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Corrosion of refractory alumina plates used in the sliding gate system of steelmaking ladle: Chemical experiment

机译:钢制造钢板滑动栅极系统的耐火材料氧化铝板的腐蚀:化学实验

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The aim of this study is to investigate the corrosion process of the refractory Al2O3-ZrO2-C slide gate plate caused by chemical interactions with secondary refining slag. The plate is part of the steelmaking ladle slide gate system, therefore its lifespan extension and integrity are of concern. Post mortem plates with slag adhered on their channel surface were analysed and static cup corrosion test experiments were performed in a controlled atmosphere furnace for 1 h at 1600 degrees C. The corrosion product phases Gehlenite (Al2Ca2O7Si) and Spinel (MgAl2O4) identified by DRX were formed after the experiment, showing that the slag is able to chemically corrode the Al2O3-ZrO2-C plates. In addition, a comparison of the interface region between the slag and the post mortem plate and the interface region between the slag and the static cup corrosion test specimens showed that the corrosion products are swept away by the fluid flow. Even though chemical corrosion by slag has been identified as one of the causes of the plate channel degradation, the study suggests that it acts synergistically with other mechanisms of degradation.
机译:本研究的目的是研究由化学相互作用与二级精制炉渣引起的难熔AL2O3-ZRO2-C滑块的腐蚀过程。该板是钢制制造钢包滑栅系统的一部分,因此其寿命延伸和完整性是值得关注的。分析了粘附在其沟道表面上的炉渣的后验验板,并在受控气氛炉中在1600℃下进行静电杯腐蚀试验实验。通过DRX鉴定的腐蚀产物阶段(AL2CA2O7SI)和尖晶石(MGAL2O4)均为DRX在实验后形成,表明炉渣能够化学腐蚀Al 2 O 3-ZrO2-C板。另外,炉渣和后验镜板之间的界面区域的比较以及炉渣和静态杯腐蚀试验标本之间的界面区域表明腐蚀产物被流体流动扫除。尽管通过渣的化学腐蚀已被识别为板通道降解的原因之一,但该研究表明它与其他降解机制协同起作用。

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