THE METHODS FOR ALN–BN-BASED COMPOSITE CERAMIC MATERIALS FORMATION (THE REVIEW)
https://doi.org/10.17073/1683-4518-2013-4-65-73
Abstract
The article is concerned with the general methods for AlN–BN-based composite ceramic materials formation, the materials combining successfully the components’ properties: the high heat conductivity and good mechanical characteristics of aluminum nitride are accomplished with the high dielectric behavior and easy workability of boron nitride. The following methods for obtaining ceramics out of powder mixtures are surveyed: the hot pressing, the reactive sintering, the spark-plasma sintering (SPS), as well as the methods allowing both the obtaining more homogeneous structure of materials, and the using organic and inorganic precursors. Ref. 35. Tab. 1.
About the Authors
R. Yu. KuftyrevRussian Federation
A. V. Belyakov
Russian Federation
I. G. Kuznetsova
Russian Federation
References
1. Самсонов, В. Получение и методы анализа нитридов / Г. В. Самсонов, О. П. Кулик, В. С. Полищук. — Киев : Наукова думка, 1978. — 320 с.
2. Техническая информация о продукте под торговой маркой Shapal компании Tokuyama Corporation с сайта производителя : буклет. URL : http://www.tokuyama.co.jp/eng/products/specialty/shapal/pdf/catalog/Shapal_e.pdf (дата обращения : 12.11.2012).
3. Техническая информация о продукте под торговой маркой BNP-2 с сайта компании «Ceramic Substrates and Components Ltd». URL : http://www.ceramic-substra-tes.co.uk/machinable_ceramics/bnp2.html (дата обращения : 12.11.2012).
4. Характеристики материалов, производимых компанией «Aremco Products» Inc. : технический бюллетень. URL: http://www.aremco.com/wp-content/uploads/2010/11/A01_12.pdf (дата обращения : 12.11.2012).
5. Приходъко, Л. И. Высокотемпературные электроизоляционные материалы на основе тугоплавких бескислородных соединений : автореф. дис. ... канд. техн. наук. — Киев : КПИ, 1968. — 23 с.
6. Самсонов, В. Неметаллические нитриды / Г. В. Самсонов. — М. : Металлургия, 1969. — 286 с.
7. Косолапова, Т. Я. Неметаллические тугоплавкие соединения / Т. Я. Косолапова, Т. В. Андреева, Т. С. Барт-ницкая [и др.]. — М. : Металлургия, 1985. — 224 с.
8. Беляков, А. В. Керамика из нитрида алюминия с добавкой нитрида бора / А. В. Беляков, И. Г. Кузнецова, Н. А. Попова [и др.] // Керамика и огнеупоры: перспективные решения и нанотехнологии : сб. докл. Между-нар. конф. с элементами науч. школы для молодежи, БГТУ им. В. Г. Шухова. Белгород, 9-12 ноября 2010 г. — Белгород, 2010. — С. 308-309.
9. Cho, W. S. Microstructure and mechanical properties of AlN-hBN based machinable ceramics prepared by pressureless sintering / W. S. Cho, Z. H. Piao, K.J. Lee [et al.] // J. Europ. Ceram. Soc. — 2007. — Vol. 27. — P. 1425-1430.
10. Koval'chenko, M. S. Effects of initial powder vibro-grinding on the properties of AlN-BN ceramic composites / M. S. Koval'chenko, T. V. Dubovik, A. A. Rogozinskaya [et al.] // Powder Metallurgy and Metal Ceramics. — 2004. — Vol. 43, № 9/10. — P. 443-446.
11. Pat. 4642298 US. Composite nitride sintered body / Nobuyuki Kuramoto, Kazuya Takada, Yoshihiko Numata ; issuе February 10, 1987.
12. Grigor'ev, O. N. Composites based on aluminum and boron nitrides formed during hot pressing / O. N. Grigor'ev, N. D. Bega, T. V. Dubovik [et al.] // Powder Metallurgy and Metal Ceramics. — 2009. — Vol. 48, № 5/6. — P. 346-352.
13. Mazdiyasni, K. S. Phase characterization and properties of AlN-BN composites / K. S. Mazdiyasni, R. Ruh, E. E. Hermes //Amer. Ceram. Soc. Bull. — 1985. — Vol. 64, № 8. — Р. 1149-1154.
14. Haiyang, Zhao. Thermal conductivity and dielectric property of hot-pressing sintered AlN-BN ceramic composites / Zhao Haiyang, Wang Weimin, Fu Zhengyi [et al.] // Ceramics International. — 2009. — Vol. 35. — P. 105-109.
15. Pat. 4666873 US. Aluminum nitride-boron nitride composite article and method of making same / Morris J. R., Tanzilli R. A.; issue May 19, 1987.
16. Zhang, Guo-Jun. Nonoxide-boron nitride composites: in situ synthesis, microstructure and properties / Guo-Jun Zhang, Jian-Feng Yang, Motohide Ando [et al.] // J. Europ. Ceram. Soc. —2002. —Vol. 22. —P. 2551-2554.
17. Khor, K. A. Thermal conductivity and dielectric constant of spark plasma sintered aluminum nitride / K. A. Khor, K. H. Cheng, L. G. Yu [et al.] // Materials Science and Engineering A347. — 2003. — P. 300-305.
18. Meijuan, Li. Effects of microstructure modification on properties of AlN / BN composites / Li Meijuan, Zhang Lianmeng, Shen Qiang [et al.] // J. Wuhan University of Technology-Mater. Sci. Ed. — 2008. — Vol. 23, № 1. — P. 121-124.
19. Zhao, H. Spark plasma sintered AlN-BN composites and it's thermal conductivity/ H. Zhao, W. Wang, H. Wang [et al.] //J. Wuhan University of Technology-Mater. Sci. Ed. — 2008. — Vol. 23, № 6. — Р. 866-869.
20. Li, Yong-Li. Fabrication and thermal conductivity of AlN / BN ceramics by spark plasma sintering / Yong-Li Li, Jian Zhang, Jiu-Xing Zhang // Ceramics International. — 2009. — Vol. 35. — P. 2219-2224.
21. Jingwen, Xu. Mechanical properties and machi-nability of AlN-hBN ceramics prepared by spark plasma sintering / Xu Jingwen, Ki-Ju Lee, Si-Young Beck [et al.] //J. Ceram. Soc. of Jap. — 2009. — Vol.117, №9. -P. 1028-1031
22. Jihong, Cheng. Boron nitride-aluminum nitride ceramic composites fabricated by transient plastic phase processing / ChengJihong, Zhaoqiang Zeng, Chongjun Wu //J. Amer. Ceram. Soc. — 2001.— Vol. 84, №4. —P. 887-889.
23. Jia, Tiekun. AlN matrix composites fabricated by the spark plasma sintering — reactive synthesis method / Tiekun Jia, Weimin Wang, Zhengyi Fu [et al.] //J. Ceramic Processing Research. — 2009.— Vol. 10, №6. —P. 794-797.
24. Danan, Dou. Reactions of aluminum hydride derivatives with ammonia-borane: a new approach toward AlN/BN materials / Dou Danan, Douglas R. Ketchum, Ewan J. M. Hamilton [et al.] // Chemistry of Materials. — 1996. — Vol. 8. — P. 2839-2842.
25. Pat 4764489 US. Preparation of mixed boron and aluminum nitrides / Bolt John D. Issue August 16, 1988.
26. Kusunose, T. Fabrication of boron nitride dispersed nanocomposites by chemical processing and their mechanical properties / T. Kusunose // J. Ceram. Soc. Jap. — 2006. — Vol. 114, №2.— P. 167-173.
27. Kusunose, T. Contact damage of machinable aluminum nitride / boron nitride nanocomposites / T. Kusunose, T. Sekino, Y. Ando // J. Ceram. Soc. Jap. — 2008. — Vol. 116, №6. — P. 762-766.
28. Hai-yun, Jin. Study of machinable AlN / BN ceramic composites / Jin Hai-yun, Wen Wang, Ji-qiang Gao [et al.] // Materials letters. — 2006. — Vol. 60. — P. 190-193.
29. Hai-yun, Jin. Corrosion behavior and creepage dis-charze character for machinable AlN/h-BN ceramics composites / Jin Hai-yun, Bo He, Nai-Kui Gao [et al.] // J. Ceramic Processing Research. — 2008. — Vol. 9, № 5. — P. 526-529.
30. Tongsan, D. Xiao. Synthesis of aluminum Nitride / Boron nitride composite materials / D. Xiao Tongsan, Kenneth E. Gonsalves, R. S. Peter [et al.] // J. Amer. Ceram. Soc. — 1993. — Vol. 76, № 4. — P. 987-992.
31. Космачёва, H. В. Самораспространяющийся высокотемпературный синтез композиций на основе нитридов кремния, алюминия и бора с применением азида натрия и галоидных солей : автореф. дис. ... канд. техн. наук. — Самара, 2004. — 18 с.
32. Twait, D. J. Thermodynamic analysis of chemical vapor deposition of BN + AlN composite coatings / D.J. Twait, W.J. Lackey, Arlynn W. Smith [et al.] //J. Amer. Ceram. Soc. — 1990. — Vol. 73, № 6. — P. 1510-1518.
33. Hanigofsky, J. A. Composition and microstructure of chemically vapor-deposited boron nitride, aluminum nitride, and boron nitride + aluminum nitride composites / J. A. Hanigofsky, Karren L. More, W.J. Lackey [et al.] //J. Amer. Ceram. Soc. — 1991.— Vol. 74, № 2. — P. 301-305.
34. Lee, W. Y. Preparation of dispersed phase ceramic boron nitride and aluminum nitride composite coatings by chemical vapor deposition / W. Y. Lee, W. J. Lackey, Garth B. Freeman [et al.] // J. Amer. Ceram. Soc. — 1991. — Vol. 74, №9.— P. 2136-2140.
35. Lee, W. Y. Simultaneous chemical vapor deposition of boron nitride and aluminum nitride / W. Y. Lee, W. J. Lackey, P. K. Agrawal [et al.] //J. Amer. Ceram. Soc. — 1991. — Vol. 74, № 10. — P. 2649-2658.
Supplementary files
For citation: Kuftyrev R.Y., Belyakov A.V., Kuznetsova I.G. THE METHODS FOR ALN–BN-BASED COMPOSITE CERAMIC MATERIALS FORMATION (THE REVIEW). NOVYE OGNEUPORY (NEW REFRACTORIES). 2013;(4):65-73. https://doi.org/10.17073/1683-4518-2013-4-65-73
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