Preparation of an Aluminum Titania /Mullite Composite from the Raw Materials Alumina, Titania and Silica Fume

A. Mohammed, E. Kurovics, J. F. Ibrahim, M. Tihtih, Andrea Simon, R. Géber
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引用次数: 1

Abstract

The present work deals with the preparation of ceramic composites and the study of phase transformation. Three mixtures were prepared, the main mixture containing (80 wt%) alumina and (20 wt%) titania and the other two mixtures to which two amounts of silica fume were added at (5 and 10 wt%). The phase transformation was studied at two temperatures: 1200℃ and 1400℃. The X-ray diffraction results at 1200℃ show that the amorphous silica (silica fume) transformed into the crystalline phase cristobalite. At 1400℃, aluminum titanate formed by the reaction of alumina with titania, and mullite formed by the reaction of alumina with silica. The result of scanning electron microscopy shows that the addition of (5 wt%) silica leads to a microstructure with smaller grain size up to (500 nm), a lower porosity (20 vol%), a lower water absorption (7 wt%) and a thermal conductivity (1.514W/m.k).
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以氧化铝、二氧化钛和硅灰为原料制备铝-二氧化钛/莫来石复合材料
本文主要研究了陶瓷复合材料的制备及相变研究。制备了三种混合物,主要混合物含有(80重量%)氧化铝和(20重量%)二氧化钛,另外两种混合物中添加了(5和10重量%)两种量的硅灰。研究了在1200℃和1400℃两个温度下的相变。1200℃的X射线衍射结果表明,无定形二氧化硅(硅灰)转变为结晶相方石英。1400℃时,氧化铝与二氧化钛反应生成钛酸铝,氧化铝与二氧化硅反应生成莫来石。扫描电子显微镜的结果显示,添加(5wt%)二氧化硅导致具有小到(500nm)的晶粒尺寸、低孔隙率(20vol%)、低吸水率(7wt%)和热导率(1.514W/m.k)的微观结构。
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CiteScore
1.90
自引率
25.00%
发文量
32
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