Damage inspection of fiber reinforced polymer-concrete systems using a distant acoustic-laser NDE technique

In this paper, a distant acoustic-laser NDE technique is proposed, utilizing a high powered standoff parametric acoustic array (PAA) and laser Doppler vibrometry (LDV), for the detection of debonding and delamination in multi-layer composite systems. Fiber-reinforced polymer wrapped concrete cylinde...

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Main Authors: Haupt, Robert W., Yu, Tzu-Yang
Other Authors: Lincoln Laboratory
Format: Article
Language:en_US
Published: SPIE 2010
Online Access:http://hdl.handle.net/1721.1/58572
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author Haupt, Robert W.
Yu, Tzu-Yang
author2 Lincoln Laboratory
author_facet Lincoln Laboratory
Haupt, Robert W.
Yu, Tzu-Yang
author_sort Haupt, Robert W.
collection MIT
description In this paper, a distant acoustic-laser NDE technique is proposed, utilizing a high powered standoff parametric acoustic array (PAA) and laser Doppler vibrometry (LDV), for the detection of debonding and delamination in multi-layer composite systems. Fiber-reinforced polymer wrapped concrete cylinder specimens with artificial defect were manufactured and used in the validation of the technique. Low-frequency (50 Hz 2 kHz) and highfrequency (2 kHz 7 kHz) focused sound waves were generated by PAA, and surface dynamic signatures of the specimens were remotely measured by LDV. From the results it is found that the proposed technique successfully captures the presence of near-surface debonding/delamination.
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spelling mit-1721.1/585722022-09-30T14:50:31Z Damage inspection of fiber reinforced polymer-concrete systems using a distant acoustic-laser NDE technique Haupt, Robert W. Yu, Tzu-Yang Lincoln Laboratory Haupt, Robert W. Haupt, Robert W. In this paper, a distant acoustic-laser NDE technique is proposed, utilizing a high powered standoff parametric acoustic array (PAA) and laser Doppler vibrometry (LDV), for the detection of debonding and delamination in multi-layer composite systems. Fiber-reinforced polymer wrapped concrete cylinder specimens with artificial defect were manufactured and used in the validation of the technique. Low-frequency (50 Hz 2 kHz) and highfrequency (2 kHz 7 kHz) focused sound waves were generated by PAA, and surface dynamic signatures of the specimens were remotely measured by LDV. From the results it is found that the proposed technique successfully captures the presence of near-surface debonding/delamination. 2010-09-16T19:37:22Z 2010-09-16T19:37:22Z 2010-04 2010-03 Article http://purl.org/eprint/type/JournalArticle 0277-786X http://hdl.handle.net/1721.1/58572 Yu, Tzu-Yang, and Robert Haupt. “Damage inspection of fiber reinforced polymer-concrete systems using a distant acoustic-laser NDE technique.” Nondestructive Characterization for Composite Materials, Aerospace Engineering, Civil Infrastructure, and Homeland Security 2010. Ed. Peter J. Shull, Aaron A. Diaz, & H. Felix Wu. San Diego, CA, USA: SPIE, 2010. 76491J-8. ©2010 SPIE. en_US http://dx.doi.org/10.1117/12.847630 Proceedings of SPIE--the International Society for Optical Engineering ; v. 7649 Article is made available in accordance with the publisher's policy and may be subject to US copyright law. Please refer to the publisher's site for terms of use. application/pdf SPIE SPIE
spellingShingle Haupt, Robert W.
Yu, Tzu-Yang
Damage inspection of fiber reinforced polymer-concrete systems using a distant acoustic-laser NDE technique
title Damage inspection of fiber reinforced polymer-concrete systems using a distant acoustic-laser NDE technique
title_full Damage inspection of fiber reinforced polymer-concrete systems using a distant acoustic-laser NDE technique
title_fullStr Damage inspection of fiber reinforced polymer-concrete systems using a distant acoustic-laser NDE technique
title_full_unstemmed Damage inspection of fiber reinforced polymer-concrete systems using a distant acoustic-laser NDE technique
title_short Damage inspection of fiber reinforced polymer-concrete systems using a distant acoustic-laser NDE technique
title_sort damage inspection of fiber reinforced polymer concrete systems using a distant acoustic laser nde technique
url http://hdl.handle.net/1721.1/58572
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