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首页> 外文期刊>Journal of the Technical Association of Refractories >In-situ Observation and Analysis on Metal Penetration Behavior into Porous Refractories
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In-situ Observation and Analysis on Metal Penetration Behavior into Porous Refractories

机译:金属渗入多孔质耐火材料的原位观察与分析

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摘要

The penetration behavior of molten metal (Hg, Ag and steel) into porous refractories, that is, penetration behavior of non-wetting system has been studied experimentally and theoretically. A countermeasure to suppress the penetration of molten metal into porous refractories was suggested based on the experimental results and analysis. The penetration behavior was observed by using an X-ray radiographic apparatus. In case of steel penetration, the time dependence of penetration height was observed. The penetration behavior was analyzed using a capillary model in which a correction coefficient zeta_M was introduced. Zeta_M which include the effect of external pressure and physical properties of penetrated metal (1 sigma M COS theta M/pM) was proposed. The penetration behavior can be classified as Stage I (zeta_M
机译:通过实验和理论研究了熔融金属(Hg,Ag和钢)对多孔耐火材料的渗透行为,即非润湿体系的渗透行为。根据实验结果和分析,提出了抑制熔融金属渗入多孔耐火材料的对策。通过使用X射线照相设备观察渗透行为。在钢的渗透情况下,观察到渗透高度随时间的变化。使用引入了校正系数zeta_M的毛细管模型分析了渗透行为。提出了Zeta_M,其中包括外部压力和渗透金属的物理特性的影响(1σM COS theta M / pM )。渗透行为可分为阶段I(zeta_M <!)和阶段II(zeta_M =!)。基于汞的渗透行为,可以预测熔融金属的渗透行为。在阶段I中,可以通过增加theta_M并通过反应产物使孔小于临界半径r_n来降低zeta_M,从而抑制熔融金属渗入多孔耐火材料中。在阶段II中,可以通过降低穿透速度来抑制穿透。

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