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Nonlinear Dynamics and Vibration Control of Flexible Systems

English · Hardback

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Description

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This book is an essential guide to nonlinear dynamics and vibration control, detailing both the theory and the practical industrial applications within all aspects of engineering. It will aid both students and engineers in practically and safely improving flexible structures through control methods.


About the author

Jie Huang is professor at the School of Mechanical Engineering, Beijing Institute of Technology. He also held visiting appointments at Georgia Institute of Technology, University of Technology Sydney, and University of Southampton. His research interests include flexible multibody dynamics and vibration control.

Summary

This book is an essential guide to nonlinear dynamics and vibration control, detailing both the theory and the practical industrial applications within all aspects of engineering. It will aid both students and engineers in practically and safely improving flexible structures through control methods.

Product details

Authors JIE HUANG, Jie (Beijing Institute of Technology Huang, Huang Jie
Publisher Taylor & Francis Ltd.
 
Content Book
Product form Hardback
Publication date 31.10.2022
Subject Natural sciences, medicine, IT, technology > Physics, astronomy > Mechanics, acoustics
 
EAN 9781032161280
ISBN 978-1-0-3216128-0
Pages 398
 
Subjects TECHNOLOGY & ENGINEERING / Mechanical, SCIENCE / Mechanics / General, Mechanical Engineering, Other manufacturing technologies, Materials science, Production engineering, Engineering: general, Automatic control engineering, Dynamics & statics, Energy, power generation, distribution and storage, Hydraulic Engineering, Production and industrial engineering, Dynamics and statics, Power generation & distribution, Dynamics & vibration, Fluid-Structure Interaction, Intelligent Control Methods, sliding mode control, Mass ratio, mechanical system modeling, damping ratio, modal analysis techniques, robotic automation engineering, advanced vibration suppression strategies, structural vibration analysis, Coupled Oscillator Model, Vibration Amplitude, Time Delayed Feedback Control, Mode Superposition Method, Linear Mass Density, Bridge Crane, Driving Distances, Small Mass Ratios, Combined Control Scheme, Coordinate Measurement Machines, Linear Frequency, Continuous Piecewise Function, Flexible Link, Nonlinear Frequencies, Flexible Link Manipulators, Residual Vibration, Nonlinear Stiffness, Beam length, Driving Distance, Low Pass Filtering Effect, Modal Coupling Effects
 

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