Porous shape memory alloys are a class of very interesting materials exhibiting features typical of porous metals and of shape memory alloys. In contrast to dense shape memory alloys, considerable plastic strain accumulates in porous shape memory alloys even during phase transformation. Moreover, due to the microstructure of porous materials, phase transformation and plasticity phenomena are significantly pressure-dependent. In this article, we propose a three-dimensional phenomenological constitutive model for the thermomechanical behavior of porous shape memory alloys able to predict shape memory effect, pseudo-elastic behavior and plastic behavior under proportional as well as non-proportional multiaxial loadings. To this end, proper int...
The paper presents a mathematical description of shape memory alloys within the framework of continu...
AbstractIn this study the effect of micro-voids on the superelastic–plastic behavior of shape memory...
A new continuum model for the description of the general mechanical behavior of polycrystalline Shap...
The present work develops three-dimensional phenomenological constitutive models for dense and porou...
We present a two-phase constitutive model for pseudoelastoplastic behavior of porous shape memory al...
We present a two-phase constitutive model for pseudoelastoplastic behavior of porous shape memory al...
AbstractIn this study the mesoscopic behavior of porous shape memory alloys has been simulated with ...
Porous shape memory alloys (SMAs) have been widely used in the aerospace, military, medical, and hea...
The present work develops three-dimensional phenomenological constitutive models for dense and porou...
Two methods are used in this work to estimate the porous shape memory alloy (SMA) thermomechanical b...
This paper presents a three-dimensional constitutive model for shape-memory alloys that generalizes ...
A model accounting for the microstructure of porous TiNi shape memory alloy samples fabricated by se...
A model for the macroscopic mechanical behavior of porous shape memory alloys (SMAs) is presented in...
The present paper deals with computational micromechanical analyses of porous shape memory alloy (SM...
The one-way and two-way shape memory effects (SMEs) as well as the thermal hysteresis represent fund...
The paper presents a mathematical description of shape memory alloys within the framework of continu...
AbstractIn this study the effect of micro-voids on the superelastic–plastic behavior of shape memory...
A new continuum model for the description of the general mechanical behavior of polycrystalline Shap...
The present work develops three-dimensional phenomenological constitutive models for dense and porou...
We present a two-phase constitutive model for pseudoelastoplastic behavior of porous shape memory al...
We present a two-phase constitutive model for pseudoelastoplastic behavior of porous shape memory al...
AbstractIn this study the mesoscopic behavior of porous shape memory alloys has been simulated with ...
Porous shape memory alloys (SMAs) have been widely used in the aerospace, military, medical, and hea...
The present work develops three-dimensional phenomenological constitutive models for dense and porou...
Two methods are used in this work to estimate the porous shape memory alloy (SMA) thermomechanical b...
This paper presents a three-dimensional constitutive model for shape-memory alloys that generalizes ...
A model accounting for the microstructure of porous TiNi shape memory alloy samples fabricated by se...
A model for the macroscopic mechanical behavior of porous shape memory alloys (SMAs) is presented in...
The present paper deals with computational micromechanical analyses of porous shape memory alloy (SM...
The one-way and two-way shape memory effects (SMEs) as well as the thermal hysteresis represent fund...
The paper presents a mathematical description of shape memory alloys within the framework of continu...
AbstractIn this study the effect of micro-voids on the superelastic–plastic behavior of shape memory...
A new continuum model for the description of the general mechanical behavior of polycrystalline Shap...