In this paper a non-linear stress-strain relation based on an integral formulation with a power-law kernel is proposed. This constitutive law is able to reproduce both the viscoelastic behavior and the inelastic irreversible phenomenon. It is shown how the proposed stress-strain law is capable to fit experimental data obtained from tensile tests on two kind of metal alloys. Such best-fitting procedure have shown the accuracy of the proposed model and its results are compared to other ones obtained with the aid of classical non-linear constitutive law
We develop a fractional return-mapping framework for power-law visco-elasto-plasticity. In our appro...
AbstractAn original phenomenological thermo-visco-plastic model is reported that encompasses strain ...
We develop a fractional return-mapping framework for power-law visco-elasto-plasticity. In our appro...
In this paper a non-linear stress-strain relation based on an integral formulation with a power-law ...
Finding an accurate stress–strain relation, able to describe the mechanical behavior of metals durin...
Non-local time evolution of material stress/strain is often referred to as material hereditariness. ...
We present and review several models of fractional viscous stresses from the literature, which gener...
A novel three-dimensional finite strain viscohyperelastic constitutive model is proposed to capture ...
A stress resultant theory is developed to efficiently model the nonlinear material behavior of plate...
Carbon black-filled rubber and soft biological tissues are only two examples of materials which unde...
Fractional Viscoelasticity is referred to materials, whose constitutive law involves fractional deri...
This study addresses the stress–strain relaxation functions of solid polymers in the framework of th...
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)We propose two fractional-order m...
Creep and/or Relaxation tests on viscoelastic materials show a power-law trend. Based upon Boltzmann...
In this report the constitutive equation for finite viscoelastic materials will be postulated as the...
We develop a fractional return-mapping framework for power-law visco-elasto-plasticity. In our appro...
AbstractAn original phenomenological thermo-visco-plastic model is reported that encompasses strain ...
We develop a fractional return-mapping framework for power-law visco-elasto-plasticity. In our appro...
In this paper a non-linear stress-strain relation based on an integral formulation with a power-law ...
Finding an accurate stress–strain relation, able to describe the mechanical behavior of metals durin...
Non-local time evolution of material stress/strain is often referred to as material hereditariness. ...
We present and review several models of fractional viscous stresses from the literature, which gener...
A novel three-dimensional finite strain viscohyperelastic constitutive model is proposed to capture ...
A stress resultant theory is developed to efficiently model the nonlinear material behavior of plate...
Carbon black-filled rubber and soft biological tissues are only two examples of materials which unde...
Fractional Viscoelasticity is referred to materials, whose constitutive law involves fractional deri...
This study addresses the stress–strain relaxation functions of solid polymers in the framework of th...
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)We propose two fractional-order m...
Creep and/or Relaxation tests on viscoelastic materials show a power-law trend. Based upon Boltzmann...
In this report the constitutive equation for finite viscoelastic materials will be postulated as the...
We develop a fractional return-mapping framework for power-law visco-elasto-plasticity. In our appro...
AbstractAn original phenomenological thermo-visco-plastic model is reported that encompasses strain ...
We develop a fractional return-mapping framework for power-law visco-elasto-plasticity. In our appro...