The present work develops three-dimensional phenomenological constitutive models for dense and porous shape memory alloys (SMAs). The models are extensions of a recent work and considers pressure dependent behavior for porous SMAs as well as the coupling effects of transformation and plasticity for both dense and porous SMAs. In contrast to dense SMAs, a considerable plastic strain accumulates in porous SMAs even during phase transformation. Therefore, an effective solution algorithm for simultaneous evolution of transformation and plastic strain is presented via replacement of the classical Kuhn Tucker inequality conditions by the so-called Fischer-Burmeister complementarity function. Numerical predictions are compared with experimental re...
The employment of shape memory alloys (SMAs) in a large number of engineering applications has been ...
Constitutive modelling of shape memory alloys with new material functions is presented within the fr...
The employment of shape memory alloys (SMAs) in a large number of engineering applications has been ...
The present work develops three-dimensional phenomenological constitutive models for dense and porou...
The present work develops three-dimensional phenomenological constitutive models for dense and porou...
Porous shape memory alloys are a class of very interesting materials exhibiting features typical of ...
The present paper develops a refined and general three-dimensional phenomenological constitutive mod...
AbstractIn this study the mesoscopic behavior of porous shape memory alloys has been simulated with ...
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...
Shape Memory Alloys (SMAs), as a subgroup of active materials, provide remarkable advantages working...
The novel nonlinear thermoelastic behavior of shape-memory alloys (SMAs) makes them increasingly des...
In this paper the mechanical response of porous Shape Memory Alloy (SMA) is modeled. The porous SMA ...
AbstractIn the present work we propose a new thermomechanically coupled material model for shape mem...
Porous shape memory alloys (SMAs) have been widely used in the aerospace, military, medical, and hea...
The employment of shape memory alloys (SMAs) in a large number of engineering applications has been ...
Constitutive modelling of shape memory alloys with new material functions is presented within the fr...
The employment of shape memory alloys (SMAs) in a large number of engineering applications has been ...
The present work develops three-dimensional phenomenological constitutive models for dense and porou...
The present work develops three-dimensional phenomenological constitutive models for dense and porou...
Porous shape memory alloys are a class of very interesting materials exhibiting features typical of ...
The present paper develops a refined and general three-dimensional phenomenological constitutive mod...
AbstractIn this study the mesoscopic behavior of porous shape memory alloys has been simulated with ...
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...
Shape Memory Alloys (SMAs), as a subgroup of active materials, provide remarkable advantages working...
The novel nonlinear thermoelastic behavior of shape-memory alloys (SMAs) makes them increasingly des...
In this paper the mechanical response of porous Shape Memory Alloy (SMA) is modeled. The porous SMA ...
AbstractIn the present work we propose a new thermomechanically coupled material model for shape mem...
Porous shape memory alloys (SMAs) have been widely used in the aerospace, military, medical, and hea...
The employment of shape memory alloys (SMAs) in a large number of engineering applications has been ...
Constitutive modelling of shape memory alloys with new material functions is presented within the fr...
The employment of shape memory alloys (SMAs) in a large number of engineering applications has been ...