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Multibody Systems with Flexible Elements



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Autore: Marin Marin Visualizza persona
Titolo: Multibody Systems with Flexible Elements Visualizza cluster
Pubblicazione: Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022
Descrizione fisica: 1 electronic resource (280 p.)
Soggetto topico: Technology: general issues
History of engineering & technology
Soggetto non controllato: symmetry
asymmetry
measure of skewness
decile
Monte Carlo algorithm
Gibbs-Appell
energy of accelerations
finite element
nonlinear system
elastic elements
analytical dynamics
robotics
Hilbert's inequality
Fubini theorem
Fenchel-Legendre transform
time scale
fractional derivative
skin tissues
thermal damages
Laplace transforms
Kane's equations
planar mechanism
Lagrange's equations
dynamics
finite element method (FEM)
multibody system (MBS)
wind water pump
strands wire rope
experimental transitory vibrating regime
stiffness
damping
joint time-frequency analysis
Prony method
matrix pencil method
multibody
propulsion drive
linear motion
eccentric trajectory
reusable launch vehicles
soft landing
magnetorheological fluid
numerical simulation
multibody systems with flexible elements
elastic bonds
vibrations
initial matrix
stiffness matrix
stability
laser
nuclear installation
insulation
Extreme Light Infrastructure
gamma ray
flexible coupling
bolt
non-metallic element
finite element method
elastic characteristic
Light Sport Aircraft
conceptual aircraft design
wing
flap
aileron
weight estimation
symmetric profile
sustainability
mosquito borne diseases
Aedes Aegypti
Wolbachia invasion
impulsive control
time scales
Noether theory
conserved quantity
elastic coupling
non-metallic elements
dynamic rigidity
non-collinearly shafts
Persona (resp. second.): BaleanuDumitru
VlaseSorin
MarinMarin
Sommario/riassunto: Multibody systems with flexible elements represent mechanical systems composed of many elastic (and rigid) interconnected bodies meeting a functional, technical, or biological assembly. The displacement of each or some of the elements of the system is generally large and cannot be neglected in mechanical modeling. The study of these multibody systems covers many industrial fields, but also has applications in medicine, sports, and art. The systematic treatment of the dynamic behavior of interconnected bodies has led to an important number of formalisms for multibody systems within mechanics. At present, this formalism is used in large engineering fields, especially robotics and vehicle dynamics. The formalism of multibody systems offers a means of algorithmic analysis, assisted by computers, and a means of simulating and optimizing an arbitrary movement of a possibly high number of elastic bodies in the connection. The domain where researchers apply these methods are robotics, simulations of the dynamics of vehicles, biomechanics, aerospace engineering (helicopters and the behavior of cars in a gravitational field), internal combustion engines, gearboxes, transmissions, mechanisms, the cellulose industry, simulation of particle behavior (granulated particles and molecules), dynamic simulation, military applications, computer games, medicine, and rehabilitation.
Titolo autorizzato: Multibody Systems with Flexible Elements  Visualizza cluster
ISBN: 3-0365-5257-X
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910637780903321
Lo trovi qui: Univ. Federico II
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