This paper is concerned with finite element modelling of microstructure-sensitive plasticity and crack initiation in fretting. The approach adopted is based on an existing method for microstructure-sensitive (uniaxial) fatigue life prediction, which proposes the use of a unit cell crystal plasticity model to identify the critical value of accumulated plastic slip associated with crack initiation. This approach is successfully implemented here, using a FCC unit cell crystal plasticity model, to predict the plain low-cycle fatigue behaviour of a stainless steel. A crystal plasticity frictional contact model for stainless steel is developed for microstructure-sensitive fretting analyses. A methodology for microstructure-sensitive fretting crack...
Journal articleA study on crystal and J2J2 plasticity prediction of fretting fatigue is presented, u...
A micro-mechanical modelling methodology is presented for predicting fretting fatigue crack nucleati...
International audienceThe damage mechanisms in fretting tests are wear and fatigue cracking. The gra...
This paper is concerned with the development of a micro-mechanical methodology for prediction of fre...
This paper is concerned with finite element modelling of microstructure-sensitive plasticity and crac...
Journal articleThis paper is concerned with finite element modelling of microstructure-sensitive pla...
This thesis presents the development of a computational and experimental methodology for predicting...
SFI/HEA Irish Centre for High-End Computing (ICHEC)This paper is concerned with the development of a...
This paper is concerned with the development of a micro-mechanical methodology for prediction of fre...
This thesis presents the development of a micromechanical computational framework for microstructure...
A micro-mechanical modelling methodology is presented for predicting fretting fatigue crack nucleati...
A three-dimensional, strain-gradient, crystal plasticity methodology is presented for prediction of ...
A crystal plasticity computational framework is developed and validated to investigate the microstru...
A study on crystal and J2 plasticity prediction of fretting fatigue is presented, using a microstruc...
A crystal plasticity computational framework is developed and validated to investigate the microstru...
Journal articleA study on crystal and J2J2 plasticity prediction of fretting fatigue is presented, u...
A micro-mechanical modelling methodology is presented for predicting fretting fatigue crack nucleati...
International audienceThe damage mechanisms in fretting tests are wear and fatigue cracking. The gra...
This paper is concerned with the development of a micro-mechanical methodology for prediction of fre...
This paper is concerned with finite element modelling of microstructure-sensitive plasticity and crac...
Journal articleThis paper is concerned with finite element modelling of microstructure-sensitive pla...
This thesis presents the development of a computational and experimental methodology for predicting...
SFI/HEA Irish Centre for High-End Computing (ICHEC)This paper is concerned with the development of a...
This paper is concerned with the development of a micro-mechanical methodology for prediction of fre...
This thesis presents the development of a micromechanical computational framework for microstructure...
A micro-mechanical modelling methodology is presented for predicting fretting fatigue crack nucleati...
A three-dimensional, strain-gradient, crystal plasticity methodology is presented for prediction of ...
A crystal plasticity computational framework is developed and validated to investigate the microstru...
A study on crystal and J2 plasticity prediction of fretting fatigue is presented, using a microstruc...
A crystal plasticity computational framework is developed and validated to investigate the microstru...
Journal articleA study on crystal and J2J2 plasticity prediction of fretting fatigue is presented, u...
A micro-mechanical modelling methodology is presented for predicting fretting fatigue crack nucleati...
International audienceThe damage mechanisms in fretting tests are wear and fatigue cracking. The gra...