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Presentation
Ultrasonic Rayleigh wave inspection of waviness in wind turbine blades: Experimental and finite element method
Center for Nondestructive Evaluation Conference Papers, Posters and Presentations
  • Sunil Kishore Chakrapani, Iowa State University
  • Vinay Dayal, Iowa State University
  • Daniel J. Barnard, Iowa State University
  • Aaron Eldal, Iowa State University
  • Ryan Krafka, Iowa State University
Document Type
Conference Proceeding
Conference
Review of Progress in Quantitative Nondestructive Evaluation
Publication Date
7-1-2011
Geolocation
(44.4758825, -73.212072)
Abstract

This paper presents the investigation of discrete, out-of-plane waviness in thick composite plates with applications to wind turbine blades. The investigation was carried out with the help of air coupled ultrasonics and a two-step procedure was framed to assist production line implementation. The first step involved detection of marcels, and the second step involved the characterization of these marcels with the help of an index called aspect ratio. A set of standardized samples with known aspect ratios were fabricated and used for this study. Finite element models were created to understand the wave propagation in wavy composite plates. All the experimental data was correlated with numerical B-Scans and conclusions concerning the method were made.

Comments

Copyright 2012 American Institute of Physics. This article may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics.

This article appeared in AIP Conference Proceedings 1430 (2012): 1911–1917 and may be found at http://dx.doi.org/10.1063/1.4716444.

Copyright Owner
American Institute of Physics
Language
en
Citation Information
Sunil Kishore Chakrapani, Vinay Dayal, Daniel J. Barnard, Aaron Eldal, et al.. "Ultrasonic Rayleigh wave inspection of waviness in wind turbine blades: Experimental and finite element method" Burlington, VT(2011)
Available at: http://works.bepress.com/vinay_dayal/11/