Dynamic analysis of planar flexible mechanisms by co-rotational formulation
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Publication:1204192
DOI10.1016/0045-7825(91)90143-TzbMath0825.73689MaRDI QIDQ1204192
Publication date: 1 April 1993
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
Vibrations in dynamical problems in solid mechanics (74H45) Finite element methods applied to problems in solid mechanics (74S05) Kinematics of mechanisms and robots (70B15)
Related Items (11)
Modeling and sensitivity analysis of multibody systems using new solid, shell and beam elements ⋮ A study on the instability problem for 2D-frames ⋮ An energy-momentum method for in-plane geometrically exact Euler-Bernoulli beam dynamics ⋮ A consistent co-rotational finite element formulation for geometrically nonlinear dynamic analysis of 3-D beams ⋮ From the elastica compass to the elastica catapult: an essay on the mechanics of soft robot arm ⋮ Study on sub-cycling for flexible multi-body dynamics based on Newmark method ⋮ Hybrid Active—passive Damping Treatment of Sandwich Beams in Non-linear Dynamics ⋮ Study on sub-cycling algorithm for flexible multi-body system---integral theory and implementation flow chart ⋮ Energy conserving time integration scheme for geometrically exact beam ⋮ Simulation of Fluid–Structure Interaction Problems with Thin Elastic Plate via the Coupling of Finite Element and Lattice Boltzmann Methods ⋮ Dynamics of highly elastic mechanisms using the generalized multiple shooting method: simulations and experiments
Cites Work
- Application of deformable-body mean axis to flexible multibody system dynamics
- Dynamic analysis of planar flexible mechanisms
- Timoshenko beams and flexible multibody system dynamics
- Generalized Equations of Motion for the Dynamic Analysis of Elastic Mechanism Systems
- Dynamic Analysis of Elastic Mechanism Systems. Part I: Applications
- On the Dynamics of Flexible Beams Under Large Overall Motions—The Plane Case: Part II
- Nonlinear finite element analysis of elastic frames
- Large displacement analysis of elasto-plastic frames
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