综述了近年来用微波方法烧结陶瓷在机理和应用上的进展,阐明了微波促进陶瓷体特别是在多元系统中烧结的原理,列举了近几年来微波烧结提高陶瓷性能的实例,指出了微波烧结陶瓷技术的发展前景.
参考文献
[1] | 李江;黄智勇;宁金威.陶瓷的微波烧结及进展[J].陶瓷工程,2001(08):35-38. |
[2] | 王念,周健.陶瓷材料的微波烧结特性及应用[J].武汉理工大学学报,2002(05):43-46. |
[3] | 冯士明.陶瓷微波烧结技术及其进展[J].材料导报,1996(zk):26-30. |
[4] | 黎布休.陶瓷材料新术语诠释(十四)[J].佛山陶瓷,2004(06):46-47. |
[5] | 牟群英,李贤军.微波加热技术的应用与研究进展[J].物理,2004(06):438-442. |
[6] | 蔡杰.陶瓷材料微波烧结研究[J].真空电子技术,1994(04):52-56. |
[7] | 吕明;陈楷;苏雪筠 .氧化物陶瓷的微波烧结机理[J].中国陶瓷,1999,35(04):26-29. |
[8] | 易健宏,唐新文,罗述东,李丽娅,彭元东.微波烧结技术的进展及展望[J].粉末冶金技术,2003(06):351-354. |
[9] | Wroe R.;Rowley AT. .EVIDENCE FOR A NON-THERMAL MICROWAVE EFFECT IN THE SINTERING OF PARTIALLY STABILIZED ZIRCONIA[J].Journal of Materials Science,1996(8):2019-2026. |
[10] | Janney MA.;Allen WR.;Kiggans JO.;Kimrey HD. .ENHANCED DIFFUSION IN SAPPHIRE DURING MICROWAVE HEATING[J].Journal of Materials Science,1997(5):1347-1355. |
[11] | Freeman S A;Booske J H;Copper R F .Microwave field enhancement of charge transport in sodium chloride[J].Physical Review Letters,1995,74(11):2042-2046. |
[12] | Rybakov KI.;Freeman SA.;Booske JH.;Cooper RF.;Semenov VE. .DYNAMICS OF MICROWAVE-INDUCED CURRENTS IN IONIC CRYSTALS[J].Physical Review.B.Condensed Matter,1997(6):3559-3567. |
[13] | 黄向东;李建保;谢志鹏 等.微波促进陶瓷烧结的微观机制[J].应用基础与工程科学学报,1997,5(02):187-192. |
[14] | Aimin Chang;Jiawen Jian .The orientational growth of grains in doped BaTiO_3 PTCR materials by microwave sintering[J].Journal of Materials Processing Technology,2003(1/3):100-101. |
[15] | Ramesh D. Peelamedu;Rustum Roy;Dinesh K. Agrawal .Microwave-induced reaction sintering of NiAl_2O_4[J].Materials Letters,2002(4):234-240. |
[16] | Ramesh D. Peelamedu;Rustum Roy;Dinesh Agrawal .Anisothermal reaction synthesis of garnets, ferrites, and spinels in microwave field[J].Materials Research Bulletin: An International Journal Reporting Research on Crystal Growth and Materials Preparation and Characterization,2001(15):2723-2739. |
[17] | Lin I N;Lee W C;Liu K S et al.On the microwave sinteing technology for improving the properties of semiconducting electronic ceremics[J].Journal of the European Ceramic Society,2001,21:2085-2088. |
[18] | Xie Z P;Gui Z L;Li L T et al.Microwave sintering of lead-based relaxor ferroelectric ceramics[J].Materials Letters,1998,36:191-194. |
[19] | Bhaskar A;Kanth BR;Murthy SR .Electrical properties of Mn added MgCuZn ferrites prepared by microwave sintering method[J].Journal of Magnetism and Magnetic Materials,2004(1):109-116. |
[20] | Thakur OP.;Prakash C.;Agrawal DK. .Dielectric behavior of Ba0.95Sr0.05TiO3 ceramics sintered by microwave[J].Materials Science & Engineering, B. Solid-State Materials for Advanced Technology,2002(3):221-225. |
[21] | O.P. Thakur;Chandra Prakash;D.K. Agrawal .Microwave synthesis and sintering of Ba_(0.95)Sr_(0.05)TiO_3[J].Materials Letters,2002(6):970-973. |
[22] | Singh S;Thakur O P;Raeal D S et al.Improved properties of Sm substituted PCT ceramics using microwave sintering[J].Materials Letters,2005,59:768-772. |
[23] | Zhipeng Xie;Changan Wang;Xudong Fan .Microwave processing and properties of Ce-Y-ZrO_2 ceramics with 2.45 GHz irradiation[J].Materials Letters,1999(3):190-196. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%