首页> 外文会议>TMS annual meeting exhibition;Symposium on characterization of minerals, metals, and materials >EFFECT OF MANGANESE ON THE FORMATION MECHANISMS OF SILICO-FERRITE OF CALCIUM AND ALUMINUM (SFCA)
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EFFECT OF MANGANESE ON THE FORMATION MECHANISMS OF SILICO-FERRITE OF CALCIUM AND ALUMINUM (SFCA)

机译:锰对钙铝硅硅铁酸盐(SFCA)形成机理的影响

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In this research, analytical reagents were used for the sintering experiments. And the sinters were using X-ray diffraction, scanning electron microscope and mineralogical microscope analysis to study the effect mechanism of manganese on the silico-ferrite of calcium and aluminum (SFCA) bonding phase formation during the sintering process. The results indicated that the increasing content of manganese would greatly reduce the content of SFCA, and promote the formation of calcium aluminum silicate and the amount of pores and cracks. The existence of manganese inhibited the silicon form into the SFCA and a great deal of Fe_2O_3 was participated in the crystal transition to Fe_3O_4. When the ratio of the added manganese was less than 3% in the mixing, the calcium ferrite was in substantially interleaving corrosion with hematite and magnetite. Both the porosity and silicate glass phase content were low simultaneously, which contributed to the sintering production.
机译:在这项研究中,分析试剂用于烧结实验。并利用X射线衍射,扫描电子显微镜和矿物显微镜对烧结矿进行了研究,研究了锰对烧结过程中钙铝硅铁素体(SFCA)键合相形成的影响机理。结果表明,锰含量的增加将大大降低SFCA的含量,并促进钙铝硅酸盐的形成以及孔和裂纹的数量。锰的存在抑制了硅向SFCA的形成,并且大量的Fe_2O_3参与了向Fe_3O_4的晶体转变。当混合中添加的锰的比例小于3%时,铁氧体钙基本上与赤铁矿和磁铁矿交错腐蚀。孔隙率和硅酸盐玻璃相含量均较低,这有助于烧结生产。

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