Application of Post-Embedded Piezoceramic Sensors for Force Detection on RC Columns under Seismic Loading

To quantify damage to reinforced concrete (RC) column members after an earthquake, an engineer needs to know the maximum applied force that was generated by the earthquake. Therefore, in this work, piezoceramic transducers were used to detect the applied force on an RC column member under dynamic lo...

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Main Authors: Chien-Kuo Chiu, Chia-Hsin Wu, Hsin-Fang Sung, Wen-I Liao, Chih-Hsien Lin
Format: Article
Language:English
Published: MDPI AG 2020-07-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/10/15/5061
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spelling doaj-9b36dd3bbc1346b6aedec97e9dbb84422020-11-25T03:06:13ZengMDPI AGApplied Sciences2076-34172020-07-01105061506110.3390/app10155061Application of Post-Embedded Piezoceramic Sensors for Force Detection on RC Columns under Seismic LoadingChien-Kuo Chiu0Chia-Hsin Wu1Hsin-Fang Sung2Wen-I Liao3Chih-Hsien Lin4Department of Civil and Construction Engineering, National Taiwan University of Science and Technology, Taipei 10607, TaiwanDepartment of Civil and Construction Engineering, National Taiwan University of Science and Technology, Taipei 10607, TaiwanDepartment of Civil and Construction Engineering, National Taiwan University of Science and Technology, Taipei 10607, TaiwanDepartment of Civil Engineering, National Taipei University of Technology, Taipei 10608, TaiwanDepartment of Civil Engineering, National Taipei University of Technology, Taipei 10608, TaiwanTo quantify damage to reinforced concrete (RC) column members after an earthquake, an engineer needs to know the maximum applied force that was generated by the earthquake. Therefore, in this work, piezoceramic transducers were used to detect the applied force on an RC column member under dynamic loading. To investigate the use of post-embedded piezoceramic sensors in detecting the force that is applied to RC columns, eight full-size RC column specimens with various failure modes were tested under specific earthquake loadings. Post-embedded piezoceramic sensors were installed at a range of depths (70–80 mm) beneath the surface of a column specimen to examine the relationship between the signals that were obtained from them and the force applied by the dynamic actuator. The signals that were generated by the post-embedded piezoceramic sensors, which correlate with the applied force, are presented. These results indicate that the post-embedded piezoceramic sensors have great potential as tools for measuring the maximum applied force on an RC column in an earthquake. In other words, signals that are obtained from post-embedded piezoceramic sensors on an RC column in an earthquake can be used to determine the applied force and corresponding damage or residual seismic capacity.https://www.mdpi.com/2076-3417/10/15/5061piezoceramic sensorreinforced concreteforceearthquakedamage
collection DOAJ
language English
format Article
sources DOAJ
author Chien-Kuo Chiu
Chia-Hsin Wu
Hsin-Fang Sung
Wen-I Liao
Chih-Hsien Lin
spellingShingle Chien-Kuo Chiu
Chia-Hsin Wu
Hsin-Fang Sung
Wen-I Liao
Chih-Hsien Lin
Application of Post-Embedded Piezoceramic Sensors for Force Detection on RC Columns under Seismic Loading
Applied Sciences
piezoceramic sensor
reinforced concrete
force
earthquake
damage
author_facet Chien-Kuo Chiu
Chia-Hsin Wu
Hsin-Fang Sung
Wen-I Liao
Chih-Hsien Lin
author_sort Chien-Kuo Chiu
title Application of Post-Embedded Piezoceramic Sensors for Force Detection on RC Columns under Seismic Loading
title_short Application of Post-Embedded Piezoceramic Sensors for Force Detection on RC Columns under Seismic Loading
title_full Application of Post-Embedded Piezoceramic Sensors for Force Detection on RC Columns under Seismic Loading
title_fullStr Application of Post-Embedded Piezoceramic Sensors for Force Detection on RC Columns under Seismic Loading
title_full_unstemmed Application of Post-Embedded Piezoceramic Sensors for Force Detection on RC Columns under Seismic Loading
title_sort application of post-embedded piezoceramic sensors for force detection on rc columns under seismic loading
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2020-07-01
description To quantify damage to reinforced concrete (RC) column members after an earthquake, an engineer needs to know the maximum applied force that was generated by the earthquake. Therefore, in this work, piezoceramic transducers were used to detect the applied force on an RC column member under dynamic loading. To investigate the use of post-embedded piezoceramic sensors in detecting the force that is applied to RC columns, eight full-size RC column specimens with various failure modes were tested under specific earthquake loadings. Post-embedded piezoceramic sensors were installed at a range of depths (70–80 mm) beneath the surface of a column specimen to examine the relationship between the signals that were obtained from them and the force applied by the dynamic actuator. The signals that were generated by the post-embedded piezoceramic sensors, which correlate with the applied force, are presented. These results indicate that the post-embedded piezoceramic sensors have great potential as tools for measuring the maximum applied force on an RC column in an earthquake. In other words, signals that are obtained from post-embedded piezoceramic sensors on an RC column in an earthquake can be used to determine the applied force and corresponding damage or residual seismic capacity.
topic piezoceramic sensor
reinforced concrete
force
earthquake
damage
url https://www.mdpi.com/2076-3417/10/15/5061
work_keys_str_mv AT chienkuochiu applicationofpostembeddedpiezoceramicsensorsforforcedetectiononrccolumnsunderseismicloading
AT chiahsinwu applicationofpostembeddedpiezoceramicsensorsforforcedetectiononrccolumnsunderseismicloading
AT hsinfangsung applicationofpostembeddedpiezoceramicsensorsforforcedetectiononrccolumnsunderseismicloading
AT weniliao applicationofpostembeddedpiezoceramicsensorsforforcedetectiononrccolumnsunderseismicloading
AT chihhsienlin applicationofpostembeddedpiezoceramicsensorsforforcedetectiononrccolumnsunderseismicloading
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