首页> 外文会议>TMS Annual Meeting Exhibition;Characterization of Minerals, Metals, and Materials Symposium >Effect of Mg with Different Combination Form of Mg-Ca in MgO-Bearing Fluxes on Fluidity of Liquid Phase in Sintering Process
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Effect of Mg with Different Combination Form of Mg-Ca in MgO-Bearing Fluxes on Fluidity of Liquid Phase in Sintering Process

机译:MG在烧结过程中液相流动性Mg-Ca中不同组合形式的Mg与Mg-Ca的影响

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MgO was considered to be an indispensable mineral composition of the modern sintering process. Fluidity of liquid phase reflecting the scope of effective bonding makes a clear distinction among MgO-bearing fluxes in the sintering process. Mg-Ca combination forms of dolomite, l-dolomite, serpentine and their influence on the fluidity of liquid phase and bonding strength of sinter body were investigated and analyzed. The results showed that there were non-separated, partly-separated, and completely-separated states of Mg-Ca in different MgO-bearing fluxes. Furthermore, development of the separation degree of Mg-Ca combination states led to the decrease of Mg content melt in silico-ferrite of calcium and aluminum (SFCA) and increase of Mg content in magnetite. Consequently, fluidity of liquid phase was improved due to decline of viscosity of liquid phase. Moreover, bonding strength had a good positive correlation with fluidity of liquid phase. Hence, increase of Mg-Ca separation degree was beneficial for improvement of bonding strength.
机译:MgO被认为是现代烧结过程的不可缺少的矿物成分。反映有效粘合范围的液相的流动性使得烧结过程中的MgO承载通量明显不同。研究了Mg-Ca组合形式的白云石,L-白云岩,蛇纹石及其对液相流动性和烧结体的粘结强度的影响,并分析。结果表明,在不同的MgO轴承通量中存在非分离的,部分分离和完全分离的Mg-Ca状态。此外,Mg-Ca组合状态的分离程度的发展导致钙和铝的硅铁氧体中的Mg含量熔体降低,并在磁铁矿中增加Mg含量。因此,由于液相粘度的下降,液相的流动性得到改善。此外,粘合强度与液相的流动性具有良好的正相关性。因此,Mg-Ca分离度的增加有利于改善粘合强度。

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