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Formation of MgO-based inclusions during AOD and ladle treatment of Al-killed 2205 duplex stainless steel

机译:在AOD和钢包处理期间形成MgO的夹杂物,AL杀死的2205双相不锈钢

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Pilot trials were performed to study the formation mechanism of MgO-cored inclusions in 2205 stainless steel refined using low-Al high-basicity slag. The composition of melts and slags significantly affected the inclusion types, compositions, and shapes. Experimental results showed characteristic CaO and MgO dual-saturation in the slags. The compositions of the inclusions approached those of the slags, viz. the MgO-rich MgOspinel solid solutions or pure MgO. MgO in the slags provided sufficient Mg to the steel melts that newly generated pure MgO stably approached equilibrium as the Mg-O deoxidization reaction continued. The activity changes of Ca, Mg, and Al during refining were modeled. The activity of Mg exceeded those of Al and Ca, and the Mg-O reaction was always dominant. A kinetics model was established to elucidate the changing mechanisms of inclusions. The transferring kinetics of inclusions was discussed qualitatively to analyze velocity-controlled steps. The concentration of Al was low in molten steel, implying a low potential energy of Al3+ and impeded diffusion into the MgO core to form MA-spinel. Meanwhile, the diffusion of Mg2+ into the MgO core was the rate-limited step.
机译:进行试验试验,以研究使用低碱度高碱性炉渣改进2205不锈钢的MgO芯夹杂物的形成机制。熔融和渣的组成显着影响了包含类型,组合物和形状。实验结果表明,炉渣中的特征Cao和MgO双饱和。夹杂物的组成接近炉渣,viz的组成。富含MgO的Mgospinel固溶体或纯MgO。在炉渣中的MgO提供足够的mg,钢熔化,当Mg-O脱氧反应继续时,将新产生的纯MgO稳定地接近平衡。改进过程中Ca,Mg和Al的活性变化。 Mg的活性超过了Al和Ca的活性,Mg-O反应总是显着。建立了动力学模型,以阐明夹杂物的变化机制。定性地讨论了夹杂物的转移动力学来分析速度控制的步骤。钢水中Al的浓度低,暗示Al3 +的低电位能量,并将扩散到MgO核中以形成Ma-Spinel。同时,Mg2 +进入MgO核的扩散是速率有限的步骤。

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