Hot sections in turbine engines are subjected to large variations in temperatures and mechanical/thermal loadings. As such, accurate predictions of fatigue crack growth must account for many physical phenomena: temperature dependent crack growth behavior, load interaction history effects, time at temperature effects, temperature history effects, and the effects of stress/temperature/time on the materials. Through extensive experimental work on superalloys, a very definite “temperature history effect” on the resulting crack growth behavior has been identified and modeled. This work also identified a Temperature Affected Zone (TAZ) that occurs ahead of the crack tip and affects subsequent crack growth rates. The size of the TAZ is dependent o...
It is necessary to relate the processes that control crack growth in the immediate vicinity of the c...
International audienceThe lifetime to initiate an engineering crack is usually predicted from S–N cu...
This research is concerned with the effects of temperature and frequency on the fatigue crack propag...
Hot sections in turbine engines are subjected to large variations in temperatures and mechanical/the...
Turbine engine blades are subjected to extreme conditions characterized by significant and simultane...
Gas turbine engines are an important part of power generation in modern society, especially in the f...
The influence of hold time on the crack growth behaviour of a single crystal nickel base superalloy ...
Finite element (FE) analysis modelling of crack configurations was used to provide insights into the...
To date, only two models have been proposed for predicting crack growth rates in aircraft engine mat...
International audienceSingle crystal superalloys are now the best alloys to make blades and vanes in...
Load-controlled tests were conducted on Inconel 718 under thermo-mechanical fatigue (TMF) to evaluat...
Non-isothermal conditions during flight cycles have long led to the requirement for thermo-mechanica...
The paper presents results from fatigue crack growth tests for two nickel-base superalloys MAR-M247 ...
Gas turbine materials are designed to work in extreme environments in high temperature with an oxidi...
Within the gas turbine engine, the high transient thermal stresses developed due to variations in po...
It is necessary to relate the processes that control crack growth in the immediate vicinity of the c...
International audienceThe lifetime to initiate an engineering crack is usually predicted from S–N cu...
This research is concerned with the effects of temperature and frequency on the fatigue crack propag...
Hot sections in turbine engines are subjected to large variations in temperatures and mechanical/the...
Turbine engine blades are subjected to extreme conditions characterized by significant and simultane...
Gas turbine engines are an important part of power generation in modern society, especially in the f...
The influence of hold time on the crack growth behaviour of a single crystal nickel base superalloy ...
Finite element (FE) analysis modelling of crack configurations was used to provide insights into the...
To date, only two models have been proposed for predicting crack growth rates in aircraft engine mat...
International audienceSingle crystal superalloys are now the best alloys to make blades and vanes in...
Load-controlled tests were conducted on Inconel 718 under thermo-mechanical fatigue (TMF) to evaluat...
Non-isothermal conditions during flight cycles have long led to the requirement for thermo-mechanica...
The paper presents results from fatigue crack growth tests for two nickel-base superalloys MAR-M247 ...
Gas turbine materials are designed to work in extreme environments in high temperature with an oxidi...
Within the gas turbine engine, the high transient thermal stresses developed due to variations in po...
It is necessary to relate the processes that control crack growth in the immediate vicinity of the c...
International audienceThe lifetime to initiate an engineering crack is usually predicted from S–N cu...
This research is concerned with the effects of temperature and frequency on the fatigue crack propag...