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THE OPTIMISATION OF TITANIUM AND NITROGEN CONCENTRATION IN MICRO-ALLOYED STEEL

机译:微合金钢中钛和氮浓度的优化

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The paper deals with the control of the concentrations of titanium and nitrogen content in micro-alloyed steel with the aim of preserving sufficient amounts of these components for precipitation of relevant amount of TiN inclusions in austenite. Fine TiN inclusions inhibit the growth of austenite grains during soaking prior to hot rolling. The analysis of three stages of secondary metallurgy treatment: deoxidization with aluminum, titanium addition and cooling down to liquidus temperature was based on the parameters of thermodynamic equilibrium between metallic phase and non-metallic phases present in the system. The equilibrium compositions of phases were calculated by means of the FactSage software. The low alloyed carbon steel containing 0.02 percent C, 1.5 percent Mn and 0.2 percent Si was the subject of calculations. It was determined that deoxidization by means of aluminum reduces the oxygen concentration below 20 ppm. The TiN addition causes the formation of solid TiN and the modification of composition of liquid oxide precipitates with dissolved Ti_2O_3. The composition of obtained phases as well as the titanium distribution were determined for various initial nitrogen contents, steel deoxidization levels and titanium additions. It was stated that the most effective use of titanium from the view point of TiN formation in austenite appears at relatively low nitrogen concentration in steel, approximately 25 ppm.
机译:本文涉及控制微合金钢中钛和氮含量的浓度,目的是保留足量的这些组分,用于沉淀奥氏体中的锡夹杂物的沉淀。细锡夹杂物在热轧之前浸泡期间抑制奥氏体颗粒的生长。二次冶金治疗三个阶段的分析:用铝的脱氧,钛加入和冷却至液相治温度基于系统中金属相和非金属相之间的热力学平衡参数。通过事实上的软件计算各阶的平衡组合物。含有0.02%C,1.5%Mn和0.2%Si的低合金碳钢是计算的主题。通过铝的脱氧化降低了20ppm以下的氧浓度。锡加成导致固体锡的形成,并用溶解的Ti_2O_3沉淀液体组合物的改性。测定所得相的组合物以及钛分布的各种初始氮含量,钢脱氧水平和钛添加。据称,从奥氏体中锡形成的锡形成的钛的最有效使用钢中的钢中氮浓度约为25ppm。

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