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首页> 外文期刊>Materials Research Bulletin >Crystallization and microstructure of glasses in the system Na_2O/MnO/SiO_2/Fe_2O_3
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Crystallization and microstructure of glasses in the system Na_2O/MnO/SiO_2/Fe_2O_3

机译:Na_2O / MnO / SiO_2 / Fe_2O_3体系中玻璃的结晶和微观结构

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摘要

Classes with the compositions (100 - x)(0.16Na_2O/0.10MnO/0.74SiO_2)/xFe_2O_3, (x = 5-30) and 16Na_2O/ 10MnO/(74-y)SiO_2/yFe2_O_3 (y = 5-30) were studied using X-ray diffraction and scanning electron microscopy. The effect of the chemical composition and the thermal history on the phase formation and the resulting microstructure was investigated. During cooling, the precipitation of ferrimagnetic solid solutions Fe_3O_4/Mn_3O_4 was observed. These crystals show dendritic or platelet shape, whereby the platelets are ferromagnetic and the dendrites - mainly paramagnetic. The tendency towards crystallization can be suppressed by increasing the Na_2O-concentration. In contrast to glasses without manganese oxide, the precipitation of hematite is not observed. Therefore, the addition of reducing agents is not required, in order to crystallize large volume concentrations of the ferrimagnetic phase.
机译:组成为(100-x)(0.16Na_2O / 0.10MnO / 0.74SiO_2)/ xFe_2O_3,(x = 5-30)和16Na_2O / 10MnO /(74-y)SiO_2 / yFe2_O_3(y = 5-30)的类别为使用X射线衍射和扫描电子显微镜进行研究。研究了化学组成和热历史对相形成和所得微结构的影响。在冷却期间,观察到亚铁磁性固溶体Fe_3O_4 / Mn_3O_4的沉淀。这些晶体显示出树枝状或血小板形状,其中血小板是铁磁性的,而树枝状-主要是顺磁性的。可以通过增加Na 2 O浓度来抑制结晶趋势。与不含氧化锰的玻璃相比,未观察到赤铁矿的沉淀。因此,为了使大体积浓度的亚铁磁性相结晶,不需要添加还原剂。

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