[go: up one dir, main page]

Lupinc et al., 2001 - Google Patents

Processing and properties of a gamma-TiAl base alloy for turbocharger applications

Lupinc et al., 2001

Document ID
16369290249868240847
Author
Lupinc V
Marchionni M
Onofrio G
Nazmy M
Staubli M
Phillipsen B
Rohne K
Publication year
Publication venue
Metallurgia Italiana(Italy)

External Links

Continue reading at scholar.google.com (other versions)

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING ENGINES OR PUMPS
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01DNON-POSITIVE DISPLACEMENT MACHINES OR ENGINES, e.g. STEAM TURBINES
    • F01D5/00Blades; Blade-carrying members; Heating, heat-insulating, cooling or anti-vibration means on the blades or the members
    • F01D5/12Blades

Similar Documents

Publication Publication Date Title
Vardar et al. Failure analysis of gas turbine blades in a thermal power plant
Argence et al. MC-NG: a 4th generation single-crystal superalloy for future aeronautical turbine blades and vanes
Davis ASM specialty handbook: heat-resistant materials
KR101052389B1 (en) Nickel-base alloy
Bruni et al. Hot workability and models for flow stress of NIMONIC 115 Ni-base superalloy
Chandra et al. Deformation behavior of Nickel-based superalloy Su-263: experimental characterization and crystal plasticity finite element modeling
CA2537225A1 (en) High temperature powder metallurgy superalloy with enhanced fatigue & creep resistance
Scholz et al. Deformation and life assessment of high temperature materials under creep fatigue loading
Smarsly et al. Titanium aluminides for automotive and gas turbine applications
Nazmy et al. Surface defect tolerance of a cast TiAl alloy in fatigue
Peterson et al. On the development of cast ATI 718Plus® alloy for structural gas turbine engine components
Lupinc et al. Processing and properties of a gamma-TiAl base alloy for turbocharger applications
Tetyukhin et al. Heat-resistant titanium alloys with enhanced heat resistance, thermal stability
Schade et al. PRECIPITATION-HARDENING PM STAINLESS STEELS.
Ramosoeu et al. Additive manufacturing: Characterization of TI-6AI-4V alloy intended for biomedical application
Saarimäki Cracks in superalloys
Tang et al. Influence of heat treatments on microstructure and mechanical properties of oilfield used alloy 925
Khan et al. Development of a new single crystal superalloy for industrial gas turbine blades
Hasselqvist TMF crack initiation lifing of austenitic carbide precipitating alloys
JP5791998B2 (en) Nickel-iron base alloy and method for forming nickel-iron base alloy
Bassini et al. Assessment of the reinforcing system and carbides evolution in hot isostatically pressed astroloy after prolonged exposure at 820 C
Beck et al. Interaction of thermally induced and mechanical fatigue
Jamalpour et al. Effect of rejuvenation heat treatment on microstructure and hot corrosion resistance of a service-exposed nickel-based gas turbine blade
Barussaud et al. Control of the microstructure in large titanium discs- Application to the High Pressure Compressor of the GE 90 aeroengine
US20220186343A1 (en) NiCrMoNb age hardenable alloy for creep-resistant high temperature applications, and methods of making