Vibration engineering and technology of machinery : proceedings of VETOMAC XV 2019 / José Manoel Balthazar, editor.
2021
TA355
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Title
Vibration engineering and technology of machinery : proceedings of VETOMAC XV 2019 / José Manoel Balthazar, editor.
ISBN
9783030606947 (electronic bk.)
3030606945 (electronic bk.)
3030606937
9783030606930
3030606945 (electronic bk.)
3030606937
9783030606930
Publication Details
Cham : Springer, 2021.
Language
English
Description
1 online resource (450 pages)
Item Number
10.1007/978-3-030-60694-7 doi
Call Number
TA355
Dewey Decimal Classification
620.3
Summary
This volume gathers the latest advances, innovations and applications in the field of vibration and technology of machinery, as presented by leading international researchers and engineers at the XV International Conference on Vibration Engineering and Technology of Machinery (VETOMAC), held in Curitiba, Brazil on November 10-15, 2019. Topics include concepts and methods in dynamics, dynamics of mechanical and structural systems, dynamics and control, condition monitoring, machinery and structural dynamics, rotor dynamics, experimental techniques, finite element model updating, industrial case studies, vibration control and energy harvesting, and MEMS. The contributions, which were selected through a rigorous international peer-review process, share exciting ideas that will spur novel research directions and foster new multidisciplinary collaborations.
Note
International conference proceedings.
Includes author index.
Includes author index.
Access Note
Access limited to authorized users.
Source of Description
Online resource; title from PDF title page (SpringerLink, viewed March 29, 2021).
Added Author
Balthazar, José Manoel.
Series
Mechanisms and machine science ; v. 95.
Available in Other Form
Vibration Engineering and Technology of Machinery : Proceedings of VETOMAC XV 2019
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Table of Contents
Chapter 1: Stabilization of chaos via strong nonlinearities: the Lorenz-Malkus wheel under Coulomb and hysteresis frictions
Chapter 2: Drive dynamics of vibratory machines with inertia Excitation. Nikolay
Chapter 3: Quasiperiodic stability diagram in a nonlinear delayed self-excited oscillator under parametric coupling. Ilham Kirrou and Mohamed Belhaq
Chapter 4: Harmonic balance of Bouc-Wen model to identify hysteresis effects in bolted Jjints
Chapter 5: Dynamic friction model study applied to a servo mechanism at low velocities.
Chapter 2: Drive dynamics of vibratory machines with inertia Excitation. Nikolay
Chapter 3: Quasiperiodic stability diagram in a nonlinear delayed self-excited oscillator under parametric coupling. Ilham Kirrou and Mohamed Belhaq
Chapter 4: Harmonic balance of Bouc-Wen model to identify hysteresis effects in bolted Jjints
Chapter 5: Dynamic friction model study applied to a servo mechanism at low velocities.