Phenomenological models based on frozen volume parameters could well predict shape recovery behavior of shape memory polymers (SMPs), but the physical meaning of using the frozen volume parameters to describe thermomechanical properties has not been well-established. In this study, the fundamental working mechanisms of the shape memory effect (SME) in amorphous SMPs, whose temperature-dependent viscoelastic behavior follows the Eyring equation, have been established with the considerations of both internal stress and its resulted frozen volume. The stress-strain constitutive relation was initially modeled to quantitatively describe effects of internal stresses at the macromolecular scale based on the transient network theory. A phenomenolog...
By integrating the Fox–Flory equation and the rubber elasticity principle, a phenomenologically cons...
The aim of this research is to develop constitutive models for non-linear materials. Here, issues re...
By integrating phase transition theory and Takayanagi principle, we have developed a thermodynamic m...
Phenomenological models based on frozen volume parameters could well predict shape recovery behavior...
AbstractThe time-dependent behavior of glass transition can be exploited to achieve shape-memory beh...
Amorphous polymers exhibit a wide range of complex temperature-dependent and time-dependent behavior...
Shape memory effect (SME) of polymers is a property that concerns both, macroscopic and microscopic ...
Shape memory polymers (SMPs) have good properties of recovering their original shapes in the presenc...
AbstractThe viscoelastic behavior of an amorphous shape memory polymer network and its dependence on...
Multi-shape memory effect (multi-SME) in amorphous polymers has attracted great attention due to the...
In this paper, a 3D finite strain viscoelastic model with uncoupled structural and stress relaxation...
YesA multi-element constitutive model for a lactide-based shape memory polymer has been developed th...
Shape memory polymers (SMPs) are dynamic materials able to recover previously defined shapes when ac...
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...
By integrating the Fox–Flory equation and the rubber elasticity principle, a phenomenologically cons...
The aim of this research is to develop constitutive models for non-linear materials. Here, issues re...
By integrating phase transition theory and Takayanagi principle, we have developed a thermodynamic m...
Phenomenological models based on frozen volume parameters could well predict shape recovery behavior...
AbstractThe time-dependent behavior of glass transition can be exploited to achieve shape-memory beh...
Amorphous polymers exhibit a wide range of complex temperature-dependent and time-dependent behavior...
Shape memory effect (SME) of polymers is a property that concerns both, macroscopic and microscopic ...
Shape memory polymers (SMPs) have good properties of recovering their original shapes in the presenc...
AbstractThe viscoelastic behavior of an amorphous shape memory polymer network and its dependence on...
Multi-shape memory effect (multi-SME) in amorphous polymers has attracted great attention due to the...
In this paper, a 3D finite strain viscoelastic model with uncoupled structural and stress relaxation...
YesA multi-element constitutive model for a lactide-based shape memory polymer has been developed th...
Shape memory polymers (SMPs) are dynamic materials able to recover previously defined shapes when ac...
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...
By integrating the Fox–Flory equation and the rubber elasticity principle, a phenomenologically cons...
The aim of this research is to develop constitutive models for non-linear materials. Here, issues re...
By integrating phase transition theory and Takayanagi principle, we have developed a thermodynamic m...