Research Progress of Magnesium Stabilized Aluminum Titanate and New Application of It in Pigment
- 1 Department of Material Science and Engineering, Jingdezhen Ceramic Institute, Jingdezhen, China
- 2 Department of Material Science and Engineering, Jingdezhen Ceramic Institute, Jingdezhen, China
- 3 National Engineering Research Center for Domestic & Building Ceramics, Jingdezhen Ceramic Institute, Jingdezhen, China
- 4 School of Chemical Engineering and Technology, China University of Mining and Technology, Xuzhou, China
- 5 Department of Material Science and Engineering, Jingdezhen Ceramic Institute, Jingdezhen, China
- 6 Department of Material Science and Engineering, Jingdezhen Ceramic Institute, Jingdezhen, China
- 7 Department of Material Science and Engineering, Jingdezhen Ceramic Institute, Jingdezhen, China
- 8 Department of Material Science and Engineering, Jingdezhen Ceramic Institute, Jingdezhen, China
- 9 Department of Material Science and Engineering, Jingdezhen Ceramic Institute, Jingdezhen, China
- 10 Department of Material Science and Engineering, Jingdezhen Ceramic Institute, Jingdezhen, China
- 11 Department of Material Science and Engineering, Jingdezhen Ceramic Institute, Jingdezhen, China
- 12 Department of Material Science and Engineering, Jingdezhen Ceramic Institute, Jingdezhen, China
Abstract
Aluminum titanate has been widely used in low expansion applications and its thermal stability has been a hot topic. The stability of aluminium titanate research for improving product quality, and expanding its application field is of great significance. Aluminum titanate as glass melt erosion resistance and high temperature resistant, can be applied to high temperature pigment base. The medium temperature stability of aluminum titanate can be improved by ion doping, and magnesium stability of aluminum titanate has been widely studied. Therefore aluminium titanate is expected to become an ideal high temperature ceramic base material. In this paper, the preparation technology of magnesium-stabilized aluminum titanate powder was reviewed, and the preparation of magnesium-stabilized aluminum titanate powder by non-hydrolyzed sol-gel was mainly introduced.
- Thomas, H.A.J. and Stevens, R. (1989) British Ceramic Transactions, 88, 144-151.
- Innocenzi, P., Martucci, A. and Armelao, L. (2000) Chemistry of Materials, 12, 517-524. https://doi.org/10.1021/cm991134i
- Fang, Q., Zhang, L., Shen, Q., et al. (2003) Chinese Journal of Ceramics, 1, 49-53.
- Zhang, C. (2012) Preparation and Properties of Aluminum Titanate Ceramics. Ph.D., Ocean University of China, Qingdao.
- Kato, E., Daimon, K. and Takahashi, J. (1980) Journal of American Ceramics Society, 63, 355-356. https://doi.org/10.1111/j.1151-2916.1980.tb10745.x
- Thomas, H.A.J. and Stevens, R. (1989) British Ceramic Transactions and Journal, 88, 44-90.
- Korim, T. (2009) Ceramics International, 35, 1671-1675. https://doi.org/10.1016/j.ceramint.2008.07.017
- Buscaglia, V., Nanni, P., Battilana, G., et al. (1994) Journal of the European Ceramic Society, 13, 411-417. https://doi.org/10.1016/0955-2219(94)90018-3
- Jiang, W.H., Xiao, X.C., Zhou, J.E., et al. (2000) Journal of Inorganic Materials, 15, 437-440.
- Jiang, W.H., Xiao, X.C., Zhou, J.E., et al. (2000) Journal of Inorganic Materials, 15, 163-168.
- Dondi, M., Lyubenova, T.S., Carda, J.B., et al. (2010) Journal of the American Ceramic Society, 92, 1972-1980. https://doi.org/10.1111/j.1551-2916.2009.03172.x
- Fang, Q., Zhang, L.M. and Shen, Q. (1998) Journal of Wuhan University of Technology, 24, 44-48.
- Zhang, L.M. and Fang, Q. (2002) Journal of the Chinese Ceramic Society, 30, 451-455.
- Buscaglia, V., et al. (1997) Journal of Materials Science, 32, 6525-6531.
- Shadab, L. and Touradj, E. (2014) Ceramics International, 40, 12669-12674. https://doi.org/10.1016/j.ceramint.2014.04.114
- Yang, R., Shen, S.Y., Shen, Q., et al. (2005) China Silicate Bulletin, No. 3, 89-92.
- Plinio, I., Alessandro, M. and Lidia, A. (2004) Journal of the European Ceramic Society, 25, 3587-3591.
- Dai, B.Y. and Liu, Z.B. (2015) Special Casting and Nonferrous Alloys, 35, 453-456.
- Jiang, W.H., Hu, Z., Liu, J.M., et al. (2019) Ceramics International, 45, 18704-18709. https://doi.org/10.1016/j.ceramint.2019.06.096