Metal and ceramic matrix composites : an Oxford-Kobe materials text

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Bibliographic Details
Corporate Author Institute of Physics (Great Britain)
Other Authors Cantor, B., Dunne, Fionn, Stone, Ian
Format Electronic eBook
LanguageEnglish
Published Bristol ; Philadelphia : IOP Pub., ©2004.
SeriesSeries in materials science and engineering.
Subjects
Online AccessFull text
ISBN9781420033977
1420033972
9781628709339
1628709332
9780750308724
0750308729
Physical Description1 online resource (xii, 429 pages) : illustrations.

Cover

Table of Contents:
  • Computer generated contents: Chapt. 1. Metal matrix composites for aeroengines
  • chapt. 2. Metal matrix composites in motorbikes
  • chapt. 3. High-modulus steel composites for automobiles
  • chapt. 4. Metal matrix composites for aerospace structures
  • chapt. 5. Ceramic matrix composites for industrial gas turbines
  • chapt. 6. Composite superconductors
  • chapt. 7. Fabrication and recycling of aluminium metal matrix composites
  • chapt. 8. Aluminium metal matrix composites by reactive and semi-solid squeeze casting
  • chapt. 9. Deformation processing of particle reinforced metal matrix composites
  • chapt. 10. Processing of titanium-silicon carbide fibre composites
  • chapt. 11. Manufacture of ceramic fibre metal matrix composites
  • chapt. 12. Deformation and damage in metal-matrix composites
  • chapt. 13. Fatigue of discontinuous metal matrix composites
  • chapt. 14. Mechanical behaviour of intermetallics and intermetallic matrix composites
  • chapt. 15. Fracture of titanium aluminide-silicon carbide fibre composites
  • chapt. 16. Structure-property relationships in ceramic matrix composites
  • chapt. 17. Microstructure and performance limits of ceramic matrix composites
  • chapt. 18. Silicon carbide based and oxide fibre reinforcements
  • chapt. 19. High-strength high-conductivity copper composites
  • chapt. 20. Porous particle composites
  • chapt. 21. Active composites
  • chapt. 22. Ceramic based nanocomposites
  • chapt. 23. Oxide eutectic ceramic composites.