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首页> 外文期刊>Refractories and Industrial Ceramics >DIRECTLY-BONDED PERICLASE-CHROMITE REFRACTORY CORROSION MECHANISM IN AN RH-DEGASSER SUCTION PIPE
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DIRECTLY-BONDED PERICLASE-CHROMITE REFRACTORY CORROSION MECHANISM IN AN RH-DEGASSER SUCTION PIPE

机译:rh脱气吸管中的直接粘合的蠕虫酶 - 铬菌耐火腐蚀机制

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摘要

Results are provided for a study of refractory objects based on fuzed periclase after service in the suction pipe of an RH-degasser in two metallurgical enterprises. In one enterprise the pipe operates in contact with slag, containing fluorspar with an alumina slag-forming component as a homogenizing addition, and in the second with slag for whose homogenization only fluorspar is used. In both cases, but in different pipe service conditions, there are 100 melts, and the operating duration is 1550 - 1800 min. It is established that the depth of molten slag component filtration into refractory depends on the form slag homogenizing additive in the steel-pouring ladle. Slag containing a combination of feldspar with alumina slag-forming additive penetrates into the refractory microstructure to a greater depth, which leads to a change in the initial phase composition of an object with formation of a considerable amount of secondary phases.
机译:在两家冶金企业中基于Rh-脱气剂的抽吸管道中的耐用物中的耐火物质研究提供了研究结果。 在一家企业中,管道与炉渣接触,含有氟渣形成组分作为均质化添加剂,并且在第二颗渣中使用胎化仅使用氟土。 在这两种情况下,但在不同的管道服务条件下,有100个熔体,操作持续时间为1550-1800分钟。 建立熔融渣元件过滤到耐火材料的深度取决于钢浇钢包装中的炉渣均质添加剂。 包含具有氧化铝矿渣形成添加剂的长石组合的炉渣渗透到耐火微观结构中至更大的深度,这导致物体的初始相组合物的变化,其形成相当大量的次生阶段。

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