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Densification mechanism of porous alumina plugs by molten steel with different oxygen levels

机译:不同氧水平钢水钢多孔氧化铝塞的致密化机理

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To investigate the densification of porous alumina plugs, hydrogen measurements, using the Hydris probe system, were performed in molten steel with different oxygen levels at around 1600 degrees C. The oxygen contents in molten steel were controlled by Al and Fe-Si alloy additions to 664, 296, 92, 51 and 2.5 ppm, respectively. High oxygen levels ( = 92 ppm) in molten steel were found to favor the infiltration of steel into porous alumina plug. The infiltrating steel interacts with SiO2-containing phases and Al2O3 inside the plug, forming liquid FeOn-Al2O3-SiO2 slag and FeAl2O4 (hercynite). These newly formed phases, along with the infiltrating steel fill the porous structure of the alumina plugs. As a result, severe densification was observed inside the alumina plugs in contact with molten steel containing high oxygen levels. In comparison, no densification occurred in the plugs contacting with the steel having low oxygen contents of 51 and 2.5 ppm.
机译:为了研究多孔氧化铝塞的致密化,使用氢化物探针系统,在1600℃左右不同氧含量的钢水中进行氢测量。钢水中的氧含量分别由添加至664、296、92、51和2.5 ppm的铝和铁硅合金控制。研究发现,钢液中的高氧含量(;=92 ppm)有利于钢渗入多孔氧化铝塞中。渗钢与塞体内的含SiO2相和Al2O3相互作用,形成液态FeOn-Al2O3-SiO2渣和FeAl2O4(铁铝尖晶石)。这些新形成的相以及渗入的钢填充了氧化铝塞的多孔结构。结果,在与含氧量高的钢水接触的氧化铝塞内部观察到严重的致密化。相比之下,与含氧量分别为51和2.5 ppm的钢接触的塞子没有发生致密化。

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