TiMoCN-based cermets: high-temperature deformation

S Bolognini1, G Feusier1, D Mari1, T Viatte2, W Benoit1
1Ecole Polytechnique Fédérale de Lausanne, Institut de Physique de la Matière Complexe, SB-EPFL, CH-1015 Lausanne EPFL, Switzerland
2Allegheny Technologies, 1 Teledyne Pl., Lavergne, TN 37086, USA

Tài liệu tham khảo

Mari, 2001, Cermets and hardmetals Mari, 1993, A new look at carbide tool life, Wear, 165, 9, 10.1016/0043-1648(93)90366-T Doi, 1986, Advanced TiC and TiC–TiN base cermets, 489 Heuer, 1986, Analytical electron microscopy of phase separated Ti/Mo cemented carbides and carbonitrides, 321 Lindahl, 1992, High resolution microanalysis of titanium-based cermets, J Hard Mater, 3, 259 Suzuki, 1971, Mechanisms of surrounding structure formation in sintered TiC–Mo2C–Ni, Trans. Jpn. Inst. Met., 35, 936, 10.2320/jinstmet1952.35.9_936 Yoshimura, 1983, Reaction during sintering of TiC–20TiN–15WC–10TaC–9Mo–5.5Ni–11Co Cermet, Int J Refr Hard Met, 12, 170 Pastor H, Etat Actuel et Développements des Matériaux Durs et Superdurs––Deuxième Partie. Matériaux et Techniques. 1987;7–8:319–27 Pastor, 1988, Titanium-carbonitride-based hard alloys for cutting tools, Mater Sci Eng, A105/106, 401, 10.1016/0025-5416(88)90724-0 Andrén, 1993, Phase composition in cemented carbides and cermets, Int. J. Refr. Metals Hard Mater., 12, 107, 10.1016/0263-4368(93)90059-O Mari, 1999, Experimental strategy to study the mechanical behaviour of hardmetals for cutting tools, Int J Refr Metals Hard Mater, 17, 209, 10.1016/S0263-4368(98)00078-X Cutard, 1996, Microstructure and high temperature mechanical properties of TiC0.7N0.3–Mo2C–Ni Cermets, Mech. Mater. Sci. Eng., A209, 218, 10.1016/0921-5093(95)10100-4 Mari, 1988, High temperature deformation of WC–Co hard metal, 433 Sigl, 1987, Experimental study of the mechanics of fracture in WC–Co alloys, Metall. Trans. A., 18, 1299, 10.1007/BF02647199 Sigl, 1988, On the fracture toughness of cemented carbides, Acta Metall, 36, 887, 10.1016/0001-6160(88)90143-5 Mari D, Bolognini S, Cutard T, Feusier G, Verdon C. Int J Refr Hard Metals, submitted for publication Poirier, 1985 Petch, 1953, The cleavage strength of polycrystals, J Iron Steel Inst, 174, 25 Chien, 1996, Slip systems and dislocation emission from crack tips in single crystal TiC at low temperatures, Acta Mater, 44, 2265, 10.1016/1359-6454(95)00360-6 Williams, 1964, Influence of temperature, strain rate, surface condition, and composition on the plasticity of transition-metal carbide crystals, J. Appl. Phys., 35, 1329, 10.1063/1.1713614 Nabarro FRN. Deformation of crystals by the motion of single ions (Report of a Conference on Strength of Solids). Physical Society of London. 1948;60:75–90 Herring, 1950, Diffusional viscosity of polycrystalline solid, J. Appl. Phys., 21, 437, 10.1063/1.1699681 Coble, 1963, A model for boundary diffusion controlled creep in polycrystalline materials, J. Appl. Phys., 34, 1679, 10.1063/1.1702656 Cohrt, 1981, Transient creep of ceramics in bending tests, Res Mechanica Lett, 1, 159 Raj, 1975, Intergranular fracture at elevated temperature, Acta Metall, 23, 653, 10.1016/0001-6160(75)90047-4 Ashby, 1973, Diffusion-accommodated flow and superplasticity, Acta Metall, 21, 149, 10.1016/0001-6160(73)90057-6 Schaller, 1992, Mechanical behaviour of WC-11 wt%Co studied by bending tests, Internal friction and electron microscopy, J. Hard Mater., 3, 351 1992 Bolognini, 1998, High temperature mechanical behaviour of Ti(C,N)–Mo–Co cermets, Int. J. Refr. Metals Hard Mater., 16, 257, 10.1016/S0263-4368(98)00033-X