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Evaluation of Methodologies for Assessing Self-Healing Performance of Concrete with Mineral Expansive Agents: An Interlaboratory Study

Self-healing concrete has the potential to optimise traditional design approaches; however, commercial uptake requires the ability to harmonize against standardized frameworks. Within EU SARCOS COST Action, different interlaboratory tests were executed on different self-healing techniques. This pape...

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Autores principales: Litina, Chrysoula, Bumanis, Girts, Anglani, Giovanni, Dudek, Marta, Maddalena, Riccardo, Amenta, Maria, Papaioannou, Stamatoula, Pérez, Gloria, García Calvo, José Luis, Asensio, Eloy, Beltrán Cobos, Rubén, Tavares Pinto, Fabiano, Augonis, Algirdas, Davies, Robert, Guerrero, Ana, Sánchez Moreno, Mercedes, Stryszewska, Teresa, Karatasios, Ioannis, Tulliani, Jean-Marc, Antonaci, Paola, Bajare, Diana, Al-Tabbaa, Abir
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8072714/
https://www.ncbi.nlm.nih.gov/pubmed/33920620
http://dx.doi.org/10.3390/ma14082024
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author Litina, Chrysoula
Bumanis, Girts
Anglani, Giovanni
Dudek, Marta
Maddalena, Riccardo
Amenta, Maria
Papaioannou, Stamatoula
Pérez, Gloria
García Calvo, José Luis
Asensio, Eloy
Beltrán Cobos, Rubén
Tavares Pinto, Fabiano
Augonis, Algirdas
Davies, Robert
Guerrero, Ana
Sánchez Moreno, Mercedes
Stryszewska, Teresa
Karatasios, Ioannis
Tulliani, Jean-Marc
Antonaci, Paola
Bajare, Diana
Al-Tabbaa, Abir
author_facet Litina, Chrysoula
Bumanis, Girts
Anglani, Giovanni
Dudek, Marta
Maddalena, Riccardo
Amenta, Maria
Papaioannou, Stamatoula
Pérez, Gloria
García Calvo, José Luis
Asensio, Eloy
Beltrán Cobos, Rubén
Tavares Pinto, Fabiano
Augonis, Algirdas
Davies, Robert
Guerrero, Ana
Sánchez Moreno, Mercedes
Stryszewska, Teresa
Karatasios, Ioannis
Tulliani, Jean-Marc
Antonaci, Paola
Bajare, Diana
Al-Tabbaa, Abir
author_sort Litina, Chrysoula
collection PubMed
description Self-healing concrete has the potential to optimise traditional design approaches; however, commercial uptake requires the ability to harmonize against standardized frameworks. Within EU SARCOS COST Action, different interlaboratory tests were executed on different self-healing techniques. This paper reports on the evaluation of the effectiveness of proposed experimental methodologies suited for self-healing concrete with expansive mineral additions. Concrete prisms and discs with MgO-based healing agents were produced and precracked. Water absorption and water flow tests were executed over a healing period spanning 6 months to assess the sealing efficiency, and the crack width reduction with time was monitored. High variability was reported for both reference (REF) and healing-addition (ADD) series affecting the reproducibility of cracking. However, within each lab, the crack width creation was repeatable. ADD reported larger crack widths. The latter influenced the observed healing making direct comparisons across labs prone to errors. Water absorption tests highlighted were susceptible to application errors. Concurrently, the potential of water flow tests as a facile method for assessment of healing performance was shown across all labs. Overall, the importance of repeatability and reproducibility of testing methods is highlighted in providing a sound basis for incorporation of self-healing concepts in practical applications.
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spelling pubmed-80727142021-04-27 Evaluation of Methodologies for Assessing Self-Healing Performance of Concrete with Mineral Expansive Agents: An Interlaboratory Study Litina, Chrysoula Bumanis, Girts Anglani, Giovanni Dudek, Marta Maddalena, Riccardo Amenta, Maria Papaioannou, Stamatoula Pérez, Gloria García Calvo, José Luis Asensio, Eloy Beltrán Cobos, Rubén Tavares Pinto, Fabiano Augonis, Algirdas Davies, Robert Guerrero, Ana Sánchez Moreno, Mercedes Stryszewska, Teresa Karatasios, Ioannis Tulliani, Jean-Marc Antonaci, Paola Bajare, Diana Al-Tabbaa, Abir Materials (Basel) Article Self-healing concrete has the potential to optimise traditional design approaches; however, commercial uptake requires the ability to harmonize against standardized frameworks. Within EU SARCOS COST Action, different interlaboratory tests were executed on different self-healing techniques. This paper reports on the evaluation of the effectiveness of proposed experimental methodologies suited for self-healing concrete with expansive mineral additions. Concrete prisms and discs with MgO-based healing agents were produced and precracked. Water absorption and water flow tests were executed over a healing period spanning 6 months to assess the sealing efficiency, and the crack width reduction with time was monitored. High variability was reported for both reference (REF) and healing-addition (ADD) series affecting the reproducibility of cracking. However, within each lab, the crack width creation was repeatable. ADD reported larger crack widths. The latter influenced the observed healing making direct comparisons across labs prone to errors. Water absorption tests highlighted were susceptible to application errors. Concurrently, the potential of water flow tests as a facile method for assessment of healing performance was shown across all labs. Overall, the importance of repeatability and reproducibility of testing methods is highlighted in providing a sound basis for incorporation of self-healing concepts in practical applications. MDPI 2021-04-17 /pmc/articles/PMC8072714/ /pubmed/33920620 http://dx.doi.org/10.3390/ma14082024 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Litina, Chrysoula
Bumanis, Girts
Anglani, Giovanni
Dudek, Marta
Maddalena, Riccardo
Amenta, Maria
Papaioannou, Stamatoula
Pérez, Gloria
García Calvo, José Luis
Asensio, Eloy
Beltrán Cobos, Rubén
Tavares Pinto, Fabiano
Augonis, Algirdas
Davies, Robert
Guerrero, Ana
Sánchez Moreno, Mercedes
Stryszewska, Teresa
Karatasios, Ioannis
Tulliani, Jean-Marc
Antonaci, Paola
Bajare, Diana
Al-Tabbaa, Abir
Evaluation of Methodologies for Assessing Self-Healing Performance of Concrete with Mineral Expansive Agents: An Interlaboratory Study
title Evaluation of Methodologies for Assessing Self-Healing Performance of Concrete with Mineral Expansive Agents: An Interlaboratory Study
title_full Evaluation of Methodologies for Assessing Self-Healing Performance of Concrete with Mineral Expansive Agents: An Interlaboratory Study
title_fullStr Evaluation of Methodologies for Assessing Self-Healing Performance of Concrete with Mineral Expansive Agents: An Interlaboratory Study
title_full_unstemmed Evaluation of Methodologies for Assessing Self-Healing Performance of Concrete with Mineral Expansive Agents: An Interlaboratory Study
title_short Evaluation of Methodologies for Assessing Self-Healing Performance of Concrete with Mineral Expansive Agents: An Interlaboratory Study
title_sort evaluation of methodologies for assessing self-healing performance of concrete with mineral expansive agents: an interlaboratory study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8072714/
https://www.ncbi.nlm.nih.gov/pubmed/33920620
http://dx.doi.org/10.3390/ma14082024
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