Sintering of advanced ceramics using a 30-GHz, 10-kW, CW industrial gyrotron
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Manfred Thumm | H.-J. Ritzhaupt-Kleissl | Lambert Feher | Alfons Weisenburger | Guido Link | M. Thumm | A. Weisenburger | G. Link | H. Ritzhaupt‐Kleissl | R. Bohme | R. Bohme | L. Feher
[1] D. Clark,et al. Microwave Processing of Materials , 1996 .
[2] Hal D. Kimrey,et al. Diffusion-Controlled Processes in Microwave-Fired Oxide Ceramics , 1990 .
[3] H. D. Kimrey,et al. Techniques for ceramic sintering using microwave energy , 1987, 1987 Twelth International Conference on Infrared and Millimeter Waves.
[4] Y. Miyamoto,et al. Characteristics of ZrO2‐Dispersed Si3N4 without Additives Fabricated by Hot Isostatic Pressing , 1988 .
[5] I. J. Chabinsky. Applications of Microwave Energy Past, Present and Future “Brave New Worlds” , 1988 .
[6] R. Birringer,et al. Ceramics ductile at low temperature , 1987, Nature.
[7] L. Falk,et al. Microstructure of hot-pressed Si3N4-ZrO2(+Y2O3) composites , 1989 .
[8] W. Sutton. Microwave Firing of High Alumina Castables , 1988 .
[9] M. Thumm,et al. A comparison of mm-wave Sintering and Fast Conventional Sintering of Nanocrystalline Al2O3 , 1996 .
[10] M. Thumm,et al. The MiRa/THESIS3D-code package for resonator design and modeling of millimeter-wave material processing , 1996 .
[11] C. Kim,et al. Effects of Y2O3 and ZrO2 on the Densification of Si3N4‐Zr(Y)O2 Composites , 1990 .