Defects such as pores and non-metallic inclusions have a significant influence on the long-life fatigue strength of high strength steels. The largest of these defects in a critical material volume is in the range of tens of micrometres which is on the same size scale as the grain size. At this scale materials are non-homogeneous since each grain in a polycrystalline material will have a different orientation. Finite element-based mesoscale modelling has been used to model the stress and strain in individual grains in the vicinity of a spherical defect. Microcrack nucleation and propagation models based on shear stress and plastic shear strain have been applied. Especially for low stress amplitudes near the endurance limit, critical grain or...
AbstractThe grain microstructure and damage mechanisms at the grain level are the key factors that i...
International audienceIt is well-known that high-cycle fatigue cracks usually nucleate in surface we...
International audienceMechanical components subjected to cyclic loadings suffer from fatigue phenome...
Defects such as pores and non-metallic inclusions have a significant influence on the long-life fati...
Martensitic high-strength steels are prone to exhibit premature fatigue failure due to fatigue crack...
High cycle fatigue (HCF) is a frequently limiting failure mechanism of machine elements and modern h...
Abstract Multiscale microstructural and micromechanical modeling has arisen as a candidate to impro...
The aim of this study is to analyse the influence of both the microstructure and defects on the high...
Non-metallic inclusions are a major reason for fracture in high strength steels used in long life co...
This paper presents research on the development of a simulation method for the study of the mechanis...
AbstractIn fatigue life, crack initiation and crack propagation is considered separately. Behavior o...
International audienceFinite element computations of the stresses ahead of a tortuous microcrack in ...
This study aims to investigate the effects of both the microstructure and void on the high-cycle fat...
The increased demand and requirements for high-strength steels drives the need to better understand ...
High strength components exposed to cyclic loading such as gas turbine disks fail in an insidious ma...
AbstractThe grain microstructure and damage mechanisms at the grain level are the key factors that i...
International audienceIt is well-known that high-cycle fatigue cracks usually nucleate in surface we...
International audienceMechanical components subjected to cyclic loadings suffer from fatigue phenome...
Defects such as pores and non-metallic inclusions have a significant influence on the long-life fati...
Martensitic high-strength steels are prone to exhibit premature fatigue failure due to fatigue crack...
High cycle fatigue (HCF) is a frequently limiting failure mechanism of machine elements and modern h...
Abstract Multiscale microstructural and micromechanical modeling has arisen as a candidate to impro...
The aim of this study is to analyse the influence of both the microstructure and defects on the high...
Non-metallic inclusions are a major reason for fracture in high strength steels used in long life co...
This paper presents research on the development of a simulation method for the study of the mechanis...
AbstractIn fatigue life, crack initiation and crack propagation is considered separately. Behavior o...
International audienceFinite element computations of the stresses ahead of a tortuous microcrack in ...
This study aims to investigate the effects of both the microstructure and void on the high-cycle fat...
The increased demand and requirements for high-strength steels drives the need to better understand ...
High strength components exposed to cyclic loading such as gas turbine disks fail in an insidious ma...
AbstractThe grain microstructure and damage mechanisms at the grain level are the key factors that i...
International audienceIt is well-known that high-cycle fatigue cracks usually nucleate in surface we...
International audienceMechanical components subjected to cyclic loadings suffer from fatigue phenome...