An embedded" sensor approach for concrete resistivity measurement in on" site corrosion monitoring: Cell constants determination
The concrete electrical resistivity is a prominent parameter in structural health monitor-ing, since, along with corrosion potential, it provides relevant qualitative diagnosis of the reinforcement corrosion. This study proposes a simple expression to reliable determine resistivity from the concrete...
| Authors: | , , , |
|---|---|
| Format: | article |
| Publication Date: | 2021 |
| Country: | España |
| Institution: | Consejo General de la Arquitectura Técnica de España (CGATE) |
| Repository: | RIARTE |
| OAI Identifier: | oai:www.riarte.es:20.500.12251/2486 |
| Online Access: | http://hdl.handle.net/20.500.12251/2486 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85103485195&doi=10.3390%2fs21072481&partnerID=40&md5=18022849ef141533ae5e06d2066c6438 |
| Access Level: | Open access |
| Keyword: | Tomografía de resistividad eléctrica 3D Corrosión Hormigón armado Propiedades mecánicas Ensayos (propiedades o materiales) Armadura (Construcción) Sensorización Resistencia mecánica 3303.07 Tecnología de la Corrosión 3311.06 Instrumentos Eléctricos 2202.02 Magnitudes Eléctricas y Su Medida 3313.04 Material de Construcción 3316.13 Productos de Acero Para Construcciones 3305.32 Ingeniería de Estructuras 3305.33 Resistencia de Est |
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An embedded" sensor approach for concrete resistivity measurement in on" site corrosion monitoring: Cell constants determinationRamón Zamora, José EnriqueMartínez, I.Gandía Romero, José ManuelSoto, J.Tomografía de resistividad eléctrica 3DCorrosiónHormigón armadoPropiedades mecánicasEnsayos (propiedades o materiales)Armadura (Construcción)SensorizaciónResistencia mecánica3303.07 Tecnología de la Corrosión3311.06 Instrumentos Eléctricos2202.02 Magnitudes Eléctricas y Su Medida3313.04 Material de Construcción3316.13 Productos de Acero Para Construcciones3305.32 Ingeniería de Estructuras3305.33 Resistencia de EstThe concrete electrical resistivity is a prominent parameter in structural health monitor-ing, since, along with corrosion potential, it provides relevant qualitative diagnosis of the reinforcement corrosion. This study proposes a simple expression to reliable determine resistivity from the concrete electrical resistance (RE) provided by the corrosion sensor of the Integrated Network of Sensors for Smart Corrosion Monitoring (INESSCOM) we have developed. The novelty here is that distinct from common resistivity sensors, the cell constants obtained by the proposed expression are intended to be valid for any sensor implementation scenario. This was ensured by studying most significant geometrical features of the sensor in a wide set of calibration solutions. This embedded-sensor approach is intended to be applicable for RE measurements obtained both using potential step voltammetry (PSV, used in the INESSCOM sensor for corrosion rate measurement) and alter-nating current methods. In this regard, we present a simple protocol to reliably determine RE, and therefore resistivity, from PSV measurements. It consists in adding a very short potentiostatic pulse to the original technique. In this way, we are able to easy monitor resistivity along with corrosion rate through a single sensor, an advantage which is not usual in structural health monitoring. © 2021 by the authors. Licensee MDPI, Basel, Switzerland.MDPI AG2021info:eu-repo/semantics/articlehttp://hdl.handle.net/20.500.12251/2486https://www.scopus.com/inward/record.uri?eid=2-s2.0-85103485195&doi=10.3390%2fs21072481&partnerID=40&md5=18022849ef141533ae5e06d2066c6438reponame:RIARTEinstname:Consejo General de la Arquitectura Técnica de España (CGATE)Ingléshttp://creativecommons.org/licenses/by-nc-nd/4.0/info:eu-repo/semantics/openAccessoai:www.riarte.es:20.500.12251/24862026-06-02T12:44:41Z |
| dc.title.none.fl_str_mv |
An embedded" sensor approach for concrete resistivity measurement in on" site corrosion monitoring: Cell constants determination |
| title |
An embedded" sensor approach for concrete resistivity measurement in on" site corrosion monitoring: Cell constants determination |
| spellingShingle |
An embedded" sensor approach for concrete resistivity measurement in on" site corrosion monitoring: Cell constants determination Ramón Zamora, José Enrique Tomografía de resistividad eléctrica 3D Corrosión Hormigón armado Propiedades mecánicas Ensayos (propiedades o materiales) Armadura (Construcción) Sensorización Resistencia mecánica 3303.07 Tecnología de la Corrosión 3311.06 Instrumentos Eléctricos 2202.02 Magnitudes Eléctricas y Su Medida 3313.04 Material de Construcción 3316.13 Productos de Acero Para Construcciones 3305.32 Ingeniería de Estructuras 3305.33 Resistencia de Est |
| title_short |
An embedded" sensor approach for concrete resistivity measurement in on" site corrosion monitoring: Cell constants determination |
| title_full |
An embedded" sensor approach for concrete resistivity measurement in on" site corrosion monitoring: Cell constants determination |
| title_fullStr |
An embedded" sensor approach for concrete resistivity measurement in on" site corrosion monitoring: Cell constants determination |
| title_full_unstemmed |
An embedded" sensor approach for concrete resistivity measurement in on" site corrosion monitoring: Cell constants determination |
| title_sort |
An embedded" sensor approach for concrete resistivity measurement in on" site corrosion monitoring: Cell constants determination |
| dc.creator.none.fl_str_mv |
Ramón Zamora, José Enrique Martínez, I. Gandía Romero, José Manuel Soto, J. |
| author |
Ramón Zamora, José Enrique |
| author_facet |
Ramón Zamora, José Enrique Martínez, I. Gandía Romero, José Manuel Soto, J. |
| author_role |
author |
| author2 |
Martínez, I. Gandía Romero, José Manuel Soto, J. |
| author2_role |
author author author |
| dc.subject.none.fl_str_mv |
Tomografía de resistividad eléctrica 3D Corrosión Hormigón armado Propiedades mecánicas Ensayos (propiedades o materiales) Armadura (Construcción) Sensorización Resistencia mecánica 3303.07 Tecnología de la Corrosión 3311.06 Instrumentos Eléctricos 2202.02 Magnitudes Eléctricas y Su Medida 3313.04 Material de Construcción 3316.13 Productos de Acero Para Construcciones 3305.32 Ingeniería de Estructuras 3305.33 Resistencia de Est |
| topic |
Tomografía de resistividad eléctrica 3D Corrosión Hormigón armado Propiedades mecánicas Ensayos (propiedades o materiales) Armadura (Construcción) Sensorización Resistencia mecánica 3303.07 Tecnología de la Corrosión 3311.06 Instrumentos Eléctricos 2202.02 Magnitudes Eléctricas y Su Medida 3313.04 Material de Construcción 3316.13 Productos de Acero Para Construcciones 3305.32 Ingeniería de Estructuras 3305.33 Resistencia de Est |
| description |
The concrete electrical resistivity is a prominent parameter in structural health monitor-ing, since, along with corrosion potential, it provides relevant qualitative diagnosis of the reinforcement corrosion. This study proposes a simple expression to reliable determine resistivity from the concrete electrical resistance (RE) provided by the corrosion sensor of the Integrated Network of Sensors for Smart Corrosion Monitoring (INESSCOM) we have developed. The novelty here is that distinct from common resistivity sensors, the cell constants obtained by the proposed expression are intended to be valid for any sensor implementation scenario. This was ensured by studying most significant geometrical features of the sensor in a wide set of calibration solutions. This embedded-sensor approach is intended to be applicable for RE measurements obtained both using potential step voltammetry (PSV, used in the INESSCOM sensor for corrosion rate measurement) and alter-nating current methods. In this regard, we present a simple protocol to reliably determine RE, and therefore resistivity, from PSV measurements. It consists in adding a very short potentiostatic pulse to the original technique. In this way, we are able to easy monitor resistivity along with corrosion rate through a single sensor, an advantage which is not usual in structural health monitoring. © 2021 by the authors. Licensee MDPI, Basel, Switzerland. |
| publishDate |
2021 |
| dc.date.none.fl_str_mv |
2021 |
| dc.type.none.fl_str_mv |
info:eu-repo/semantics/article |
| format |
article |
| dc.identifier.none.fl_str_mv |
http://hdl.handle.net/20.500.12251/2486 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85103485195&doi=10.3390%2fs21072481&partnerID=40&md5=18022849ef141533ae5e06d2066c6438 |
| url |
http://hdl.handle.net/20.500.12251/2486 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85103485195&doi=10.3390%2fs21072481&partnerID=40&md5=18022849ef141533ae5e06d2066c6438 |
| dc.language.none.fl_str_mv |
Inglés |
| language_invalid_str_mv |
Inglés |
| dc.rights.none.fl_str_mv |
http://creativecommons.org/licenses/by-nc-nd/4.0/ info:eu-repo/semantics/openAccess |
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http://creativecommons.org/licenses/by-nc-nd/4.0/ |
| eu_rights_str_mv |
openAccess |
| dc.publisher.none.fl_str_mv |
MDPI AG |
| publisher.none.fl_str_mv |
MDPI AG |
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reponame:RIARTE instname:Consejo General de la Arquitectura Técnica de España (CGATE) |
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Consejo General de la Arquitectura Técnica de España (CGATE) |
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RIARTE |
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RIARTE |
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1869419339667472384 |
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15.198674 |