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首页> 外文期刊>Archives of Metallurgy and Materials >Computer Simulation of Microsegregation of Sulphur and Manganese and Formation of MnS Inclusions while Casting Rail Steel
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Computer Simulation of Microsegregation of Sulphur and Manganese and Formation of MnS Inclusions while Casting Rail Steel

机译:铸造钢中硫和锰的微偏析和MnS夹杂物形成的计算机模拟

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The quality of rail steel is conditioned by its high mechanic qualities, which greatly depend on the presence of undesired nonmetallic inclusions. The paper is devoted to the segregation of components, mainly sulphur, and the formation of manganese sulphide in the process of steel solidification, at the casting rate of 100 and 500 K/min. Sulphur is a steel component which disadvantageously influences its numerous parameters. The oxide-sulphide and sulphide precipitations cause cracks and lower the strength of the material. This phenomenon was modeled with the use of author’s computer program based on Matsumiya interdendritic microsegregation model. The main assumptions of this model and thermodynamic conditions of inclusion formation during casting of steel are discussed in this paper. Two cases were analyzed: in the first one the MnS was assumed to form a pure and constant compound, whereas in the other one the manganese sulfide was precipitated as a component of a liquid oxide solution, and its activity was lower than unity. The final conclusion is that chemical composition of steel is the major parameter deciding about the formation of MnS inclusions.
机译:铁路钢的质量受其高机械性能的制约,而该机械质量很大程度上取决于不希望有的非金属夹杂物的存在。该论文致力于钢的凝固过程中,铸件速度为100和500 K / min时,主要是硫的成分分离,以及硫化锰的形成。硫是一种钢成分,会不利地影响其众多参数。氧化物-硫化物和硫化物的沉淀会导致裂纹并降低材料的强度。通过使用基于松宫树突状微分离模型的计算机程序对这种现象进行了建模。本文讨论了该模型的主要假设以及铸钢过程中夹杂物形成的热力学条件。分析了两种情况:在第一种情况下,假定MnS形成纯净且恒定的化合物,而在另一种情况下,硫化锰作为液态氧化物溶液的成分沉淀出来,其活性低于1。最终结论是,钢的化学成分是决定MnS夹杂物形成的主要参数。

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