A primary study on the performance of piezoceramic based smart aggregate under various compressive stresses

The reliability of piezoceramic based smart aggregate (SA) used for damage detection of concrete structures has already been validated by laboratory tests. However, the in situ concrete members are generally under a big range of stress levels, and the performance of SA under various compressive stre...

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Veröffentlicht in:Smart materials and structures 2017-10, Vol.26 (10), p.107003
Hauptverfasser: Zou, Dujian, Liu, Tiejun, Yang, Antai, Zhao, Yanru, Du, Chengcheng
Format: Artikel
Sprache:eng
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Zusammenfassung:The reliability of piezoceramic based smart aggregate (SA) used for damage detection of concrete structures has already been validated by laboratory tests. However, the in situ concrete members are generally under a big range of stress levels, and the performance of SA under various compressive stresses is still unclear. In this study, an electronic universal testing machine was employed to apply different stresses on the SAs. The received signals of SA sensor accompanying with different drive signals were recorded. The experimental results show that the amplitude of received signals increases firstly, and then tends to be stable with stress. This enhancement is mainly induced by the decrease in thickness of epoxy resin layer caused by compressive stress. It indicates that the change of load applied on monitored concrete members embedded with SAs may lead to a change in monitoring signal amplitude even in elastic range, but it does not stand for the change of health state of monitored concrete member.
ISSN:0964-1726
1361-665X
DOI:10.1088/1361-665X/aa891a