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Acquiring High-Quality Oil Casing Steel 26CrMoVTiB under Optimal Continuous Casting Process Conditions

机译:在最佳连续铸造工艺条件下获得高质量的油套管26CrmovTib

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摘要

While the solidification macrostructure of continuous cast billets is an important factor influencing the final performance and rolling yield of oil casing steel, the continuous casting process parameters have a direct influence on the solidification structure. This study simulated the solidification process of the continuous casting round billets of oil casing steel using a cellular automaton−finite element (CAFE) model. According to the simulation results, at a superheat degree of 20−35 K, a casting speed of 1.9−2.1 m/min, and a secondary cooling specific water flow of 0.34−0.45 L/Kg, the solidification structure had a relatively high equiaxed crystal ratio and small average grain radius. Guided by the simulation results, this paper establishes optimal process schemes for producing 26CrMoVTiB steel round billets, comparatively analyzes the equiaxed crystal ratio and central shrinkage of round billets produced according to these schemes, and defines the optimal continuous casting process conditions, which are: superheat degree = 25 K, casting speed = 2.1 m/min, and specific water flow = 0.35 L/Kg. When adopting these process parameters, the 26CrMoVTiB steel round billets demonstrate a tiny central shrinkage and an equiaxed crystal ratio of 45.2%.
机译:虽然连续铸坯的凝固宏观结构是影响油套管最终性能和轧制产量的重要因素,但连续铸造工艺参数对凝固结构具有直接影响。本研究模拟了使用蜂窝自动机构 - 有限元(咖啡馆)模型的连续铸造圆坯钢的凝固过程。根据仿真结果,在20-35 k的过热程度,铸造速度为1.9-2.1米/分钟,凝固结构的二次冷却比水流为0.34-0.45升,凝固结构具有相对高的等轴晶体比和小平均晶粒半径。通过仿真结果指导,该论文建立了生产26Crmovtib钢圆坯的最佳工艺方案,相对分析了根据这些方案生产的圆形坯料的等轴晶系比和中央收缩,并定义了最佳的连续铸造工艺条件,即:超热度= 25 k,铸造速度= 2.1米/分钟,特定水流量= 0.35升/千克。在采用这些过程参数时,26Crmovtib钢圆坯坯料表现出微小的中央收缩和等轴晶系比为45.2%。

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