Mechanical and Tribological Properties of Si-SiC-Graphite Composites

Si-SiC-Graphite 복합재료의 기계적 물성과 마찰 마모 특성

  • 김인섭 (명지대학교 공과대학 무기재료공학과) ;
  • 이병하 (명지대학교 공과대학 무기재료공학과)
  • Published : 1995.06.01

Abstract

Si-SiC-graphite composites were developed by incorporating solid lubricant graphite into Si-SiC, in the light of improving tribological properties of Si-SiC ceramics. Si-SiC-graphite composites were fabricated by infilterating silicon melt into the mixture of α-SiC, carbon black and graphite powder at 1750℃ under 3 Torr. The particle size of graphite was in the range of 150 to 500㎛, and the loading content of graphite was 0, 20, 25, 30, 35 vol% in the mixture of α-SiC and carbon black. The mechanical and tribological properties of this composites were studied. The density, hardness, flexural strength, compressive strength and Young's modulus were decreased with increasing of graphite content. An additiion of solid-lubricant graphite up to 30 vol% has improved tribological properties of Si-SiC ceramics without considerable degradation of mechanical properties.

Keywords

References

  1. J. Mat. Sci. v.13 Microstructural Characterization of 'REFEL' (Reaction-Bonded) Silicon Carbides G.R. Sawyer;T.F. Page
  2. Am. Ceram Soc. Bull. v.57 no.8 Development and Processing of Injection-Moldable Reaction Sintered SiC Compositions P.A. Willerment;R.A. Pett;J.J. Whalen
  3. Special Ceramics. v.5 The Fabrication and Properties of Self-Bonded Silicon Carbide Bodies C.W. Forrest;P. Kennedy;J.V. Shennan
  4. Yogyo-Kyokai-Shi v.93 no.10 Mechanical and Tribological Properties of Si₃N₄-BN Composite Ceramics M. Iwasa;S. Kakiuchi
  5. Special Ceramics The Preparation of Dense Self-Bonded Silicon Carbide P. Popper
  6. Wear of Materials, American Society of Mechanical Engineers Wallbridge. N.;Dowdon, D.;Roberts, E.W.;Ludema, K.C.(ed.)
  7. Journal of the Ceramic Society of Japan v.93 no.21 Iwasa. M.;Toibana. Y.;Yoshimura. S.;Kobayashi. E
  8. American Society of Mechanical Engineers Ishigaki, H.;Kawaguchi, I.;Iwasa, M.;Toibana, Y.;Ludema, K.C.(ed.)
  9. 日本 セラシクス 協會學術論文誌 v.97 no.2 Wear Behaviour of Silicon Nitride Ball M. Iwasa,;M. Kinoshita
  10. Adv. Ceram. Mater v.3 Transport of Fine-Grained β-SiC in SiC/Liquid S₁System C.B. Lim,;T. Iseki
  11. Adv. Ceram. Mater v.3 Formation and Transportation of Intergranular and Nodular Fine-Grained β-SiC in Reaction-Sintered SiC C.B. Lim,;T. Iseki
  12. Presented at the Fall Meeting of the Basic Science Division of the American Ceramic Society Effect of Microstructure on the Mechanical Properties of Reaction Sintered Silicon Carbide M. Srinivasan;M. Kasprzyk
  13. Journal of the Korean Ceramic Society v.30 no.1 Properties of Reaction-Bonded Silicon Carbide Depending on Graphite Additions In-Sub Han;Joo-Hwan Yang;Dong-soo Suhr
  14. Fracture Mechanics of Ceramics v.8 J. Derby;J.G. Seshadri;M. Srinivasan
  15. J. Am. Ceram. Soc. v.65 D.B. Marshall;B.R. Lawn;A.G. Evans
  16. Am. Ceram. Soc. Bull v.62 no.4 Tribological Properties of Sintered polycrystalline and single-crystal Silicon Carbide K. Miyoshi;D.H. Buckley
  17. Wear v.75 Anisostropic Tribological Properties of SiC K. Miyoshi;D.H. Buckley
  18. Wear v.72 no.3 The Roles of Brittle Microfrature and Plastic Flow in the Wear of MgO single Crystals T. Suigita;A. Hashikawa
  19. Am. Ceram. Soc. Bull v.51 no.12 Friction and Wear of Ceramics D.H. Buckley
  20. Ph. D. Thesis D.S. Lim
  21. J. of Mater Sci. v.23 D.S. Lim;S. Danyluk