Multibody Dynamics : Computational Methods and Applications

MultibodyDynamicsrepresentsachallengingareaofmechanicalengineeringboth fromthepointofviewofmathematicalandcomputermodelsaswellasfromthatof theapplications.Duringthelastyearstherehavebeensigni?cantcontributionsinthe ?eld,duetowhichincreasedmaturityhasbeenreachedintheoreticalmodelsaswell as in the ava...

詳細記述

保存先:
書誌詳細
第一著者: García Orden, Juan Carlos
その他の著者: Goicolea, José M. (出版デイレクター), Cuadrado, Javier (出版デイレクター)
フォーマット: Livre numérique
言語:Anglais
出版事項: Dordrecht : Springer Netherlands [20..].
Cham : Springer Nature
版:1st ed. 2007.
シリーズ:Computational Methods in Applied Sciences 4
オンライン・アクセス:Accès sur la plateforme de l'éditeur
Accès sur la plateforme Istex
Accès Université d'Orléans
Accès INSA CVL
注記: Archives Springer e-books (Licence nationale)
Archives Springer e-books (Licence nationale)
Autres localisations: Voir dans le Sudoc
Edition sous un autre format:• Multibody dynamics, computational methods and applications, Juan Carlos García Orden, José M. Goicolea, Javier Cuadrado (Eds), 2007, Dordrecht, Springer, 1 vol. (VII-294 p.), Computational methods in applied sciences, 978-1-402-05683-3
• Multibody Dynamics, Texte imprimé, 9789048112029
• Multibody Dynamics, Texte imprimé, 9789048174270
目次:
  • Modelling Multi-Body Systems Using the Master-Slave Approach Aspects of Contact Problems in Computational Multibody Dynamics On the Stabilizing Properties of Energy-Momentum Integrators and Coordinate Projections for Constrained Mechanical Systems Analysis and Improved Methods for the Error Estimation of Numerical Solutions in Solid and Multibody Dynamics A DAE Formulation for the Dynamic Analysis and Control Design of Cranes Executing Prescribed Motions of Payloads Neural-Augmented Planning and Tracking Pilots for Maneuvering Multibody Dynamics Computational and Design Aspects in Multibody Software Development Engineering Education in Multibody Dynamics Rollover Tendency in Embankment and Ramp Maneuvers with Ground Contact Aircraft Subsystems Modelling Using Different MBS Formalisms Modelling of Joint Friction in Robotic Manipulators with Gear Transmissions Multibody Dynamics of Biomechanical Models for Human Motion via Optimization From Multibody Dynamics to Multidisciplinary Applications