Shape memory polymers (SMPs) are a relatively new class of active materials that can store a temporary shape and return to the original configuration upon application of a stimulus such as temperature. This shape changing ability has led to increased interest in their use for biomedical and aerospace applications. A major challenge, however, in the advancement of these applications is the ability to accurately predict the material behavior for complex geometries and boundary conditions. This work addresses this challenge by developing an experimentally calibrated and validated constitutive model that is implemented as a user material subroutine in Abaqus ? a commercially available finite element software package. The model is formulate...
Shape-memory polymers (SMPs) represent a class of smart materials able to store a temporary shape an...
AbstractShape memory polymers (SMPs) have gained strong research interests recently due to their mec...
Amorphous polymers exhibit a wide range of complex temperature-dependent and time-dependent behavior...
Shape memory polymers (SMPs) are a relatively new class of active materials that can store a tempora...
This work focuses on the thermomechanical characterization and constitutive model calibration of sha...
With the aim of developing a thermo-mechanically-coupled large-deformation constitutive theory and a...
The aim of this work is to demonstrate a Helmholtz potential based approach for the development of t...
The aim of this research is to develop constitutive models for non-linear materials. Here, issues re...
The aim of this research is to develop constitutive models for non-linear materials. Here, issues re...
The aim of this research is to develop constitutive models for non-linear materials. Here, issues re...
This research addresses issues central to material modeling and process simulations. Here, issues re...
The aim of this work is to develop and validate a continuum model for the simulation of the thermome...
This research addresses issues central to material modeling and process simulations. Here, issues re...
Shape-memory polymers (SMPs) represent a class of smart materials able to store a temporary shape an...
The aim of this work is to develop and validate a continuum model for the simulation of the thermome...
Shape-memory polymers (SMPs) represent a class of smart materials able to store a temporary shape an...
AbstractShape memory polymers (SMPs) have gained strong research interests recently due to their mec...
Amorphous polymers exhibit a wide range of complex temperature-dependent and time-dependent behavior...
Shape memory polymers (SMPs) are a relatively new class of active materials that can store a tempora...
This work focuses on the thermomechanical characterization and constitutive model calibration of sha...
With the aim of developing a thermo-mechanically-coupled large-deformation constitutive theory and a...
The aim of this work is to demonstrate a Helmholtz potential based approach for the development of t...
The aim of this research is to develop constitutive models for non-linear materials. Here, issues re...
The aim of this research is to develop constitutive models for non-linear materials. Here, issues re...
The aim of this research is to develop constitutive models for non-linear materials. Here, issues re...
This research addresses issues central to material modeling and process simulations. Here, issues re...
The aim of this work is to develop and validate a continuum model for the simulation of the thermome...
This research addresses issues central to material modeling and process simulations. Here, issues re...
Shape-memory polymers (SMPs) represent a class of smart materials able to store a temporary shape an...
The aim of this work is to develop and validate a continuum model for the simulation of the thermome...
Shape-memory polymers (SMPs) represent a class of smart materials able to store a temporary shape an...
AbstractShape memory polymers (SMPs) have gained strong research interests recently due to their mec...
Amorphous polymers exhibit a wide range of complex temperature-dependent and time-dependent behavior...