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Application of Nb-O Affinity in Clean Steel

机译:Nb-O亲和力在洁净钢中的应用

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This report introduces a new deoxidation process that starts with a vacuum degassing followed by the addition of ferro-niobium in the same vacuum facility. The addition of strong deoxidation substance like aluminum and/or silicon is not adopted. Owing to the degassing in vacuum, which in reality reacts as deoxidation with C in molten steel, the solute oxygen in molten steel (O) is stabilized by niobium, which generates an ample number of fine oxide particles composed of (Nb, Mn)_2O_3-phase. Provided the carbon-degassing is conducted so as to reach the O prior to the FeNb addition would be around 100ppm and less, these oxide-inclusions do not agglomerate before and during solidification, because of the weak cohesivity of niobium-based oxides in molten steel, which would enable defect-free cast products as well as clogging-less casting operation. Also, the steel containing these fine (Nb, Mn)_2O_3-particles but no Al, exhibits so-called intra-granular acicular ferrite transformation and good toughness of weld heat affected zone (HAZ).
机译:该报告介绍了一种新的脱氧工艺,该工艺首先在相同的真空设备中进行真空脱气,然后再添加铌铁。不采用强脱氧物质,如铝和/或硅。由于真空中的脱气(实际上是与钢水中的C脱氧反应),所以铌中的钢稳定了氧气(O)中的溶质氧,生成了大量由(Nb,Mn)_2O_3组成的细氧化物颗粒。 -相。如果进行碳脱气,以便在添加FeNb之前达到O的含量约为100ppm或更低,则由于铌基氧化物在钢水中的结合力较弱,因此这些氧化物夹杂物在凝固之前和凝固过程中不会聚结。 ,这将实现无缺陷的铸造产品以及无堵塞的铸造操作。而且,含有这些细的(Nb,Mn)_2O_3粒子但不含Al的钢表现出所谓的晶内针状铁素体相变,并且具有良好的焊接热影响区(HAZ)韧性。

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