The current paper presents work on identification and evaluation of a range of factors influencing accuracy and comparability of data generated by three laboratories carrying out stress-controlled thermo-mechanical fatigue crack growth tests. It addresses crack length measurements, heating methods and temperature measurement techniques. It also provides guidance for pre-cracking and use of different specimen geometries as well as Digital Image Correlation imaging for crack monitoring. The majority of the tests have been carried out on a coarse grain polycrystalline nickel-base superalloy using two phase angles, Out-of-Phase and In-Phase cycles with a triangular waveform and a temperature range of 400-750 degrees C.Funding Agencies|European ...
© 2020 Elsevier Ltd The current paper describes TMF crack growth behaviour in an advanced nickel-bas...
Turbine engine blades are subjected to extreme conditions characterized by significant and simultane...
In this paper, the influence of different phase angles, load ratios and dwell times on the thermomec...
The current paper presents work on identification and evaluation of a range of factors influencing a...
© 2020 Elsevier Ltd The current paper presents work on identification and evaluation of a range of f...
DevTMF (Development of Experimental Techniques and Predictive Tools to Characterise Thermo-Mechanica...
Non-isothermal conditions during flight cycles have long led to the requirement for thermo-mechanica...
The influence of hold time on the crack growth behaviour of a single crystal nickel base superalloy ...
Thermomechanical fatigue (TMF) crack growth testing has been performed on the polycrystalline supera...
The test results undergoing thermomechanical fatigue of single crystal PWA1484 crack growth showed t...
Thermo-mechanical fatigue (TMF) is an important factor for consideration when designing aero engine ...
This work concerns the fatigue crack growth behaviour of nickel base single crystal superalloys. The...
An experimental test facility was developed to perform thermo-mechanical fatigue crack growth experi...
In-phase TMF crack growth testing with different lengths of the hold time at the maximum temperature...
The thermal-mechanical fatigue (TMF) behavior of three nickel-based superalloys, which cover a wide ...
© 2020 Elsevier Ltd The current paper describes TMF crack growth behaviour in an advanced nickel-bas...
Turbine engine blades are subjected to extreme conditions characterized by significant and simultane...
In this paper, the influence of different phase angles, load ratios and dwell times on the thermomec...
The current paper presents work on identification and evaluation of a range of factors influencing a...
© 2020 Elsevier Ltd The current paper presents work on identification and evaluation of a range of f...
DevTMF (Development of Experimental Techniques and Predictive Tools to Characterise Thermo-Mechanica...
Non-isothermal conditions during flight cycles have long led to the requirement for thermo-mechanica...
The influence of hold time on the crack growth behaviour of a single crystal nickel base superalloy ...
Thermomechanical fatigue (TMF) crack growth testing has been performed on the polycrystalline supera...
The test results undergoing thermomechanical fatigue of single crystal PWA1484 crack growth showed t...
Thermo-mechanical fatigue (TMF) is an important factor for consideration when designing aero engine ...
This work concerns the fatigue crack growth behaviour of nickel base single crystal superalloys. The...
An experimental test facility was developed to perform thermo-mechanical fatigue crack growth experi...
In-phase TMF crack growth testing with different lengths of the hold time at the maximum temperature...
The thermal-mechanical fatigue (TMF) behavior of three nickel-based superalloys, which cover a wide ...
© 2020 Elsevier Ltd The current paper describes TMF crack growth behaviour in an advanced nickel-bas...
Turbine engine blades are subjected to extreme conditions characterized by significant and simultane...
In this paper, the influence of different phase angles, load ratios and dwell times on the thermomec...