AbstractLow cycle fatigue (LCF) and fatigue-creep tests were conducted under different dwell conditions at 650 °C on a P/M nickel base superalloy, which was used widely as aero-engine turbine disc. The specimens, taken from a hot isostatic pressing (HIP) disc (Φ180X50mm), were tested under total fully reversed axial strain control. Compared with continuous cycling tests without dwell, the ones with tensile, compressive or tensile-compressive strain dwells showed some shorter fatigue lives. The difference of fatigue lives under different strain dwells reflects the fatigue-creep interactions at elevated temperature. The cyclic deformation and life distribution features were analysed and a lifing model was proposed to evaluate the fatigue life...
AbstractA more accurate life prediction for gas turbine blade takes into account the material behavi...
The file attached to this record is the author's final peer reviewed version. The Publisher's final ...
Many studies of thermal-mechanical fatigue behaviour address steels, nickel-base superalloys or fibe...
AbstractLow cycle fatigue (LCF) and fatigue-creep tests were conducted under different dwell conditi...
Low cycle fatigue (LCF) of a low-carbon (LC) directionally-solidified (DS) nickel-base superalloy, C...
The fatigue crack growth and low cycle fatigue behavior of two P/M superalloys, Rene 95 and Astroloy...
Several nickel-base aircraft turbine disk superalloys were evaluated at 650 C for resistance to fati...
Low cycle fatigue (LCF) of a low-carbon (LC) directionally-solidified (DS) nickel-base superalloy, C...
In gas turbine engines for aerospace propulsion, the assessment of the fatigue damage mechanisms due...
Superalloys are the most diffused material for aeronautical and aerospace applications, mainly for t...
The low cycle fatigue performance of the nickel based superalloy RR1000 was investigated under a var...
A large number of damage parameters have been proposed to estimate cyclic fatigue life predominantly...
Many studies of thermal-mechanical fatigue behaviour address steels, nickel-base superalloys or fibe...
AbstractThe low cycle fatigue performance of the nickel based superalloy RR1000 was investigated und...
Low cycle fatigue (LCF) tests of the newly developed nickel-based superalloy M951G have been conduct...
AbstractA more accurate life prediction for gas turbine blade takes into account the material behavi...
The file attached to this record is the author's final peer reviewed version. The Publisher's final ...
Many studies of thermal-mechanical fatigue behaviour address steels, nickel-base superalloys or fibe...
AbstractLow cycle fatigue (LCF) and fatigue-creep tests were conducted under different dwell conditi...
Low cycle fatigue (LCF) of a low-carbon (LC) directionally-solidified (DS) nickel-base superalloy, C...
The fatigue crack growth and low cycle fatigue behavior of two P/M superalloys, Rene 95 and Astroloy...
Several nickel-base aircraft turbine disk superalloys were evaluated at 650 C for resistance to fati...
Low cycle fatigue (LCF) of a low-carbon (LC) directionally-solidified (DS) nickel-base superalloy, C...
In gas turbine engines for aerospace propulsion, the assessment of the fatigue damage mechanisms due...
Superalloys are the most diffused material for aeronautical and aerospace applications, mainly for t...
The low cycle fatigue performance of the nickel based superalloy RR1000 was investigated under a var...
A large number of damage parameters have been proposed to estimate cyclic fatigue life predominantly...
Many studies of thermal-mechanical fatigue behaviour address steels, nickel-base superalloys or fibe...
AbstractThe low cycle fatigue performance of the nickel based superalloy RR1000 was investigated und...
Low cycle fatigue (LCF) tests of the newly developed nickel-based superalloy M951G have been conduct...
AbstractA more accurate life prediction for gas turbine blade takes into account the material behavi...
The file attached to this record is the author's final peer reviewed version. The Publisher's final ...
Many studies of thermal-mechanical fatigue behaviour address steels, nickel-base superalloys or fibe...