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The Influence of Rapid Annealing Cycles on the Recrystallisation, Behaviour of Cold Rolled Ultra Low Carbon and Low Carbon Steel

机译:快速退火周期对冷轧超低碳和低碳钢的再结晶,行为的影响

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For ultra low carbon (ULC) and low carbon steel (LC), the influence of heating rate, annealing temperature, and holding time on the recrystallisation behaviour and the resulting grain size was investigated. For ULC smallest grain sizes of about 9 mum were obtained at the lowest heating rate whereas for LC significant smaller grain sizes of about 5 mum were determined at the highest heating rate. Furthermore, the evolution of the grain size distribution with varying heating rate, annealing temperature, and holding time was studied in dependence of the rolling and normal direction. The state of the as-hot rolled microstructure as well as the precipitation state exert a strong influence on the development of the recrystallised microstructure along the different directions for both steel grades. The inherent prolonged microstructure due to the cold rolling process is still obvious lust after recrystallisation. With ongoing annealing and grain growth, the aspect ratio approaches the equiaxed state. This change proceeds taster for the ULC steel grade. With increasing annealing temperature, the bimodal character of the grain size distribution disappears and the distribution becomes more homogeneous.
机译:对于超低碳(ULC)和低碳钢(LC),研究了加热速率,退火温度和保温时间对再结晶行为和所得晶粒尺寸的影响。对于ULC,在最低加热速率下获得约9微米的最小晶粒尺寸,而对于LC,在最高加热速率下确定约5微米的显着较小晶粒尺寸。此外,研究了随着轧制速度,退火温度和保温时间的变化,晶粒尺寸分布的变化,该变化取决于轧制方向和法线方向。两种钢种的热轧组织状态和析出状态都对沿不同方向再结晶组织的发展产生重大影响。重结晶后,由于冷轧过程而固有的延长的显微组织仍然很明显。随着退火和晶粒生长的进行,长径比接近等轴状态。对于ULC钢种,此更改使品尝师受益匪浅。随着退火温度的升高,晶粒尺寸分布的双峰特征消失,分布变得更加均匀。

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