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Kinetics of Nitrogen Absorption and Desorption in High-Cr Molten Steel under Pressurized Atmosphere

机译:加压气氛下高铬钢中氮的吸收和解吸动力学

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The rates of nitrogen absorption and desorption in high-Cr molten steel under a pressurized atmosphere were investigated using a pressurized directional solidification furnace. In this study, the melting experiments were performed under a maximum gas condition of 1.0 MPa. It was found that nitrogen absorption rate took the same value under the conditions of unified partial pressure on N_(2) gas in spite of the different total pressure. The mass transfer coefficient in the liquid phase of high-Cr molten steel at 1823 K was estimated as 0.0009 m·s~(?1). On the other hand, it was found that the rate constant at the gas/liquid interface for the nitrogen desorption reaction decreased with the increase of nitrogen partial pressure. This result indicates that the nitrogen activity in the molten steel has an influence on the chemical reaction at the gas/liquid interface. Furthermore, the mass transfer coefficient in the gas phase decreased with the increase of total pressure. As numerical kinetic analysis shows, this result suggests that mass transfer in the gas phase is very important for the nitrogen absorption and desorption reactions under a pressurized atmosphere.
机译:使用加压定向凝固炉研究了高Cr钢在加压气氛下的氮吸收和解吸速率。在这项研究中,熔化实验是在1.0 MPa的最大气体条件下进行的。研究发现,尽管总压力不同,但在N_(2)气体上的统一分压条件下,氮的吸收率仍取相同的值。高铬钢在1823 K时的液相传质系数估计为0.0009 m·s〜(?1)。另一方面,发现氮脱附反应在气/液界面处的速率常数随氮分压的增加而降低。该结果表明,钢水中的氮活度对气/液界面处的化学反应有影响。此外,气相中的传质系数随着总压力的增加而降低。如数值动力学分析所示,该结果表明气相中的传质对于加压气氛下的氮吸收和解吸反应非常重要。

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