High cycle fatigue (HCF) is a frequently limiting failure mechanism of machine elements and modern high strength steels. Present day design rules rely on semi-empirical methods, guidelines and utilization of macroscopic analysis means in origin, such as fracture mechanics. The resulting challenge is that short crack regime, critical for HCF in terms of lifetime of components and products, is somewhat poorly handled. This is an outcome of the fact that the present means and methodologies do not explicitly account for effects arising from material microstructure, an oversight micromechanics aims to rectify. Micromechanical modeling operating on fatigue at the scale of material microstructure necessitates the introduction of suitable means to ...
In this paper, a polycrystalline model is proposed to describe the fatigue behaviour of metallic mat...
International audienceThis study aims at providing a better understanding of the effects of both mic...
An idealised microstructure mesh model combined with a novel creep and creep-fatigue damage accumula...
Abstract High cycle fatigue (HCF) is a frequently limiting failure mechanism of machine elements an...
Abstract Multiscale microstructural and micromechanical modeling has arisen as a candidate to impro...
Martensitic high-strength steels are prone to exhibit premature fatigue failure due to fatigue crack...
Microstructural and micromechanical modeling is arising as a key material modeling technique providi...
Mechanical components subjected to cyclic loadings below the ultimate strength of the material often...
AbstractDimensioning of high-strength steels relies on the knowledge of Wöhler-type S/N data and the...
Micromechanics is a powerful methodology for the investigation and prediction of materials behaviour...
The aim of this study is to establish an integrated material modelling approach, micro, macro and co...
peer-reviewedIn this paper, a multi-scale crystal plasticity model is presented for cyclic plasticit...
Currently, no systematic approach exists to simulate the crack initiation and propagation process in...
A multiscale numerical method to study the high cycle fatigue (HCF) and very high cycle fatigue (VHC...
In this paper a mechanism-based model is presented, which is able to describe the evolution of micro...
In this paper, a polycrystalline model is proposed to describe the fatigue behaviour of metallic mat...
International audienceThis study aims at providing a better understanding of the effects of both mic...
An idealised microstructure mesh model combined with a novel creep and creep-fatigue damage accumula...
Abstract High cycle fatigue (HCF) is a frequently limiting failure mechanism of machine elements an...
Abstract Multiscale microstructural and micromechanical modeling has arisen as a candidate to impro...
Martensitic high-strength steels are prone to exhibit premature fatigue failure due to fatigue crack...
Microstructural and micromechanical modeling is arising as a key material modeling technique providi...
Mechanical components subjected to cyclic loadings below the ultimate strength of the material often...
AbstractDimensioning of high-strength steels relies on the knowledge of Wöhler-type S/N data and the...
Micromechanics is a powerful methodology for the investigation and prediction of materials behaviour...
The aim of this study is to establish an integrated material modelling approach, micro, macro and co...
peer-reviewedIn this paper, a multi-scale crystal plasticity model is presented for cyclic plasticit...
Currently, no systematic approach exists to simulate the crack initiation and propagation process in...
A multiscale numerical method to study the high cycle fatigue (HCF) and very high cycle fatigue (VHC...
In this paper a mechanism-based model is presented, which is able to describe the evolution of micro...
In this paper, a polycrystalline model is proposed to describe the fatigue behaviour of metallic mat...
International audienceThis study aims at providing a better understanding of the effects of both mic...
An idealised microstructure mesh model combined with a novel creep and creep-fatigue damage accumula...