Liquid crystal elastomers combine the elastic properties of rubber with the orientational properties of liquid crystals. Amongst the various types of liquid crystal elastomers, nematic elastomers are one special class. Nematic elastomers undergo a phase transition from a high-temperature isotropic state to a low-temperature nematic state, which is generally accompanied by large deformations. In the present contribution, a phase-field model for the continuum-mechanical description of nematic elastomers will be introduced. The model is implemented into the finite element method and employed for the simulation of domain evolution under specified initial boundary conditions
We introduce a simple mean-field lattice model to describe the behavior of nematic elastomers. This ...
Abstract. – Single-crystal nematic elastomers undergo a transition from a strongly ordered phase N t...
We introduce a simple mean-field lattice model to describe the behavior of nematic elastomers. This ...
Liquid crystal (in particular, nematic) elastomers consist of cross-linked flexible polymer chains w...
Liquid crystal (in particular, nematic) elastomers consist of cross-linked flexible polymer chains w...
We consider a continuum model describing the dynamic behavior of nematic liquid crystal elastomers (...
Liquid crystal elastomers are cross-linked polymer networks covalently bonded with liquid crystal me...
Liquid crystal elastomers are cross-linked polymer networks covalently bonded with liquid crystal me...
Abstract: Two kinds of phase transitions arising in nematic elastomers are discussed. It is also exp...
When liquid-crystalline elastomers pass through the isotropic-nematic transition, the orientational ...
This dataset includes the input files for Molecular Dynamics (MD) simulations of liquid crystalline ...
Continuum models describing ideal nematic solids are widely used in theoretical studies of liquid cr...
Liquid crystalline elastomers are remarkable materials that combine the orientational order of liqui...
We propose a phase-field model to study interfacial flows of nematic liquid crystals that couple the...
In liquid-crystalline elastomers, the nematic order parameter and the induced strain vary smoothly a...
We introduce a simple mean-field lattice model to describe the behavior of nematic elastomers. This ...
Abstract. – Single-crystal nematic elastomers undergo a transition from a strongly ordered phase N t...
We introduce a simple mean-field lattice model to describe the behavior of nematic elastomers. This ...
Liquid crystal (in particular, nematic) elastomers consist of cross-linked flexible polymer chains w...
Liquid crystal (in particular, nematic) elastomers consist of cross-linked flexible polymer chains w...
We consider a continuum model describing the dynamic behavior of nematic liquid crystal elastomers (...
Liquid crystal elastomers are cross-linked polymer networks covalently bonded with liquid crystal me...
Liquid crystal elastomers are cross-linked polymer networks covalently bonded with liquid crystal me...
Abstract: Two kinds of phase transitions arising in nematic elastomers are discussed. It is also exp...
When liquid-crystalline elastomers pass through the isotropic-nematic transition, the orientational ...
This dataset includes the input files for Molecular Dynamics (MD) simulations of liquid crystalline ...
Continuum models describing ideal nematic solids are widely used in theoretical studies of liquid cr...
Liquid crystalline elastomers are remarkable materials that combine the orientational order of liqui...
We propose a phase-field model to study interfacial flows of nematic liquid crystals that couple the...
In liquid-crystalline elastomers, the nematic order parameter and the induced strain vary smoothly a...
We introduce a simple mean-field lattice model to describe the behavior of nematic elastomers. This ...
Abstract. – Single-crystal nematic elastomers undergo a transition from a strongly ordered phase N t...
We introduce a simple mean-field lattice model to describe the behavior of nematic elastomers. This ...