This work deals with inverse-motion-based form finding for electroelasticity. The inverse motion problem is formulated for the electroelastic case, and the resulting equations are implemented within a finite element framework. A four-field variational approach is adopted, taking into consideration the typically incompressible behavior of the elastomer materials commonly used in electromechanical applications. By means of numerical simulations, the inverse-motion-based form finding makes it possible to design the referential configuration so that a given set of loads and boundary conditions results in a prespecified deformed configuration. The computational finite element framework established in this work allows for such numerical simulatio...
In this paper we first provide an overview of the recently formulated nonlinear constitutive framewo...
Electro-sensitive (ES) elastomers form a class of smart materials whose mechanical properties can be...
A boundary element solution is developed for an inverse elasticity problem. In this inverse problem,...
Electroactive polymers (EAP) deform under electric fields and an advantage of EAP is that they may u...
Inverse form finding aims to determine the optimum blank design of a workpiece whereby the desired s...
The numerical modelling of non‐linear electroelasticity is presented in this work. Based on well‐est...
In this paper, the coupling between a finite deformation and an electric field is examined with part...
The inverse problem of real-time reconstruction of full-field structural displacements is addressed ...
Topology optimization at finite strain setting using the concept of inverse motion based form findin...
The identification of contact forces applied on a solid body or structure is a special case of a gen...
Dielectric elastomers (DE's) are considered in recent times for the development of so called smart a...
Electro-sensitive (ES) elastomers form a class of smart materials whose mechanical properties can be...
A challenge in the design of functional parts in metal forming processes is the determination of the...
In this work the formulation of spatial and material motion problems in nonlinear electro-elastostat...
The inverse Finite Element Method (iFEM) is a model-based technique for the structure's displacement...
In this paper we first provide an overview of the recently formulated nonlinear constitutive framewo...
Electro-sensitive (ES) elastomers form a class of smart materials whose mechanical properties can be...
A boundary element solution is developed for an inverse elasticity problem. In this inverse problem,...
Electroactive polymers (EAP) deform under electric fields and an advantage of EAP is that they may u...
Inverse form finding aims to determine the optimum blank design of a workpiece whereby the desired s...
The numerical modelling of non‐linear electroelasticity is presented in this work. Based on well‐est...
In this paper, the coupling between a finite deformation and an electric field is examined with part...
The inverse problem of real-time reconstruction of full-field structural displacements is addressed ...
Topology optimization at finite strain setting using the concept of inverse motion based form findin...
The identification of contact forces applied on a solid body or structure is a special case of a gen...
Dielectric elastomers (DE's) are considered in recent times for the development of so called smart a...
Electro-sensitive (ES) elastomers form a class of smart materials whose mechanical properties can be...
A challenge in the design of functional parts in metal forming processes is the determination of the...
In this work the formulation of spatial and material motion problems in nonlinear electro-elastostat...
The inverse Finite Element Method (iFEM) is a model-based technique for the structure's displacement...
In this paper we first provide an overview of the recently formulated nonlinear constitutive framewo...
Electro-sensitive (ES) elastomers form a class of smart materials whose mechanical properties can be...
A boundary element solution is developed for an inverse elasticity problem. In this inverse problem,...