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In Situ Observation of Aluminothermic Reduction of MgO with High Temperature Optical Microscope

机译:高温光学显微镜原位观察MgO的铝热还原

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Desulfurization and deoxidation of molten iron with magnesium vapor produced in-situ by aluminothermic reduction of magnesium oxide has been developed. In the present study, the mechanism of aluminothermic reduction of magnesium oxide by use of pellets composed of magnesium oxide and aluminum powders was discussed. SEM observation of the pellets at different reduction stages for various temperatures showed that fracture and disappearance of the alumina films on the aluminum particles were stimulated above 1 473 K, and thus the reduction of magnesium oxide was greatly accelerated. From in-situ observation of the aluminothermic reduction of magnesium oxide using a high temperature optical microscope (HTOM), it was found that the reduction proceeded after the penetration of molten aluminum into the magnesium oxide phase. The penetration began at 1 273 K and it was accelerated above 1 373 K. The reduction took place violently at 1 473 K. SEM observation and EDS analysis of the cooled sample revealed that the penetration took place only through cracks of the alumina film. In-situ observation of the melting process of aluminum particles together with SEM observation of the cooled sample showed that the thermal stress and the stress formed during phase transformation could break up the alumina film and the outflow of molten aluminum did take place at the elevated temperature.
机译:已经开发了通过铝热还原氧化镁原位产生的镁蒸气对铁水进行脱硫和脱氧的技术。在本研究中,讨论了通过使用由氧化镁和铝粉组成的粒料进行铝热还原氧化镁的机理。 SEM观察在不同温度下在不同还原阶段的粒料表明,在1473K以上,铝颗粒上氧化铝膜的破裂和消失被促进,因此大大促进了氧化镁的还原。使用高温光学显微镜(HTOM)从原位观察氧化镁的铝热还原,发现还原是在熔融铝渗入氧化镁相之后进行的。渗透始于1 273 K,并在1 373 K以上加速。还原发生于1 473 K剧烈。冷却样品的SEM观察和EDS分析表明,渗透仅通过氧化铝膜的裂纹发生。铝颗粒熔化过程的原位观察和冷却样品的SEM观察表明,热应力和相变过程中形成的应力会破坏氧化铝膜,并且熔融铝确实在高温下流出。

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