4.5 Article

Sensing sheet: the response of full-bridge strain sensors to thermal variations for detecting and characterizing cracks

期刊

MEASUREMENT SCIENCE AND TECHNOLOGY
卷 27, 期 12, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/0957-0233/27/12/124010

关键词

sensing sheet; full-bridge strain sensor; temperature influence; cracking damage; structural health monitoring

资金

  1. Princeton University School of Engineering and Applied Sciences
  2. USDOT-RITA UTC Programs through the Center for Advanced Infrastructure and Transportation (CAIT) at Rutgers University [DTRT12-G-UTC16, DTRT13-G-UTC28]

向作者/读者索取更多资源

Sensing sheets based on large-area electronics consist of a dense array of unit strain sensors. This new technology has potential for becoming an effective and affordable monitoring tool that can identify, localize and quantify surface damage in structures. This research contributes to their development by investigating the response of full-bridge unit strain sensors to thermal variations. Overall, this investigation quantifies the effects of temperature on thin-film full-bridge strain sensors monitoring uncracked and cracked concrete. Additionally, an empirical formula is developed to estimate crack width given an observed strain change and a measured temperature change. This research led to the understanding of the behavior of full-bridge strain sensors installed on cracked concrete and exposed to temperature variations. It proves the concept of the sensing sheet and its suitability for application in environments with variable temperature.

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