Study on Synthesis and Sintering Characterization of Ti-Si System Ceramics by Self-Propagating High Temperature Synthesis

SHS법에 의한 Ti-Si계 세라믹스의 합성 및 소결체의 특성에 관한 연구

  • 김도경 (명지대학교 무기재료공학과) ;
  • 박성 (명지대학교 무기재료공학과) ;
  • 조덕호 (요업기술원) ;
  • 조건 (한국과학기술원 무기재료공학과) ;
  • 이형복 (명지대학교 무기재료공학과)
  • Published : 1994.03.01

Abstract

Intermetallic Ti-Si system ceramics were synthesized from stochiometric mixtures of titanium and silicone powders in vacuum by Self-propagating High-temperature Synthesis(SHS). In each cases of Ti5Si3, Ti5Si4 and TiSi, and TiSi2 synthesis, 20wt% product dilution, direct ignition and SHS chemical furnace method were employed. The combustion modes, which were observed during the synthesis process by using the high speed camera, of Ti5Si3, Ti5Si4, TiSi, and TiSi2 exhibit spin, osciallatory, steady-state, and spin combustion, respectively. With increasing Ti/Si molar ratio an decrease of combustion velocities was found. From the results on the measurement of the flexural strength, the specimen hot pressed at 135$0^{\circ}C$ for 30 min using synthesized Ti5Si4 powders showed the highest flexural strength at 215 MPa.

Keywords

References

  1. Int. Conf. Compos. Mate. ICCM-V. Conf. Proc.(5th) v.5 Possibilities and Limits of Metal-Reinforced Refractory Silicides,Especially Molybdenum Disilicide E. Fitzer;W. Remmele
  2. J. Met. v.52 Silicide-Matrix Materials for High-Temperature Applications P.J. Meschter;D.S. Schwartz
  3. Materials Sciences and Engineering v.A152 Microstructures and Properties of High Melting Point Intermetallic Ti5Si₃and TiSi₂Compounds R. Rosenkranz;G. Frommeyer;W. Smarsly
  4. Chemical Engineering Science v.47 no.9-11 Combustion Synthesis of Advanced Materials A. Varma;J.P. Lebrat
  5. Ceram. Eng. Sci. Proc. v.3 no.9-10 Self-Propagating High Temperature Synthesis-A Soviet Method for Producing Ceramic Materials J.F. Crider
  6. J. Am. Ceram. Soc. v.68 Feasibility of a Composite of SiC Whiskers in an MoSi₂Matrix F.D. Gac;J.J. Petrovic
  7. Ceram. Eng. Sci. Proc. v.11 SiC Reinforced-MoSi₂/WSI₂Alloy Matrix Composites J.J. Petrovic;R.E. Honnell
  8. Fizika Goreniya I Vzryva v.15 no.1 Some Principles of Combustion of Titanium-Silicon Mixtures T.S. Azatyan;A.G. Mrezhanov
  9. J. Am. Ceram. Soc. v.73 no.5 Effect of Particle Dispersion on the Mechanism of Combustion Synthesis of Titanium Silicide J. Trambukis;Z.A. Munir
  10. Poroshkovaya Matallurgiya v.4 no.196 Preparation of Tantalum Carbides by Self-Propagating High-Temperature Synthesis(SHS) V.M.Shkiro(et al.)
  11. Smithells Metals Reference Book(7th ed.) E.A.Brande;G.B.Brook
  12. Fizika Goreniya i Vzryva v.14 no.1 Structure of Fluctuations Occurring in the Burning of Tantalum-Carbon Mixtures V.M. Shkiro(et al)
  13. Combustion Science and Technology(British) v.10 A New Class of Combustion Process A.G. Merzhanov;I.P. Borovinskaya
  14. Doklady Akademii Nauk USSR v.208 no.4 New Phenomena in Combustion of Condensed System A.G. Mrezhanov(et al)
  15. SPC Report 814 Thermochemical Consideration in Self-Sustanining Synthesis of Refractory Compound W.L. Frankhouser;S.T. Sullivan
  16. Combustion Processes in Chemical Technology and Metallurgy Thermodynamic Analysis of Self-Propagating High-Temperature Synthesis Reactions N.P. Novikov;I.P. Borovinskaya;A.G. Merzhanov;A.G. Merzhanov(ed.)
  17. Am.Ceram.Soc.Bull v.67 no.2 Synthesis of High Temperature Materials by Self-Propagating Combustion Methods Z.A.Munir
  18. Self-Propagating High-Temperature Synthesis:Twenty Years of Search and Findings A.G. Merzhanov
  19. New Ceramics v.3 no.6 燃燒合成の 反應構造を 解析する 山田 修