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Oxidation of SiC powders for the preparation of SiC/mullite/alumina nanocomposites

机译:氧化SiC粉体制备SiC /莫来石/氧化铝纳米复合材料

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摘要

The oxidation behaviour of two types of SiC powder of differing particle size and morphology distribution has been studied in the present work; one submicron-sized and the other micron-sized. It has been observed that the onset-temperature for significant oxidation of the SiC powder of smaller particle size is much lower than that for the SiC powder of larger particle size; namely, about 760 °C as compared with about 950 °C. Furthermore, the rate and extent of oxidation of the former SiC powder is much higher than that of the latter SiC powder. Interestingly, however, the SiC powder of smaller particle size exhibits more controllable oxidation behaviour in the context of the preparation of SiC/mullite/alumina nanocomposites, i.e., in terms of the extent of oxidation, and hence the amount of silica formed as an encapsulating outer layer and the resulting core SiC particle size, than the SiC powder of larger particle size. The SiO2 layer formed was amorphous when the SiC powders were oxidized below 1,200 °C, but crystalline in the form of cristobalite when they were oxidized above 1,200 °C. Since the presence of amorphous silica can accelerate the sintering of the nanocomposite, oxidation of the chosen SiC powder should thus take place below 1,200 °C.
机译:本文研究了两种不同粒径和形态分布的SiC粉末的氧化行为。一个亚微米大小,另一个微米大小。已经观察到,粒径较小的SiC粉末的显着氧化的起始温度远低于粒径较大的SiC粉末的起始温度。即,与约950℃相比,约760℃。此外,前者SiC粉末的氧化速率和氧化程度远高于后者SiC粉末。然而,有趣的是,在制备SiC /莫来石/氧化铝纳米复合材料时,较小粒径的SiC粉末表现出更可控的氧化行为,即就氧化程度而言,因此在封装过程中形成的二氧化硅量外层的碳化硅芯层和由此产生的粒度,要比碳化硅粉末的粒度大。当SiC粉在1200℃以下氧化时,形成的SiO 2层为非晶态,而在1200℃以上氧化时,以方石英的形式结晶。由于无定形二氧化硅的存在可以促进纳米复合材料的烧结,因此所选SiC粉末的氧化应在1200°C以下进行。

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