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The Influence of Initial Grain Size and Strain Sequence of Slab Hot Rolling on the Austenite Evolution of Peritectic Microalloyed Plate Steels

机译:板坯热轧初粒尺寸和应变序列对包围微合金钢板钢奥氏体演化的影响

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The influence of the strain sequence during slab hot rolling (also known as "roughing") on the evolution of austenite in plain carbon, C-Mn-V and C-Mn-Nb-Ti-V steels was investigated. Reheating and roughing simulations were conducted in a Bahr deformation dilatometer using a constant austenitising temperature, constant soaking time and various heating rates and roughing strain sequences. Stress analysis was used to quantify the austenite softening behaviour and the prior austenite grain size was measured from quenched specimens. The austenite grains of the plain carbon steel were coarser than those of both microalloyed steels, with the C-Mn-Nb-Ti-V grade being the finest due to effective pinning of the grain boundaries. Pass strains greater than 0.2 were sufficient for initiation of dynamic recrystallisation (DRX) for the C-Mn and C-Mn-V steels and led to uniform austenite microstructure with austenite grain sizes less than 40um after the roughing stage.
机译:研究了在普通碳,C-Mn-V和C-MN-NB-Ti-V钢中奥氏体的奥氏体进化中的菌株序列(也称为“粗加工”)的影响。使用恒定的奥氏体温度,恒定的浸泡时间和各种加热速率和粗加工应变序列,在BAHR变形膨胀仪中进行再加热和粗加工模拟。应力分析用于量化奥氏体软化行为,并从淬火标本中测量先前奥氏体晶粒尺寸。普通碳钢的奥氏体晶粒比两种微合金钢的脂肪纤维粗糙,C-MN-NB-Ti-V级是由于晶界的有效钉扎而是最优选的。通过大于0.2的通过菌株足以使C-Mn和C-Mn-V钢的动态重结晶(DRX)引发,并导致粗阶段之后均匀奥氏体微观结构均匀,奥氏体晶粒尺寸小于40um。

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