Thermo-mechanical fatigue (TMF) is an important factor for consideration when designing aero engine components due to recent gas turbine development, thus understanding failure mechanisms through crack growth testing is imperative. In the current work, a TMF crack growth testing method has been developed utilising induction heating and direct current potential drop techniques for polycrystalline nickel-based superalloys, such as RR1000. Results have shown that in-phase (IP) testing produces accelerated crack growth rates compared with out-of-phase (OOP) due to increased temperature at peak stress and therefore increased time dependent crack growth. The ordering of the crack growth rates is supported by detailed fractographic analysis which ...
The main objective of the work presented in this Licentiate of Engineering thesis is to investigate ...
The current paper presents work on identification and evaluation of a range of factors influencing a...
Thermo-Mechanical Fatigue (TMF) is one of the most complex mechanical phenomena that couples creep, ...
Non-isothermal conditions during flight cycles have long led to the requirement for thermo-mechanica...
© 2020 Elsevier Ltd The current paper describes TMF crack growth behaviour in an advanced nickel-bas...
The crack driving mechanisms in a coarse grained nickel-base superalloy RR1000 when subjected to in-...
DevTMF (Development of Experimental Techniques and Predictive Tools to Characterise Thermo-Mechanica...
A bespoke TMF crack growth test set-up has been developed and validated for use throughout this stud...
The test results undergoing thermomechanical fatigue of single crystal PWA1484 crack growth showed t...
© 2020 Elsevier Ltd The current paper presents work on identification and evaluation of a range of f...
Thermomechanical fatigue (TMF) crack growth testing has been performed on the polycrystalline supera...
The ambient and high-temperature fatigue crack growth behaviors in C(T) and SENT specimens of Ni-bas...
Thermal-mechanical fatigue crack growth (TMFCG) was studied in a gamma-gamma' nickel base superalloy...
Turbine engine blades are subjected to extreme conditions characterized by significant and simultane...
Within the gas turbine engine, the high transient thermal stresses developed due to variations in po...
The main objective of the work presented in this Licentiate of Engineering thesis is to investigate ...
The current paper presents work on identification and evaluation of a range of factors influencing a...
Thermo-Mechanical Fatigue (TMF) is one of the most complex mechanical phenomena that couples creep, ...
Non-isothermal conditions during flight cycles have long led to the requirement for thermo-mechanica...
© 2020 Elsevier Ltd The current paper describes TMF crack growth behaviour in an advanced nickel-bas...
The crack driving mechanisms in a coarse grained nickel-base superalloy RR1000 when subjected to in-...
DevTMF (Development of Experimental Techniques and Predictive Tools to Characterise Thermo-Mechanica...
A bespoke TMF crack growth test set-up has been developed and validated for use throughout this stud...
The test results undergoing thermomechanical fatigue of single crystal PWA1484 crack growth showed t...
© 2020 Elsevier Ltd The current paper presents work on identification and evaluation of a range of f...
Thermomechanical fatigue (TMF) crack growth testing has been performed on the polycrystalline supera...
The ambient and high-temperature fatigue crack growth behaviors in C(T) and SENT specimens of Ni-bas...
Thermal-mechanical fatigue crack growth (TMFCG) was studied in a gamma-gamma' nickel base superalloy...
Turbine engine blades are subjected to extreme conditions characterized by significant and simultane...
Within the gas turbine engine, the high transient thermal stresses developed due to variations in po...
The main objective of the work presented in this Licentiate of Engineering thesis is to investigate ...
The current paper presents work on identification and evaluation of a range of factors influencing a...
Thermo-Mechanical Fatigue (TMF) is one of the most complex mechanical phenomena that couples creep, ...