AbstractConstitutive equations are derived for the elastic response of swollen elastomers and hydrogels under an arbitrary deformation with finite strains. An expression is developed for the free energy density of a polymer network based on the Flory concept of flexible chains with constrained junctions and solvent-dependent reference configuration. The importance of introduction of a reference configuration evolving under swelling is confirmed by the analysis of experimental data on nanocomposite hydrogels subjected to swelling and drying. Adjustable parameters in the stress–strain relations are found by fitting observations on swollen elastomers, chemical gels (linked by covalent bonds and sliding cross-links), and physical gels under uni...
Polyelectrolyte gels can generate electric potentials under mechanical deformation. While the underl...
AbstractA network of polymers can imbibe a large quantity of a solvent and swell, resulting in a gel...
Gels formed by semiflexible filaments such as most biopolymers exhibit non-linear behavior in their ...
Constitutive equations are derived for the elastic response of swollen elastomers and hydrogels unde...
AbstractConstitutive equations are derived for the elastic response of swollen elastomers and hydrog...
Constitutive equations are derived for the elastic response of hydrogels under an arbitrary deformat...
AbstractA model is developed for the elastic behavior of nanocomposite hydrogels subjected to swelli...
AbstractConstitutive equations are formulated for the mechanical behavior of rubber-like materials s...
textA hydrogel consists of a cross-linked polymer network and solvent molecules, capable of large, r...
A hydrogel is a polymeric three-dimensional network structure. The applications of this material typ...
A model is developed for the elastic response and solvent diffusion through a thermo-responsive gel ...
In this paper we study the elastic response of synthetic hydrogels to an applied shear stress. The h...
When a dry polymer network is immersed in a solvent, the solvent molecules enter the polymer network...
The Important physical properties of hydrogels depend on the precise structure of the polymer networ...
Hydrogels exhibit stress-relaxation when stretched. The decay in tensile stress can be ascribed prim...
Polyelectrolyte gels can generate electric potentials under mechanical deformation. While the underl...
AbstractA network of polymers can imbibe a large quantity of a solvent and swell, resulting in a gel...
Gels formed by semiflexible filaments such as most biopolymers exhibit non-linear behavior in their ...
Constitutive equations are derived for the elastic response of swollen elastomers and hydrogels unde...
AbstractConstitutive equations are derived for the elastic response of swollen elastomers and hydrog...
Constitutive equations are derived for the elastic response of hydrogels under an arbitrary deformat...
AbstractA model is developed for the elastic behavior of nanocomposite hydrogels subjected to swelli...
AbstractConstitutive equations are formulated for the mechanical behavior of rubber-like materials s...
textA hydrogel consists of a cross-linked polymer network and solvent molecules, capable of large, r...
A hydrogel is a polymeric three-dimensional network structure. The applications of this material typ...
A model is developed for the elastic response and solvent diffusion through a thermo-responsive gel ...
In this paper we study the elastic response of synthetic hydrogels to an applied shear stress. The h...
When a dry polymer network is immersed in a solvent, the solvent molecules enter the polymer network...
The Important physical properties of hydrogels depend on the precise structure of the polymer networ...
Hydrogels exhibit stress-relaxation when stretched. The decay in tensile stress can be ascribed prim...
Polyelectrolyte gels can generate electric potentials under mechanical deformation. While the underl...
AbstractA network of polymers can imbibe a large quantity of a solvent and swell, resulting in a gel...
Gels formed by semiflexible filaments such as most biopolymers exhibit non-linear behavior in their ...