The investigation of low-cycle fatigue behaviour of lotus-type porous material is presented in this paper. Porous materials exhibit some unique features which are useful for a number of various applications. This paper evaluates a numerical approach for determining of damage initiation and evolution of lotus-type porous material with computational simulations, where the considered computational models have different pore topology patterns. The low-cycle fatigue analysis was performed by using a damage evolution law. The damage state was calculated and updated based on the inelastic hysteresis energy for stabilized cycle. Degradation of the elastic stiffness was modelled using scalar damage variable. In order to examine crack propagation pat...
The mechanical behavior of additively manufactured porous biomaterials has recently received increas...
This paper investigates, both experimentally and numerically, the mechanical response of low porosit...
The classical theory of poroelasticity focuses on the coupled response of fluid flow and elastic def...
The investigation of low-cycle fatigue behaviour of lotus-type porous material is presented in this ...
The investigation of low-cycle fatigue behaviour of lotus-type porous material is presented in this ...
A computational simulation of low-cycle fatigue behaviour of lotus-type porous material, subjected t...
The investigation of fatigue strength of lotus-type structure with nodular cast iron as a base mater...
Multiaxial loading conditions are one of the important parameters in estimating the lifetime of stru...
The objective of this paper is to analyse fatigue strength behaviour of lotus-type structure with no...
The static and low-cycle durability of three planar cellular structures, hexagonal, auxetic and auxe...
A damage mechanics based approach is applied for the study of fatigue behaviour of high pressure die...
International audienceThis work proposes an analysis of the effect of cyclic loading of elasto-plast...
The mechanical behavior of additively manufactured porous biomaterials has recently received increas...
This paper investigates, both experimentally and numerically, the mechanical response of low porosit...
The classical theory of poroelasticity focuses on the coupled response of fluid flow and elastic def...
The investigation of low-cycle fatigue behaviour of lotus-type porous material is presented in this ...
The investigation of low-cycle fatigue behaviour of lotus-type porous material is presented in this ...
A computational simulation of low-cycle fatigue behaviour of lotus-type porous material, subjected t...
The investigation of fatigue strength of lotus-type structure with nodular cast iron as a base mater...
Multiaxial loading conditions are one of the important parameters in estimating the lifetime of stru...
The objective of this paper is to analyse fatigue strength behaviour of lotus-type structure with no...
The static and low-cycle durability of three planar cellular structures, hexagonal, auxetic and auxe...
A damage mechanics based approach is applied for the study of fatigue behaviour of high pressure die...
International audienceThis work proposes an analysis of the effect of cyclic loading of elasto-plast...
The mechanical behavior of additively manufactured porous biomaterials has recently received increas...
This paper investigates, both experimentally and numerically, the mechanical response of low porosit...
The classical theory of poroelasticity focuses on the coupled response of fluid flow and elastic def...