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Influence of Refractory-Steel Interfacial Reaction on the Formation Behavior of Inclusions in Ce-containing Stainless Steel

机译:耐火钢界面反应对含铈不锈钢夹杂物形成行为的影响

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Effect of Ce addition on the interfacial reaction between alumina refractory and 25wt%Cr-20wt%Ni-4wt%Si-0.5wt%Mn stainless steel deoxidized by Al at 1 873 K was investigated to understand the contribution of the refractory-steel reaction to the inclusion evolution processes. The oxygen content markedly decreased by Al deoxidation, followed by a sluggish decrease by Ce addition greater than 0.5 wt%. The Ce content continuously decreased, but the higher the initial Ce content, the lower the Ce-decreasing rate was obtained. The content of Al initially decreased due to the formation of Al-rich inclusions, followed by an abrupt increase mainly due to a reduction of alumina refractory by Ce at the steel-refractory interface. The content of Al decreased again because of the formation of CeAlO_3 compound not only as inclusions but also as refractory-steel reaction products. The CeAl_(11)O_(18) and CeAlO_3 were formed at the refractory side, while the Ce_2O_3 and CeAlO_3 were formed at the steel side in the 0.5 wt% and 1.0 wt% Ce added systems. From the refractory-steel reaction mechanism, the process of inclusion evolution was proposed to three steps as follows. The initial SiO_2-rich oxides are reduced by Al, resulting in the formation of alu-minosilicates inclusions (Step 1). The Al_2O_3 in the inclusions are reduced by cerium, resulting in the formation of Ce-rich oxides (Step 2). Because the Ce content continuously decreased due to the refractory-steel reaction, the inclusions transform from Ce-Al complex oxides to Al-rich aluminosilicates and from Ce_2O_3 to Ce-Al complex oxides in the 0.1 wt% and 0.5 wt% Ce added systems (Step 3).
机译:研究了铈添加对1873 K时Al脱氧的25wt%Cr-20wt%Ni-4wt%Si-0.5wt%Mn不锈钢与氧化铝耐火材料界面反应的影响,以了解耐火钢反应对夹杂物演化过程。通过Al脱氧使氧含量显着降低,然后通过添加大于0.5wt%的Ce缓慢地降低氧含量。 Ce含量连续降低,但是初始Ce含量越高,Ce降低率越低。 Al的含量最初由于富Al夹杂物的形成而降低,其后突然增加,主要是由于Ce在钢质耐火材料界面处减少了氧化铝耐火材料的含量。 Al的含量再次下降是因为不仅以夹杂物的形式形成了CeAlO_3化合物,而且还以耐火钢反应产物的形式形成了AlAl。在添加有0.5重量%和1.0重量%的Ce的体系中,在耐火侧形成了CeAl_(11)O_(18)和CeAlO_3,而在钢侧形成了Ce_2O_3和CeAlO_3。从耐火钢反应机理出发,将夹杂物演化过程分为三个步骤。最初的富含SiO_2的氧化物被Al还原,导致形成铝-氨基硅酸盐夹杂物(步骤1)。夹杂物中的Al_2O_3被铈还原,导致形成富Ce的氧化物(步骤2)。由于添加了0.1 wt%和0.5 wt%的Ce的体系中,由于难熔钢反应导致Ce含量连续下降,因此夹杂物从Ce-Al复合氧化物转变为富Al的铝硅酸盐,从Ce_2O_3转变为Ce-Al复合氧化物(步骤3)。

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