In polycrystalline materials at elevated temperatures subjected to stationary loading, creep fracture occurs as a result of failure mechanisms on the size scale of grains, namely the nucleation and diffusive growth of cavities until coalescence leads to microcracks. In this paper, a polycrystalline aggregate is modelled by so-called Delaunay elements associated with individual grain boundary facets, whose constitutive behaviour represents dislocation creep inside the grains as well as the cavitation processes on the associated grain facet. Free grain boundary sliding and the elastic deformation of the grain material are also taken into account. Unit cells of polycrystalline aggregates containing many grains are investigated, assuming regula...
A computational model is presented to analyze intergranular creep crack growth in a polycrystalline ...
An axisymmetric cell model analysis is used to study creep failure by grain boundary cavitation at f...
This paper deals with a study of intergranular failure by creep cavitation under stress-controlled c...
In polycrystalline materials at elevated temperatures subjected to stationary loading, creep fractur...
This paper is concerned with a micromechanical investigation of intergranular creep failure caused b...
A plane strain unit cell model containing a periodic array of hexagonal grains is used to analyse cr...
Abstract-This paper is concerned with a micromechanical investigation of intergranular creep failure...
The final stages of creep rupture in a polycrystalline metal, by the linking-up of grain boundary mi...
Abstract--The final stages of creep rupture in a polycrystalline metal, by the linking-up of grain b...
A new numerical method is proposed to simulate intergranular c eep fracture in large polycrystalline...
A new computational model is presented to analyze intergranular creep crack growth in a polycrystall...
This paper deals with a study of intergranular failure by creep cavitation under stress-controlled c...
In this work, the grain-boundary cavitation in polycrystalline aggregates is investigated by means o...
Planar analyses of a unit cell containing many grains are used to study the effect of random variati...
A computational model is presented to analyze intergranular creep crack growth in a polycrystalline ...
An axisymmetric cell model analysis is used to study creep failure by grain boundary cavitation at f...
This paper deals with a study of intergranular failure by creep cavitation under stress-controlled c...
In polycrystalline materials at elevated temperatures subjected to stationary loading, creep fractur...
This paper is concerned with a micromechanical investigation of intergranular creep failure caused b...
A plane strain unit cell model containing a periodic array of hexagonal grains is used to analyse cr...
Abstract-This paper is concerned with a micromechanical investigation of intergranular creep failure...
The final stages of creep rupture in a polycrystalline metal, by the linking-up of grain boundary mi...
Abstract--The final stages of creep rupture in a polycrystalline metal, by the linking-up of grain b...
A new numerical method is proposed to simulate intergranular c eep fracture in large polycrystalline...
A new computational model is presented to analyze intergranular creep crack growth in a polycrystall...
This paper deals with a study of intergranular failure by creep cavitation under stress-controlled c...
In this work, the grain-boundary cavitation in polycrystalline aggregates is investigated by means o...
Planar analyses of a unit cell containing many grains are used to study the effect of random variati...
A computational model is presented to analyze intergranular creep crack growth in a polycrystalline ...
An axisymmetric cell model analysis is used to study creep failure by grain boundary cavitation at f...
This paper deals with a study of intergranular failure by creep cavitation under stress-controlled c...