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Effect of oxygen partial pressure on the formation mechanisms of complex Ca-rich ferrites

机译:氧分压对复合富钙铁氧体形成机理的影响

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摘要

The formation mechanisms of the complex Ca-rich ferrite iron ore sinter bonding phases SFCA and SFCA-I, during heating of a synthetic sinter mixture in the range 298-1623 K and at pO(2) = 0.21, 5 x 10(-3) and 1 x 10(-4) atm, were determined using in situ X-ray diffraction. SFCA and, in particular, SFCA-I are desirable bonding phases in iron ore sinter, and improved understanding of the effect of parameters such as pO(2) on their formation may lead to improved ability to maximise their formation. in industrial sintering processes. SFCA-I and SFCA were both observed to form at pO(2) = 0.21 and 5 x 10-3 atm, with the formation of SFCA-I preceding SFCA formation in each case, but via distinctly different mechanisms at each pO(2). No SFCA-I was observed at pO(2) = 1 x 10-4 atm; instead, a Ca-rich phase designated CFAlSi, formed at 1 420 K. By 1 456 K, CFAlsi had decomposed to form melt and a small amount of SFCA. Such a low pO(2) during heating of industrial sinter mixtures is, therefore, undesirable, since it would not result in the formation of an abundance of SFCA and SFCA-I bonding phases. In addition, CFA phase, which was determined by Webster et al. (Metall. Mater. Trans. B, 43(2012), 1344) to be a key precursor phase in the formation of SFCA at pO(2) = 5 x 10(-3) atm, was also observed to form at pO(2) = 0.21 and 1 x 10(-4) atm, with the amount decreasing with increasing pO(2). Copyright © The Iron and Steel Institute of Japan 2013.
机译:在298-1623 K范围内且在pO(2)= 0.21,5 x 10(-3)范围内加热合成烧结混合物期间,富Ca的铁氧体铁矿烧结矿结合相SFCA和SFCA-1的形成机理)和1 x 10(-4)atm,使用原位X射线衍射测定。 SFCA,尤其是SFCA-1是铁矿烧结矿中理想的粘结相,对诸如pO(2)之类的参数对其形成的影响的更好的理解可能会导致最大程度地提高其形成的能力。在工业烧结过程中。观察到SFCA-1和SFCA都在pO(2)= 0.21和5 x 10-3 atm形成,在每种情况下都形成SFCA-1,先于SFCA形成,但是在每个pO(2)处通过明显不同的机制。在pO(2)= 1 x 10-4 atm时未观察到SFCA-1。取而代之的是,富铝相称为CFAlSi,在1420 K处形成。到1456 K,CFAlsi分解形成熔体和少量SFCA。因此,在工业烧结混合物的加热期间如此低的pO(2)是不希望的,因为这不会导致形成大量的SFCA和SFCA-1键合相。此外,CFA阶段由Webster等确定。 (Metall。Mater。Trans.B,43(2012),1344)是在pO(2)= 5 x 10(-3)atm的SFCA形成过程中的关键前体相,也观察到在pO( 2)= 0.21和1 x 10(-4)atm,随着pO(2)的增加而减少。版权所有©日本钢铁学会2013。

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