peer-reviewedIn this paper, a multi-scale crystal plasticity model is presented for cyclic plasticity and low-cycle fatigue in a tempered martensite ferritic steel at elevated temperature. The model explicitly represents the geometry of grains, sub-grains and precipitates in the material, with strain gradient effects and kinematic hardening included in the crystal plasticity formulation. With the multiscale model, the cyclic behaviour at the sub-grain level is predicted with the effect of lath and precipitate sizes examined. A crystallographic, accumulated slip (strain) parameter, modulated by triaxiality, is implemented at the micro scale, to predict crack initiation in precipitate-strengthened laths. The predicted numbers of cycles to cra...
P91 steel, a tempered martensitic steel containing 9% Cr and 1% Mo, is a widely used material in the...
For many metallic alloys, fatigue crack initiation is governed by the development of a localized pla...
In this paper, a polycrystalline model is proposed to describe the fatigue behaviour of metallic mat...
In this paper, a multi-scale crystal plasticity model is presented for cyclic plasticity and low-cyc...
Welded joints in tempered 9Cr-1Mo operating at elevated temperatures are well known to be prone to p...
peer-reviewedThis paper presents a crystal plasticity model to predict the tensile response and crac...
This paper presents a dislocation-mechanics cyclic viscoplasticity model which incorporates the key ...
Abstract High cycle fatigue (HCF) is a frequently limiting failure mechanism of machine elements an...
The present paper presents low-cycle fatigue results about cyclic behaviour, the evolution of the di...
AbstractThe present paper presents low-cycle fatigue results about cyclic behaviour, the evolution o...
In order to better understand the physical process of deformation and cyclic softening a 12% Cr mart...
peer-reviewedIn this paper, a nite-element modelling framework is presented with explicit represent...
The transition from base-load to intermittent power plant operation has led to the requirement for i...
A three-dimensional, strain-gradient, crystal plasticity methodology is presented for prediction of ...
A methodology is presented for physically-based prediction of high temperature fatigue crack initiat...
P91 steel, a tempered martensitic steel containing 9% Cr and 1% Mo, is a widely used material in the...
For many metallic alloys, fatigue crack initiation is governed by the development of a localized pla...
In this paper, a polycrystalline model is proposed to describe the fatigue behaviour of metallic mat...
In this paper, a multi-scale crystal plasticity model is presented for cyclic plasticity and low-cyc...
Welded joints in tempered 9Cr-1Mo operating at elevated temperatures are well known to be prone to p...
peer-reviewedThis paper presents a crystal plasticity model to predict the tensile response and crac...
This paper presents a dislocation-mechanics cyclic viscoplasticity model which incorporates the key ...
Abstract High cycle fatigue (HCF) is a frequently limiting failure mechanism of machine elements an...
The present paper presents low-cycle fatigue results about cyclic behaviour, the evolution of the di...
AbstractThe present paper presents low-cycle fatigue results about cyclic behaviour, the evolution o...
In order to better understand the physical process of deformation and cyclic softening a 12% Cr mart...
peer-reviewedIn this paper, a nite-element modelling framework is presented with explicit represent...
The transition from base-load to intermittent power plant operation has led to the requirement for i...
A three-dimensional, strain-gradient, crystal plasticity methodology is presented for prediction of ...
A methodology is presented for physically-based prediction of high temperature fatigue crack initiat...
P91 steel, a tempered martensitic steel containing 9% Cr and 1% Mo, is a widely used material in the...
For many metallic alloys, fatigue crack initiation is governed by the development of a localized pla...
In this paper, a polycrystalline model is proposed to describe the fatigue behaviour of metallic mat...