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Effect of Multi-phase Oxide Particles on TiN Crystallization and Solidification Structure in Ti-Added Ferritic Stainless Steel

机译:多相氧化物颗粒对添加钛铁素体不锈钢中TiN结晶和凝固组织的影响

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The effect of TiN crystallization on the solidification structure of Ti-added ferritic stainless steel were studied in Ti/Mg, Ti/Ca, Ti/Mg/AI, Ti/Ca/AI, Al/Ti/Ca and Ti/Mg(Ca)/Ca(Mg) deoxidations carried out at 1 600℃ using an Fe-17.5(11)%Cr-0.25%Mn-0.20%Si-0.2 to 0.3%Ti-0.01 %C-0.003 to 0.04% N alloy on a mass percent basis. Compositional analysis of the oxide particles and TiN layers generated during the deoxidation using scanning electron microscopy in conjunction with an electron probe microanalyzer, coupled with observation of the morphology and homogeneity of complex TiN+oxide particles, revealed that the TiN layers were formed through the postulated mechanism of the co-crystallization of TiN and oxide. Ti/Mg and Ti/Mg/AI deoxidations performed in an AI2O3 crucible yielded a very fine solidification structure at high N contents (>200 ppm) because of the presence of complex particles consisting of the TiN layer with a small amount of oxide phases. In the Ti/Ca, Ti/Ca/AI and Al/Ti/Ca deoxidations using an AI2O3 crucible, a relatively fine solidification structure was observed when a low oxide content was present in the TiN layer. Ti/Ca/A and Al/Ti/Ca deoxidations carried out using an MgO crucible in the presence or absence of MgO-CaO-Al_2O_3 slag gave rise to solidification structures that were relatively finer in comparison with those obtained using an Al_2O_3 crucible. Very fine structures were observed at low N contents (36 to 80 ppm) in the Ti/Mg/Ca and Ti/Ca/Mg deoxidations using an Al_2O_3 crucible because of the effective surface composition of the oxide particles for δ-phase solidification.
机译:在Ti / Mg,Ti / Ca,Ti / Mg / Al,Ti / Ca / AI,Al / Ti / Ca和Ti / Mg(Ca)中研究了TiN结晶对添加Ti的铁素体不锈钢的凝固组织的影响。 )/ Ca(Mg)在1600℃下使用Fe-17.5(11)%Cr-0.25%Mn-0.20%Si-0.2至0.3%Ti-0.01%C-0.003至0.04%N合金进行的脱氧质量百分比基准。使用扫描电子显微镜结合电子探针显微分析仪对脱氧过程中生成的氧化物颗粒和TiN层进行成分分析,并观察复杂的TiN +氧化物颗粒的形态和均质性,发现TiN层是通过假定形成的氮化钛与氧化物共结晶的机理在Al2O3坩埚中进行的Ti / Mg和Ti / Mg / Al脱氧反应在高N含量(> 200 ppm)下产生了非常精细的凝固组织,这是由于存在由TiN层组成的,具有少量氧化物相的复合颗粒。在使用Al 2 O 3坩埚的Ti / Ca,Ti / Ca / Al和Al / Ti / Ca脱氧中,当TiN层中存在低氧化物含量时,观察到相对精细的凝固结构。在存在或不存在MgO-CaO-Al_2O_3炉渣的情况下,使用MgO坩埚进行的Ti / Ca / A和Al / Ti / Ca脱氧反应产生的凝固组织与使用Al_2O_3坩埚得到的凝固组织相比相对更细。在Ti / Mg / Ca和使用Al_2O_3坩埚的Ti / Ca / Mg脱氧中,在低N含量(36至80 ppm)下观察到非常精细的结构,这是因为氧化物颗粒的有效表面组成可用于δ相凝固。

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