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Microwave sintering of mullite-cordierite precursors prepared from solution combustion synthesis

机译:固溶燃烧合成制备莫来石-堇青石前驱体的微波烧结

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Mullite-cordierite composite was synthesized using the solution combustion synthesis method and glycine as a fuel and aluminum nitrate, magnesium nitrate and colloidal silica as the reagents. The effect of fuel to oxidizer ratio on the combustion behavior, as well as chemical composition and morphology of the formed powders was investigated. All synthesized powders were amorphous with submicron particle size. It was found that the change of fuel to oxidizer ratio had no effect on synthesis of this composite without heat treatment. The smallest particle size of composite powder was obtained as 302 nm for ratio less than 1 (rich of fuel). Mu Hite, cordierite and spinel were detected after microwave heating at 1200 and 1400 degrees C. Mullite and cordierite were detected as the only crystalline phases when the stoichiometric ratio of fuel to oxidizer was chosen and this composite obtained the highest density of 2.61 g/cm(3). (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:采用固溶燃烧合成法,以甘氨酸为燃料,硝酸铝,硝酸镁和胶体二氧化硅为试剂合成莫来石-堇青石复合材料。研究了燃料与氧化剂的比例对燃烧行为以及所形成粉末的化学成分和形态的影响。所有合成的粉末都是无定形的,具有亚微米的粒度。已经发现,燃料与氧化剂的比例的改变对未经热处理的该复合物的合成没有影响。对于比率小于1(富含燃料)的复合粉末,其最小粒径为302 nm。在1200和1400摄氏度的微波加热后,检测到了穆氏岩,堇青石和尖晶石。当选择燃料与氧化剂的化学计量比时,莫来石和堇青石是唯一的结晶相,该复合材料的最高密度为2.61 g / cm (3)。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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