Rotating Machinery, Hybrid Test Methods, Vibro-Acoustics & Laser Vibrometry, Volume 8

Rotating Machinery, Hybrid Test Methods, Vibro-Acoustics & Laser Vibrometry, Volume 8

Proceedings of the 35th IMAC, A Conference and Exposition on Structural Dynamics 2017

Castellini, Paolo; Di Maio, Dario

Springer International Publishing AG

03/2017

151

Dura

Inglês

9783319546476

15 a 20 dias

5856


ebook

Descrição não disponível.
Chapter 1. Strategies for Testing Large Aerospace Structures with 3D SLDV.- Chapter 2. Modal Model Validation Using 3D SLDV, Geometry Scanning and FEM of a Multi-Purpose Drone Propeller Blade.- Chapter 3. Effect of Dry Friction Damping on the Dynamic Response of Helicopter Tail Shaft.- Chapter 4. Nonlinear Dynamic Analysis of a Spiral Bevel Geared System.- Chapter 4. Estimating Material Wave speed Using the Wave number Transform of Rectangular Plate Mode Shapes.- Chapter 5. In-Operation Wind Turbine Modal Analysis via LPV-VAR Modeling.- Chapter 6.Structural Damage Identification Using Free Response Measured by a Continuously Scanning Laser Doppler Vibrometer System.- Chapter 7. Mitigation of Structural-Acoustic Mode Coupling in a Modal Test of a Hollow Structure.- Chapter 8. Application of 3D Scanning Laser Doppler Vibrometry to an Article with Internal Features.- Chapter 9.The Measurement of a Nonlinear Resonant Decay using Continuous-scan Laser Doppler Vibrometry.- Chapter 10. Vibro-Acoustic Modulation of a Spinning Apparatus for Nondestructive Evaluation.- Chapter 11. Nonlinear Phase Separation Testing of an Experimental Wing-Engine Structure.- Chapter 12. Wind Turbine Health Monitoring: Current and Future Trends with an Active Learning Twist.- Chapter 13. Nonlinear 3D Dynamic Model of an Automotive Dual Mass Flywheel.- Chapter 13. Investigation of Notch-type Damage Identification by Using a Continuously Scanning Laser Doppler Vibrometer System.
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IMAC Proceedings 2017;Rotating Machinery;Vibro-Acoustics;Experimental Techniques;Advances in Wind Energy;Scanning Laser Doppler Vibrometry Methods;Hybrid Test Methods