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The kinetics of nitrogen dissolution in levitation and arc-melted Fe-C-Mn filler metals

机译:悬浮和电弧熔化的Fe-C-Mn填充金属中氮溶解的动力学

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Purpose: The influence of melting method on the kinetics of nitrogen absorption by Fe-C-Mn filler metals has been analysed. The industrial heats of the Fe-C-Mn (SpG1) type welding filler metals were selected for own researches.Design/methodology/approach: The research of the nitrogen absorption kinetics was carried out in the levitation and TIG arc-melting conditions in the Ar+N2atmosphere. The conditions of experiments were made possibly close to those existing in a molten metal drop in the welding processes.Findings: Based on the models of nitrogen absorption during levitation and arc melting of Fe-C-Mn filler metals, the time-dependent changes of nitrogen content were determined as well as the mass transfer coefficients b and the rates of nitrogen absorption. Nitrogen absorption rate decreases along with the increase of oxygen content in the Fe-C-Mn filler metals arc-melted in the Ar+N2atmosphere.Research limitations/implications: Investigation of the Fe-C-Mn complex alloys with the specified amount of impurities makes the detailed analysis of the elementary stages of nitrogen dissolution more difficult, yet brings the experiment conditions closer to those occurring in the actual welding processes.Practical implications: Recognizing the mechanisms of nitrogen absorption under arc and non-arc melting to make possible the control of nitrogen level in the welds.Originality/value: Obtained results explain the influence of oxygen and melting conditions on kinetics of nitrogen dissolution in Fe-C-Mn alloys
机译:目的:分析了熔融方法对Fe-C-Mn填充金属吸收氮动力学的影响。选择了Fe-C-Mn(SpG1)型焊接金属的工业炉料作为研究对象。设计/方法/方法:在悬浮和TIG电弧熔化条件下对氮吸收动力学进行了研究。 Ar + N2气氛。实验条件可能与焊接过程中熔融金属滴中存在的条件接近。研究发现:基于Fe-C-Mn填充金属的悬浮和电弧熔化过程中的氮吸收模型,随着时间的变化,测定氮含量以及传质系数b和氮吸收速率。在Ar + N2气氛中电弧熔化的Fe-C-Mn填充金属中氮的吸收率随着氧含量的增加而降低。研究局限/意义:研究特定杂质含量的Fe-C-Mn复合合金使得对氮溶解基本阶段的详细分析更加困难,但使实验条件更接近于实际焊接过程中发生的条件。实际意义:认识电弧和非电弧熔化下的氮吸收机理,使控制成为可能值/原始值:获得的结果解释了氧气和熔化条件对Fe-C-Mn合金中氮溶解动力学的影响

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