AbstractIn this paper a mechanism-based model is presented, which is able to describe the evolution of microcracks under pure low cycle fatigue (LCF) and combined LCF and high cycle fatigue (HCF) loading conditions. In order to verify the model and to calibrate the model parameters, the crack length evolution of microcracks is followed at room temperature for pure LCF and combined LCF/HCF loading in a 10%-chromium steel. These studies reveal accelerated crack growth rates under LCF/HCF interaction as soon as a critical crack length is reached. The model is capable of accounting for this effect and needs only few parameters, including the threshold for fatigue crack growth, whose knowledge is crucial for the accuracy of the model
The kinetics of microcrack growth during cycling has been studied in a S32205 duplex stainless steel...
International audienceThis paper deals with the low-cycle fatigue (LCF) design of welded structures,...
In this paper, the multiaxial formulation of a mechanism-based model for fatigue life prediction is ...
In this paper a mechanism-based model is presented, which is able to describe the evolution of micro...
AbstractIn this paper a mechanism-based model is presented, which is able to describe the evolution ...
The life assessment for a component subjected to high strain concentration in critical regions can b...
The life assessment for a component subjected to high strain concentration in critical regions can b...
International audienceThis paper gives some experimental results of low cycle crack growth from arti...
AbstractThe life assessment for a component subjected to high strain concentration in critical regio...
Crack propagation in full plastic zones is one of the main factors for life assessment of a componen...
In this paper the fatigue life of three cast iron materials, namely EN-GJS-700, EN-GJV-450 and EN-GJ...
High cycle fatigue (HCF) is a frequently limiting failure mechanism of machine elements and modern h...
In this paper the cyclic stress-strain response, low cycle fatigue (LCF) behaviour, and evolution of...
Prediction of cyclic life under low cycle fatigue - high cycle fatigue (LCF-HCF) interaction is of p...
AbstractBy introducing a fatigue blunting factor, the cyclic elasto-plastic Hutchinson-Rice-Rosengre...
The kinetics of microcrack growth during cycling has been studied in a S32205 duplex stainless steel...
International audienceThis paper deals with the low-cycle fatigue (LCF) design of welded structures,...
In this paper, the multiaxial formulation of a mechanism-based model for fatigue life prediction is ...
In this paper a mechanism-based model is presented, which is able to describe the evolution of micro...
AbstractIn this paper a mechanism-based model is presented, which is able to describe the evolution ...
The life assessment for a component subjected to high strain concentration in critical regions can b...
The life assessment for a component subjected to high strain concentration in critical regions can b...
International audienceThis paper gives some experimental results of low cycle crack growth from arti...
AbstractThe life assessment for a component subjected to high strain concentration in critical regio...
Crack propagation in full plastic zones is one of the main factors for life assessment of a componen...
In this paper the fatigue life of three cast iron materials, namely EN-GJS-700, EN-GJV-450 and EN-GJ...
High cycle fatigue (HCF) is a frequently limiting failure mechanism of machine elements and modern h...
In this paper the cyclic stress-strain response, low cycle fatigue (LCF) behaviour, and evolution of...
Prediction of cyclic life under low cycle fatigue - high cycle fatigue (LCF-HCF) interaction is of p...
AbstractBy introducing a fatigue blunting factor, the cyclic elasto-plastic Hutchinson-Rice-Rosengre...
The kinetics of microcrack growth during cycling has been studied in a S32205 duplex stainless steel...
International audienceThis paper deals with the low-cycle fatigue (LCF) design of welded structures,...
In this paper, the multiaxial formulation of a mechanism-based model for fatigue life prediction is ...