Mechanically induced light emission, termed mechanoluminescence (ML) has been a potential candidate for stress sensing, stress visualization, damage detection and crack propagation applications. In this work, we demonstrate utilizing ML from elastic loading, termed elastico-mechanoluminescence (EML), for structural health monitoring and failure prediction applications. EML from ZnS:Cu phosphors impregnated in elastomeric matrix is shown to correlate with the structural health of the matrix as well as indicate impending failure of the matrix. Indicators for real-time monitoring to predict impeding failure are also identified. EML based SHM system can be implemented to monitor health of several existing engineering devices that depend on functional elastomeric components for reliable operation.
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ASME 2017 Conference on Smart Materials, Adaptive Structures and Intelligent Systems
September 18–20, 2017
Snowbird, Utah, USA
Conference Sponsors:
- Aerospace Division
ISBN:
978-0-7918-5826-4
PROCEEDINGS PAPER
Elastomer Health Monitoring Utilizing Elastico-Mechanoluminescence From Impregnated ZnS:Cu
Srivatsava Krishnan,
Srivatsava Krishnan
Ohio State University, Columbus, OH
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Vishnubaba Sundaresan
Vishnubaba Sundaresan
Ohio State University, Columbus, OH
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Srivatsava Krishnan
Ohio State University, Columbus, OH
Vishnubaba Sundaresan
Ohio State University, Columbus, OH
Paper No:
SMASIS2017-3965, V002T05A009; 6 pages
Published Online:
November 9, 2017
Citation
Krishnan, S, & Sundaresan, V. "Elastomer Health Monitoring Utilizing Elastico-Mechanoluminescence From Impregnated ZnS:Cu." Proceedings of the ASME 2017 Conference on Smart Materials, Adaptive Structures and Intelligent Systems. Volume 2: Modeling, Simulation and Control of Adaptive Systems; Integrated System Design and Implementation; Structural Health Monitoring. Snowbird, Utah, USA. September 18–20, 2017. V002T05A009. ASME. https://doi.org/10.1115/SMASIS2017-3965
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