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Influence of finish-rolling conditions on microstructure and mechanical properties of low-alloy Mn-Ni-Cr-Mo steel grade

机译:结束轧制条件对低合金MN-Ni-Cr-Mo钢级微观结构和力学性能的影响

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A physical simulation of the thermomechanical processing of the Mn-Ni-Cr-Mo low-alloy steel was performed in the laboratory rolling mill Tandem in the Institute of Modelling and Control of Forming Processes at VSB - Technical University of Ostrava. The task was to determine the influence of the finish rolling temperature on the structural and mechanical properties of the rolled products. After different modes of rolling and slow cooling in the furnace, the final structure of the tested samples was in all cases composed of ferrite, bainite and islands of martensite. The finish rolling temperature markedly influenced a part by volume of the individual phases as well as the structure homogeneity. The results of the tensile tests at room temperature indicated that the studied steel did not show any pronounced dependence of the yield stress on the finish rolling temperature in the investigated range of values (750 - 1000 °C). On the other hand, the closely corresponding dependences of the ultimate tensile stress and elongation exhibited a considerable and very complex course, which can be explained mainly by the martensite fraction originating during the last stage of the final air cooling from temperature 600 °C.
机译:Mn-Ni-Cr-Mo低合金钢的热机械加工的物理模拟在VSB - 技术大学俄斯塔夫大学的建模和控制研究所的实验室轧机串联中进行。该任务是确定结束轧制温度对轧制产品结构和机械性能的影响。在炉子中轧制和缓慢冷却的不同模式之后,测试样品的最终结构在所有的案例中由铁素体,贝氏体和马氏体岛组成。结束轧制温度明显影响各个阶段的体积以及结构均匀性。室温的拉伸试验结果表明,研究的钢未显示在研究的值范围(750-1000°C)中的屈服应力对屈服应力的任何明显依赖性。另一方面,最终拉伸应力和伸长率的紧密相应的依赖性表现出相当大且非常复杂的过程,其可以主要由源自600℃的最终空气冷却的最后阶段的马氏体分数来解释。

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