Active and Passive Vibration Damping (eBook)
John Wiley & Sons (Verlag)
978-1-118-53758-9 (ISBN)
A guide to the application of viscoelastic damping materials to control vibration and noise of structures, machinery, and vehicles
Active and Passive Vibration Damping is a practical guide to the application of passive as well as actively treated viscoelastic damping materials to control vibration and noise of structures, machinery and vehicles. The author - a noted expert on the topic - presents the basic principles and reviews the potential applications of passive and active vibration damping technologies. The text presents a combination of the associated physical fundamentals, governing theories and the optimal design strategies of various configurations of vibration damping treatments.
The text presents the basics of various damping effective treatments such as constrained layers, shunted piezoelectric treatments, electromagnetic and shape memory fibers. Classical and new models are included as well as aspects of viscoelastic materials models that are analyzed from the experimental characterization of the material coefficients as well as their modeling. The use of smart materials to augment the vibration damping of passive treatments is pursued in depth throughout the book. This vital guide:
- Contains numerical examples that reinforce the understanding of the theories presented
- Offers an authoritative text from an internationally recognized authority and pioneer on the subject
- Presents, in one volume, comprehensive coverage of the topic that is not available elsewhere
- Presents a mix of the associated physical fundamentals, governing theories and optimal design strategies of various configurations of vibration damping treatments
Written for researchers in vibration damping and research, engineers in structural dynamics and practicing engineers, Active and Passive Vibration Damping offers a hands-on resource for applying passive as well as actively treated viscoelastic damping materials to control vibration and noise of structures, machinery and vehicles.
AMR M. BAZ, PHD, is Minta-Martin Chair Professor and Director of Smart Materials and Structures Research Center, Mechanical Engineering Department, University of Maryland, USA. His research interests include active and passive control of vibration and noise, active constrained layer damping, magnetic composites, virtual reality design of smart structures, active periodic structures, active acoustic meta-materials, and non-reciprocal acoustic metamaterials.
A guide to the application of viscoelastic damping materials to control vibration and noise of structures, machinery, and vehicles Active and Passive Vibration Damping is a practical guide to the application of passive as well as actively treated viscoelastic damping materials to control vibration and noise of structures, machinery and vehicles. The author a noted expert on the topic presents the basic principles and reviews the potential applications of passive and active vibration damping technologies. The text presents a combination of the associated physical fundamentals, governing theories and the optimal design strategies of various configurations of vibration damping treatments. The text presents the basics of various damping effective treatments such as constrained layers, shunted piezoelectric treatments, electromagnetic and shape memory fibers. Classical and new models are included as well as aspects of viscoelastic materials models that are analyzed from the experimental characterization of the material coefficients as well as their modeling. The use of smart materials to augment the vibration damping of passive treatments is pursued in depth throughout the book. This vital guide: Contains numerical examples that reinforce the understanding of the theories presented Offers an authoritative text from an internationally recognized authority and pioneer on the subject Presents, in one volume, comprehensive coverage of the topic that is not available elsewhere Presents a mix of the associated physical fundamentals, governing theories and optimal design strategies of various configurations of vibration damping treatments Written for researchers in vibration damping and research, engineers in structural dynamics and practicing engineers, Active and Passive Vibration Damping offers a hands-on resource for applying passive as well as actively treated viscoelastic damping materials to control vibration and noise of structures, machinery and vehicles.
AMR M. BAZ, PHD, is Minta-Martin Chair Professor and Director of Smart Materials and Structures Research Center, Mechanical Engineering Department, University of Maryland, USA. His research interests include active and passive control of vibration and noise, active constrained layer damping, magnetic composites, virtual reality design of smart structures, active periodic structures, active acoustic meta-materials, and non-reciprocal acoustic metamaterials.
| Erscheint lt. Verlag | 10.12.2018 |
|---|---|
| Sprache | englisch |
| Themenwelt | Technik ► Maschinenbau |
| Schlagworte | Active and passive periodic structures • active piezoelectric damping composites • Aeronautic & Aerospace Engineering • augmented temperature field • Cole-Cole plot • complex modulus • creep compliance • Dämpfung • damping by nano-particle composites. Vibration energy flow distribution by damping control • desirable damping characteristics • different sinusoidal excitations • DMTA • dynamic mechanical thermal analysis • Elastomers • Electrical & Electronics Engineering • Elektrotechnik u. Elektronik • fading memory phenomenon • fractional derivatives • glass transition temperature • Golla-Hughes-McTavish model • Guide to Active and Passive Vibration Damping • Intelligente Systeme u. Agenten • Intelligent Systems & Agents • Luft- u. Raumfahrttechnik • magnetic damping treatments • Maschinenbau • Maschinenbau - Entwurf • master curves • mechanical engineering • Mechanical Engineering - Design • mechanisms for dissipating the energy of vibrating structure • modal strain energy • multi-modal shunted piezoelectric networks • Piezoelectric • propagation parameter • quantitative measure of VEM • relaxation modulus • Resource to Active and Passive Vibration Damping • shear deformation • stand-off damping treatment • Storage Modulus • Text on Active and Passive Vibration Damping • topology optimization of damping treatments • Understanding Active and Passive Vibration Damping • VEM • Vibration • viscoelastic damping layer • wave propagates between adjacent cells • Wicket plot |
| ISBN-10 | 1-118-53758-0 / 1118537580 |
| ISBN-13 | 978-1-118-53758-9 / 9781118537589 |
| Informationen gemäß Produktsicherheitsverordnung (GPSR) | |
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