Pages that link to "Item:Q2417575"
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The following pages link to A new framework for large strain electromechanics based on convex multi-variable strain energies: variational formulation and material characterisation (Q2417575):
Displaying 43 items.
- A solid-shell formulation based on the assumed natural inhomogeneous strains for modeling the viscoelastic response of electro-active polymers (Q785469) (← links)
- An energy-momentum time integration scheme based on a convex multi-variable framework for non-linear electro-elastodynamics (Q1986227) (← links)
- A new computational framework for electro-activation in cardiac mechanics (Q1987938) (← links)
- A robust and computationally efficient finite element framework for coupled electromechanics (Q2021071) (← links)
- A convex multi-variable based computational framework for multilayered electro-active polymers (Q2021243) (← links)
- A thermodynamically consistent time integration scheme for non-linear thermo-electro-mechanics (Q2072440) (← links)
- Viscoelastic up-scaling rank-one effects in in-silico modelling of electro-active polymers (Q2072459) (← links)
- Finite electro-elasticity with physics-augmented neural networks (Q2083132) (← links)
- A computational framework for topology optimisation of flexoelectricity at finite strains considering a multi-field micromorphic approach (Q2096837) (← links)
- A mixed variational framework for the design of energy-momentum integration schemes based on convex multi-variable electro-elastodynamics (Q2173581) (← links)
- Towards an efficient computational strategy for electro-activation in cardiac mechanics (Q2173633) (← links)
- Theory and computation of electromagnetic fields and thermomechanical structure interaction for systems undergoing large deformations (Q2222283) (← links)
- A new framework for large strain electromechanics based on convex multi-variable strain energies: conservation laws, hyperbolicity and extension to electro-magneto-mechanics (Q2308619) (← links)
- A framework for polyconvex large strain phase-field methods to fracture (Q2309047) (← links)
- A computational framework for incompressible electromechanics based on convex multi-variable strain energies for geometrically exact shell theory (Q2309054) (← links)
- A velocity/stress mixed stabilized nodal finite element for elastodynamics: analysis and computations with strongly and weakly enforced boundary conditions (Q2310032) (← links)
- A curvilinear high order finite element framework for electromechanics: from linearised electro-elasticity to massively deformable dielectric elastomers (Q2310167) (← links)
- A computational framework for large strain nearly and truly incompressible electromechanics based on convex multi-variable strain energies (Q2310317) (← links)
- A new framework for large strain electromechanics based on convex multi-variable strain energies: finite element discretisation and computational implementation (Q2417576) (← links)
- Multi-field variational formulations and mixed finite element approximations for electrostatics and magnetostatics (Q2665016) (← links)
- Multi-resolution methods for the topology optimization of nonlinear electro-active polymers at large strains (Q2666095) (← links)
- On a family of numerical models for couple stress based flexoelectricity for continua and beams (Q2666551) (← links)
- A polyconvex transversely-isotropic invariant-based formulation for electro-mechanics: stability, minimisers and computational implementation (Q2679445) (← links)
- Isotropic polyconvex electromagnetoelastic bodies (Q3300733) (← links)
- A reduced mixed finite-element formulation for modeling the viscoelastic response of electro-active polymers at finite deformation (Q3304279) (← links)
- Equilibria of Charged Hyperelastic Solids (Q5037721) (← links)
- A variational approach to nonlinear electro-magneto-elasticity: Convexity conditions and existence theorems (Q5374484) (← links)
- Programming shape-morphing electroactive polymers through multi-material topology optimisation (Q6039496) (← links)
- A novel mixed and energy‐momentum consistent framework for coupled nonlinear thermo‐electro‐elastodynamics (Q6062825) (← links)
- Variational schemes and mixed finite elements for large strain isotropic elasticity in principal stretches: Closed‐form tangent eigensystems, convexity conditions, and stabilised elasticity (Q6082549) (← links)
- A kinematically stabilized linear tetrahedral finite element for compressible and nearly incompressible finite elasticity (Q6097640) (← links)
- Adversarial deep energy method for solving saddle point problems involving dielectric elastomers (Q6121800) (← links)
- Optimal control and design of magnetic field-responsive smart polymer composites (Q6135580) (← links)
- Electro-mechanical actuation modulates fracture performance of soft dielectric elastomers (Q6139945) (← links)
- Structure-preserving space-time discretization of a mixed formulation for quasi-incompressible large strain elasticity in principal stretches (Q6495610) (← links)
- Nonlinear electro-elastic finite element analysis with neural network constitutive models (Q6497139) (← links)
- An accurate and efficient three-dimensional high-order finite element methodology for the simulation of magneto-mechanical coupling in MRI scanners (Q6553860) (← links)
- Elastoplasticity with linear tetrahedral elements: a variational multiscale method (Q6555304) (← links)
- A dynamic variational multiscale method for viscoelasticity using linear tetrahedral elements (Q6557522) (← links)
- Computational electro-elasticity and magneto-elasticity for quasi-incompressible media immersed in free space (Q6560621) (← links)
- Macroscopic modeling of flexoelectricity-driven remanent polarization in piezoceramics (Q6621873) (← links)
- Learning nonlinear constitutive models in finite strain electromechanics with Gaussian process predictors (Q6630898) (← links)
- Stretch-based hyperelastic constitutive metamodels via gradient enhanced Gaussian predictors (Q6643567) (← links)