The present contribution is concerned with an experimental investigation of fatigue crack initiation in polycrystalline metals using a micro scale specimen testing technique. Based on the results of the experimental investigation and a fractographic investigation, a probabilistic microscale simulation procedure for prediction of the fatigue crack formation process is proposed
The experimental determination of fatigue material properties is elaborate. A solution might be give...
A new combined experimental and modelling approach has been developed in order to understand the phy...
AbstractEarly fatigue damage has been studied in a number of model and structural polycrystalline ma...
The present study is directed to the nucleation of micro cracks in polycrystalline metals due to fat...
Fatigue cracking in metals has been and is an area of great importance to the science and technology...
Fatigue is an important mechanism for the failure of components in many engineering applications and...
AbstractA methodology for modeling realistic microstructures of metallic polycrystalline material is...
Many different approaches have been proposed for modeling of fatigue crack nucleation and microstruc...
Fatigue failure is a dominant mechanism that governs the failure of components and structures in man...
International audienceA methodology for modeling realistic microstructures of metallic polycrystalli...
In the present study a numerical model to simulate the initiation growth of fatigue cracks in welded...
High strength components exposed to cyclic loading such as gas turbine disks fail in an insidious ma...
International audienceA three dimensional simulation of short fatigue crack propagation in a polycry...
International audienceMechanical components subjected to cyclic loadings suffer from fatigue phenome...
This thesis experimentally investigates the statistics (mean and variance) of the fatigue-cycle-depe...
The experimental determination of fatigue material properties is elaborate. A solution might be give...
A new combined experimental and modelling approach has been developed in order to understand the phy...
AbstractEarly fatigue damage has been studied in a number of model and structural polycrystalline ma...
The present study is directed to the nucleation of micro cracks in polycrystalline metals due to fat...
Fatigue cracking in metals has been and is an area of great importance to the science and technology...
Fatigue is an important mechanism for the failure of components in many engineering applications and...
AbstractA methodology for modeling realistic microstructures of metallic polycrystalline material is...
Many different approaches have been proposed for modeling of fatigue crack nucleation and microstruc...
Fatigue failure is a dominant mechanism that governs the failure of components and structures in man...
International audienceA methodology for modeling realistic microstructures of metallic polycrystalli...
In the present study a numerical model to simulate the initiation growth of fatigue cracks in welded...
High strength components exposed to cyclic loading such as gas turbine disks fail in an insidious ma...
International audienceA three dimensional simulation of short fatigue crack propagation in a polycry...
International audienceMechanical components subjected to cyclic loadings suffer from fatigue phenome...
This thesis experimentally investigates the statistics (mean and variance) of the fatigue-cycle-depe...
The experimental determination of fatigue material properties is elaborate. A solution might be give...
A new combined experimental and modelling approach has been developed in order to understand the phy...
AbstractEarly fatigue damage has been studied in a number of model and structural polycrystalline ma...