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Effect of TiO2 on Melting and Crystallization Mechanism of Fused Magnesia

机译:TiO2对熔融镁质熔融和结晶机理的影响

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摘要

Fused magnesia was prepared by electric arc furnace melting method using high purity brine magnesia as raw material. The melting and crystallization mechanism of fused magnesia containing 0.15,0.25 and 0.35 wt % TiO2 have been investigated. The bulk density, impurity content, crystal type and microstructure of product samples were characterized by Archimedes Method, ICP-AES, XRD, SEM, respectively. Results indicated that fused magnesia with purity of 99.472 wt %, bulk density of 3.569 g/cm~3 and apparent porosity of 0.595 % could be obtained with addition of TiO2 less than 0.25 wt %. It can promote impurities diffusion, MgO crystallization and structural densification. However, excess TiO2(>0.35 wt %) over the solid solubility limit reacted with MgO to form magnesium titanate (Mg2TiO4), meanwhile the magnesia crystal was irregular and microstructure changed.
机译:用电弧炉熔化方法使用高纯度盐水氧化镁作为原料制备融合氧化镁。 已经研究了含有0.15,0.25和0.35wt%TiO 2的熔融氧化镁的熔融和结晶机理。 通过Archimedes方法,ICP-AES,XRD,SEM,SEM的体积密度,杂质含量,晶体类型和微观结构。 结果表明,纯度为99.472wt%,堆积密度为3.569g / cm〜3,表观孔隙率为0.595%,加入小于0.25重量%。 它可以促进杂质扩散,MgO结晶和结构致密化。 然而,过量的TiO 2(> 0.35wt%)通过与MgO反应以形成钛酸镁(Mg2TiO 4)的固体溶解度限制,同时氧化镁晶体是不规则的,并且微观结构变化。

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