formation of strong cube texture is not observed in the recrystallized layers. Isothermal annealing for longer time at 500°C leads to abnormal growth of Q orientation ({013}<213>) within the deformed layer.
机译:研究了在重冷轧中的微观结构和质地的演化和Al-2.5%Me-0.2%Sc合金的退火。为此目的,将具有精细分散的沉淀物的1mm厚的重结晶片材加工为3次次次次次次次(当量菌株,ε_(等式ε_(等式)= 2.4),然后通过常规轧制到200μm的最终厚度,得到总当量应变为4.0。在变形过程中观察到超细微观结构和强铜或纯金属型纹理的演变。在退火期间,观察到非常稳定的微观结构,高达400℃,但进一步的退火导致形成层状微观结构,其中夹在再结晶层之间的变形层。在再结晶层中未观察到强立方体纹理的形成。在500℃下的较长时间的等温退火导致变形层内的Q取向({013} <213)的异常生长。

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