YesA multi-element constitutive model for a lactide-based shape memory polymer has been developed that represents loading to large tensile deformations, stress relaxation and stress recovery at 60, 65 and 70°C. The model consists of parallel Maxwell arms each comprising neo-Hookean and Eyring elements. Guiu-Pratt analysis of the stress relaxation curves yields Eyring parameters. When these parameters are used to define the Eyring process in a single Maxwell arm, the resulting model yields at too low a stress, but gives good predictions for longer times. Stress dip tests show a very stiff response on unloading by a small strain decrement. This would create an unrealistically high stress on loading to large strain if it were modelled by an el...
This research addresses issues central to material modeling and process simulations. Here, issues re...
This work focuses on the thermomechanical characterization and constitutive model calibration of sha...
Using a two-phase (rubbery and glassy) phenomenological model and shape memory strains, a three-dime...
In this work, a constitutive mechanical model is proposed to describe the thermo-mechanical cycle of...
YesThis is a study of the modelling and prediction of strain recovery in a polylactide. Strain recov...
YesThis is a study of the modelling and prediction of strain recovery in a polylactide. Strain recov...
Shape memory polymers (SMPs) are a relatively new class of active materials that can store a tempora...
Similar to shape memory, the stress in a stimulus responsive polymer can also be programmed, stored,...
As an important class of smart materials, thermal-induced shape memory polymers can store and releas...
An acrylate polymer network was submitted to thermomechanical shape memory cycles. The set of experi...
Shape memory polymers (SMPs) are dynamic materials able to recover previously defined shapes when ac...
Phenomenological models based on frozen volume parameters could well predict shape recovery behavior...
In this work, a shape memory polyurethane is characterized through constrained recovery experiments ...
A model has been proposed recently, which describes the experimentally observed mechanical behavior ...
With the aim of developing a thermo-mechanically-coupled large-deformation constitutive theory and a...
This research addresses issues central to material modeling and process simulations. Here, issues re...
This work focuses on the thermomechanical characterization and constitutive model calibration of sha...
Using a two-phase (rubbery and glassy) phenomenological model and shape memory strains, a three-dime...
In this work, a constitutive mechanical model is proposed to describe the thermo-mechanical cycle of...
YesThis is a study of the modelling and prediction of strain recovery in a polylactide. Strain recov...
YesThis is a study of the modelling and prediction of strain recovery in a polylactide. Strain recov...
Shape memory polymers (SMPs) are a relatively new class of active materials that can store a tempora...
Similar to shape memory, the stress in a stimulus responsive polymer can also be programmed, stored,...
As an important class of smart materials, thermal-induced shape memory polymers can store and releas...
An acrylate polymer network was submitted to thermomechanical shape memory cycles. The set of experi...
Shape memory polymers (SMPs) are dynamic materials able to recover previously defined shapes when ac...
Phenomenological models based on frozen volume parameters could well predict shape recovery behavior...
In this work, a shape memory polyurethane is characterized through constrained recovery experiments ...
A model has been proposed recently, which describes the experimentally observed mechanical behavior ...
With the aim of developing a thermo-mechanically-coupled large-deformation constitutive theory and a...
This research addresses issues central to material modeling and process simulations. Here, issues re...
This work focuses on the thermomechanical characterization and constitutive model calibration of sha...
Using a two-phase (rubbery and glassy) phenomenological model and shape memory strains, a three-dime...