AbstractAn elastomeric gel is a cross-linked polymer network swollen with a solvent, and certain gels can undergo large reversible volume changes as they are cycled about a critical temperature. We have developed a continuum-level theory to describe the coupled mechanical deformation, fluid permeation, and heat transfer of such thermally-responsive gels. In discussing special constitutive equations we limit our attention to isotropic materials, and consider a model based on a Flory-Huggins model for the free energy change due to mixing of the fluid with the polymer network, coupled with a non-Gaussian statistical-mechanical model for the change in configurational entropy — a model which accounts for the limited extensibility of polymer chai...
A large quantity of small molecules may migrate into a network of long polymers, causing the network...
A model is developed for the elastic response and solvent diffusion through a thermo-responsive gel ...
University of Minnesota Ph.D. dissertation. July 2009. Major: Mathematics. Advisors: Professor Carme...
AbstractAn elastomeric gel is a cross-linked polymer network swollen with a solvent, and certain gel...
An elastomeric gel is a cross-linked polymer network swollen with a solvent (fluid). A continuum-mec...
a b s t r a c t Physical gels are characterized by dynamic cross-links that are constantly created a...
This presentation is concerned with the development of a large-deformation, continuum-level theory t...
The transient behaviors of the swelling and deswelling of gels involve concurrent mechanical deforma...
We have developed a framework of thermodynamics and hydrodynamics of chemically crosslinked gels. Ou...
AbstractA network of polymers can imbibe a large quantity of a solvent and swell, resulting in a gel...
Among soft active materials, i.e. systems that respond to a non-mechanical stimulus (electric field,...
This thesis explores the equilibrium, mechanical, thermodynamic, and non-equilibrium properties of s...
A network of polymers can imbibe a large quantity of a solvent and swell, resulting in a gel. The sw...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.Catalo...
AbstractThe swelling deformation behavior of polymer gels is often described in terms of the Flory–R...
A large quantity of small molecules may migrate into a network of long polymers, causing the network...
A model is developed for the elastic response and solvent diffusion through a thermo-responsive gel ...
University of Minnesota Ph.D. dissertation. July 2009. Major: Mathematics. Advisors: Professor Carme...
AbstractAn elastomeric gel is a cross-linked polymer network swollen with a solvent, and certain gel...
An elastomeric gel is a cross-linked polymer network swollen with a solvent (fluid). A continuum-mec...
a b s t r a c t Physical gels are characterized by dynamic cross-links that are constantly created a...
This presentation is concerned with the development of a large-deformation, continuum-level theory t...
The transient behaviors of the swelling and deswelling of gels involve concurrent mechanical deforma...
We have developed a framework of thermodynamics and hydrodynamics of chemically crosslinked gels. Ou...
AbstractA network of polymers can imbibe a large quantity of a solvent and swell, resulting in a gel...
Among soft active materials, i.e. systems that respond to a non-mechanical stimulus (electric field,...
This thesis explores the equilibrium, mechanical, thermodynamic, and non-equilibrium properties of s...
A network of polymers can imbibe a large quantity of a solvent and swell, resulting in a gel. The sw...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.Catalo...
AbstractThe swelling deformation behavior of polymer gels is often described in terms of the Flory–R...
A large quantity of small molecules may migrate into a network of long polymers, causing the network...
A model is developed for the elastic response and solvent diffusion through a thermo-responsive gel ...
University of Minnesota Ph.D. dissertation. July 2009. Major: Mathematics. Advisors: Professor Carme...