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Reduction Methods for large scale multibody systems
Wolfgang Witteveen
, Johannes Gerstmayr
Research Center Wels
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Engineering
Joints (Structural Components)
100%
Contact Problem
100%
Numerical Example
100%
Mass Matrix
100%
Computational Time
100%
Multibody System
100%
Finite Element Mesh
100%
Stiffness Matrix
100%
Frequency Analysis
100%
Constraint Condition
100%
Complex Model
100%
Strain Tensor
100%
Synthesis Method
100%
Conventional Method
100%
Moving Body
100%
Crank Mechanism
100%
Elastic Case
100%
Finite Element Analysis
100%
Keyphrases
Reduction Method
100%
Multibody Systems
100%
Floating Frame of Reference Formulation
100%
Model Complexity
33%
Joint Model
33%
Computation Time
33%
Linear Elastic
33%
Flexible Body
33%
Numerical Examples
33%
Contact Problem
33%
Constant Mass
33%
Material Nonlinearity
33%
Mass Matrix
33%
Car Body
33%
Nonlinear Finite Element Method
33%
Deformable
33%
Finite Element Mesh
33%
Component Mode Synthesis
33%
CPU Time
33%
Constraint Reduction
33%
Nonlinear Contact
33%
Stiffness Matrix
33%
Modal Reduction
33%
Efficient Formulation
33%
Force Equilibrium
33%
Factorized
33%
Slider-crank Mechanism
33%
Flexible Slider
33%
High Frequency Analysis
33%
Multibody Formulation
33%
Acoustic Behavior
33%
Computer Code
33%
Static Mode
33%
Strain Tensor
33%
Constraint Condition
33%
ADAMS
33%
Moving Body
33%
Higher-order Moments
33%
Reduced Process
33%
Constant Stiffness
33%
Complex Coupling
33%