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Proceedings Paper

Energy transfer across cracks in a thin membrane strip
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Paper Abstract

This paper presents recent results from an ongoing investigation on the use of non-collocated actuator/receiver pair to enable dynamic testing of a thin membrane in order to detect cracks. The current focus is on obtaining the transfer function of a Kapton membrane excited at one end by a polyvinilidine fluoride (PVDF) actuator. A receiver of identical specifications is located at the other end. The actuator operates in the d31 mode which under sinusoidal excitation leads to a periodic variation in membrane tension. The paper shows that the resulting dynamics can be analyzed with the help of the Mathieu equation. As such, the frequency response of this membrane is complicated. The presence of a crack could in principle be detected by the corresponding decrease in the output voltage amplitude at the drive frequency in the Fourier transform of the output, but this was found difficult in practice. Detailed analysis of the parametrically excited dynamics with and without a crack could lead to precise and reliable signatures for healthy and cracked membranes.

Paper Details

Date Published: 5 April 2006
PDF: 9 pages
Proc. SPIE 6173, Smart Structures and Materials 2006: Smart Structures and Integrated Systems, 61731H (5 April 2006); doi: 10.1117/12.657471
Show Author Affiliations
Umesh A. Korde, South Dakota School of Mines and Technology (United States)
Christopher H. M. Jenkins, Montana State Univ. (United States)
Eric A. Petersen, Univ. of Nebraska, Lincoln (United States)


Published in SPIE Proceedings Vol. 6173:
Smart Structures and Materials 2006: Smart Structures and Integrated Systems
Yuji Matsuzaki, Editor(s)

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