Pages that link to "Item:Q3440094"
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The following pages link to Monolithic modelling of electro-mechanical coupling in micro-structures (Q3440094):
Displaying 18 items.
- Topological design of electromechanical actuators with robustness toward over- and under-etching (Q465795) (← links)
- Electrostatic coupling of MEMS structures: Transient simulations and dynamic pull-in (Q999955) (← links)
- Modal coupling in one-dimensional electro-mechanical structured continua (Q1977054) (← links)
- Monolithic formulation of electromechanical systems within the context of hybrid finite elements (Q2360361) (← links)
- A palette of methods for computing pull-in curves for numerical models of microsystems (Q2445137) (← links)
- Multiphysics modeling and optimization of mechatronic multibody systems (Q2458281) (← links)
- Microbeam pull-in voltage topology optimization including material deposition constraint (Q2637902) (← links)
- A monolithic approach for topology optimization of electrostatically actuated devices (Q2637904) (← links)
- A domain decomposition technique applied to the solution of the coupled electro-mechanical problem (Q2952157) (← links)
- A hybrid finite element strategy for the simulation of MEMS structures (Q2952899) (← links)
- Electrostatic simulation using XFEM for conductor and dielectric interfaces (Q3018035) (← links)
- Comparison of pull‐in voltages in MEMS using 3D FEM and analytical approaches (Q3019324) (← links)
- Robust and provably second-order explicit-explicit and implicit-explicit staggered time-integrators for highly non-linear compressible fluid-structure interaction problems (Q3062575) (← links)
- Topology optimization for stationary fluid-structure interaction problems using a new monolithic formulation (Q3567289) (← links)
- Numerical modelling of electromechanical coupling using fictitious domain and level set methods (Q3649893) (← links)
- Coupled mechanical‐electrostatic FE‐BE analysis with FMM acceleration (Q4665468) (← links)
- Cyclic steady states of nonlinear electro-mechanical devices excited at resonance (Q6556868) (← links)
- A new predictor-corrector approach for the numerical integration of coupled electromechanical equations (Q6558898) (← links)