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Effect of Strain on Deformation Microstructure and Subsequent Annealing Behavior of IF Steel Heavily Deformed by ARB Process

机译:钢气加工钢重度变形的变形微观结构对变形微观结构的影响及随后的退火行为

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Ultra low-carbon interstitial free (IF) steel having ferrite (b.c.c.) single phase was deformed to various equivalent strains ranging from 0.8 to 5.6 by the accumulative roll bonding (ARB) process at 500°C. The microstructure and crystallographic feature of the deformed specimens were characterized mainly by FE-SEM/EBSD analysis. Grain subdivision during the plastic deformation up to very high strain was clarified quantitatively. After heavy deformation above 4.0 of strain, the specimens showed the lamellar boundary structure uniformly, in which the mean spacing of the lamellar boundaries was about 200nm and more than 80% of the boundaries were high-angle ones. Annealing behavior of the ARB processed IF steel strongly depended on the strain. The specimens deformed to medium strains exhibited discontinuous recrystallization characterized by nucleation and growth, while the specimens deformed above strain of 4.0 showed continuous recrystallization. The recrystallization behaviors are discussed on the basis of the microstructural and crystallographic parameters quantitatively measured in the as-deformed samples.
机译:具有铁素体(B.C.C.)单相的超低碳间隙自由(IF)钢通过在500℃下通过累积辊粘合(ARB)方法变形为0.8至5.6的各种等效菌株。变形样品的微观结构和晶体特征主要是Fe-SEM / EBSD分析的特征。定量澄清塑性变形期间的晶粒细分。经过重的菌株以上的重差,试样均匀地显示了层状边界结构,其中层状边界的平均间隔约为200nm,大于80%的边界是高角度。如果钢依赖于菌株,则ARB的退火行为加工。变形对中等菌株的样品表现出不连续的重结晶,其特征在于核心和生长,而试样的变形以上的4.0的菌株表示连续再结晶。基于在变形样品中定量测量的微观结构和晶体基值的基础上讨论重结晶行为。

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