We pursue the study of fatigue accumulation in an oscillating elastoplastic beam under the additional hypothesis that the material can partially recover by the effect of melting. The full system consists of the momentum and energy balance equations, an evolution equation for the fatigue rate, and a differential inclusion for the phase dynamics. The main result consists in proving the existence and uniqueness of a strong solution
In this work, the phase-field approach to fracture is extended to model fatigue failure in high- and...
A new dynamic model of fatigue evolution in structures is presented. The analytical model is derived...
A multiscale model is developed for fatigue life predictions of elastoplastic solids and structures....
We pursue the study of fatigue accumulation in an oscillating elastoplastic beam under the additiona...
We study a model of fatigue accumulation in an oscillating elastoplastic beam under the hypothesis t...
We consider a thermodynamic model for fatigue accumulation in an oscillating elastoplastic plate bas...
We propose a temperature dependent model for fatigue accumulation in an oscillating elastoplastic be...
We propose a temperature dependent model for fatigue accumulation in an oscillating elastoplastic pl...
We propose a temperature-dependent model for fatigue accumulation in an oscillating elasto-plastic p...
A thermodynamic model for fatigue accumulation in an oscillating elastoplastic Kirchhoff plate based ...
We consider a thermodynamic model for fatigue accumulation in an oscillating elastoplastic Kirchhoff ...
summary:The hypothesis that, on the macroscopic level, the accumulated fatigue of an elastoplastic m...
This paper presents a modeling framework to describe the driving mechanisms of cyclic failure in bri...
Progressive damage, which eventually leads to failure, is ubiquitous in biological and synthetic pol...
We present a generalised phase field-based formulation for predicting fatigue crack growth in metals...
In this work, the phase-field approach to fracture is extended to model fatigue failure in high- and...
A new dynamic model of fatigue evolution in structures is presented. The analytical model is derived...
A multiscale model is developed for fatigue life predictions of elastoplastic solids and structures....
We pursue the study of fatigue accumulation in an oscillating elastoplastic beam under the additiona...
We study a model of fatigue accumulation in an oscillating elastoplastic beam under the hypothesis t...
We consider a thermodynamic model for fatigue accumulation in an oscillating elastoplastic plate bas...
We propose a temperature dependent model for fatigue accumulation in an oscillating elastoplastic be...
We propose a temperature dependent model for fatigue accumulation in an oscillating elastoplastic pl...
We propose a temperature-dependent model for fatigue accumulation in an oscillating elasto-plastic p...
A thermodynamic model for fatigue accumulation in an oscillating elastoplastic Kirchhoff plate based ...
We consider a thermodynamic model for fatigue accumulation in an oscillating elastoplastic Kirchhoff ...
summary:The hypothesis that, on the macroscopic level, the accumulated fatigue of an elastoplastic m...
This paper presents a modeling framework to describe the driving mechanisms of cyclic failure in bri...
Progressive damage, which eventually leads to failure, is ubiquitous in biological and synthetic pol...
We present a generalised phase field-based formulation for predicting fatigue crack growth in metals...
In this work, the phase-field approach to fracture is extended to model fatigue failure in high- and...
A new dynamic model of fatigue evolution in structures is presented. The analytical model is derived...
A multiscale model is developed for fatigue life predictions of elastoplastic solids and structures....