Affiliation:
1. China University of Geosciences
Abstract
In this work, β-sialon ceramics were prepared from high-aluminium fly ash via carbothermal reduction-nitridation (CRN) and the physicochemical properties of the materials such as bulk density, apparent porosity, water absorption and flexural strength were also discussed. The results showed that the percentage of β-sialon phase in the product decreases as the temperature increases from 1400°C and the weight of the sintered specimen experienced an increase during 1350°C~1450°C due to the nitridation reactions, and followed by a gradual decrease till 1550°C for the decomposition of β-sialon. It is indicated that the optimum sintering temperature to obtain the highest yield of β-sialon ~93% lies in 1400°C~1450°C. The SEM images revealed that the prepared β-sialon sintered at 1400°C were mainly in shape of elongated prisms, typically ~5μm in length and 0.5~1μm in width. As the temperature increased to 1500°C and above, β-sialon decomposed and the new phases of SiC and AlN were formed at 1550°C as confirmed by XRD.
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference21 articles.
1. Y. Oyama, O. Kamigaito, Jpn. J. Appl. Phys. Vol 10, (1971), p.1637.
2. A. A. Kudyba-Jansen, H. T. Hintzen, R. Metselaar, Mater. Res. Bull. Vol 36, (2001), p.1215.
3. A. D. Mazzoni, E. F. Aglietti, Appl. Clay Sci. Vol 12 (1998), p.447.
4. The statistical data comes from http: /www. chinatalents. gov. cn/xmtj/detail. aspx?pageid=15.
5. J. E. Glibert, A. Mosset, Mater. Res. Bull. Vol 33 (1) (1998), p.117.
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