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Reinforced Concrete Structure Performance in Marine Structures: Analyzing Durability Indexes to Obtain More Accurate Corrosion Initiation Time Predictions

This paper presents a comparison of six index properties collected during durability inspections of five Mexican seaports. Typical durability indicators such as compressive strength, saturated electrical resistivity, ultrasonic pulse velocity, percent total void content, capillary porosity, and chlo...

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Autores principales: Arreola-Sanchez, Mauricio, Alonso-Guzman, Elia M., Martinez-Molina, Wilfrido, Torres-Acosta, Andres A., Chavez-Garcia, Hugo L., Ponce-Ortega, Jose M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8708468/
https://www.ncbi.nlm.nih.gov/pubmed/34947256
http://dx.doi.org/10.3390/ma14247662
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author Arreola-Sanchez, Mauricio
Alonso-Guzman, Elia M.
Martinez-Molina, Wilfrido
Torres-Acosta, Andres A.
Chavez-Garcia, Hugo L.
Ponce-Ortega, Jose M.
author_facet Arreola-Sanchez, Mauricio
Alonso-Guzman, Elia M.
Martinez-Molina, Wilfrido
Torres-Acosta, Andres A.
Chavez-Garcia, Hugo L.
Ponce-Ortega, Jose M.
author_sort Arreola-Sanchez, Mauricio
collection PubMed
description This paper presents a comparison of six index properties collected during durability inspections of five Mexican seaports. Typical durability indicators such as compressive strength, saturated electrical resistivity, ultrasonic pulse velocity, percent total void content, capillary porosity, and chloride concentration profiles were analyzed to obtain empirical correlations with the non-steady-state chloride diffusion coefficient. These indices were compared to determine correlation coefficients that are the most important for obtaining better corrosion initiation forecasting. Two models of corrosion initiation time (t(i)) were used: Fick’s second law of diffusion and the reported UNE-83994-2 (Spanish Association for Standardization, UNE) in which electrical resistivity was used to calculate concrete service life. The data from both models were cleaned using correlated variables, and the initial variables were compared with t(i). The main result achieved was the verification of the feasibility of using correlations of variables to clean unnecessary data in order to calculate t(i). Additionally, electrical resistivity was identified as one of the main durability indexes for in-service concrete structures exposed to marine environments. This is important because electrical resistivity is a non-destructive and reliable test that can be measured both in the laboratory and in the field very easily.
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spelling pubmed-87084682021-12-25 Reinforced Concrete Structure Performance in Marine Structures: Analyzing Durability Indexes to Obtain More Accurate Corrosion Initiation Time Predictions Arreola-Sanchez, Mauricio Alonso-Guzman, Elia M. Martinez-Molina, Wilfrido Torres-Acosta, Andres A. Chavez-Garcia, Hugo L. Ponce-Ortega, Jose M. Materials (Basel) Article This paper presents a comparison of six index properties collected during durability inspections of five Mexican seaports. Typical durability indicators such as compressive strength, saturated electrical resistivity, ultrasonic pulse velocity, percent total void content, capillary porosity, and chloride concentration profiles were analyzed to obtain empirical correlations with the non-steady-state chloride diffusion coefficient. These indices were compared to determine correlation coefficients that are the most important for obtaining better corrosion initiation forecasting. Two models of corrosion initiation time (t(i)) were used: Fick’s second law of diffusion and the reported UNE-83994-2 (Spanish Association for Standardization, UNE) in which electrical resistivity was used to calculate concrete service life. The data from both models were cleaned using correlated variables, and the initial variables were compared with t(i). The main result achieved was the verification of the feasibility of using correlations of variables to clean unnecessary data in order to calculate t(i). Additionally, electrical resistivity was identified as one of the main durability indexes for in-service concrete structures exposed to marine environments. This is important because electrical resistivity is a non-destructive and reliable test that can be measured both in the laboratory and in the field very easily. MDPI 2021-12-12 /pmc/articles/PMC8708468/ /pubmed/34947256 http://dx.doi.org/10.3390/ma14247662 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
Arreola-Sanchez, Mauricio
Alonso-Guzman, Elia M.
Martinez-Molina, Wilfrido
Torres-Acosta, Andres A.
Chavez-Garcia, Hugo L.
Ponce-Ortega, Jose M.
Reinforced Concrete Structure Performance in Marine Structures: Analyzing Durability Indexes to Obtain More Accurate Corrosion Initiation Time Predictions
title Reinforced Concrete Structure Performance in Marine Structures: Analyzing Durability Indexes to Obtain More Accurate Corrosion Initiation Time Predictions
title_full Reinforced Concrete Structure Performance in Marine Structures: Analyzing Durability Indexes to Obtain More Accurate Corrosion Initiation Time Predictions
title_fullStr Reinforced Concrete Structure Performance in Marine Structures: Analyzing Durability Indexes to Obtain More Accurate Corrosion Initiation Time Predictions
title_full_unstemmed Reinforced Concrete Structure Performance in Marine Structures: Analyzing Durability Indexes to Obtain More Accurate Corrosion Initiation Time Predictions
title_short Reinforced Concrete Structure Performance in Marine Structures: Analyzing Durability Indexes to Obtain More Accurate Corrosion Initiation Time Predictions
title_sort reinforced concrete structure performance in marine structures: analyzing durability indexes to obtain more accurate corrosion initiation time predictions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8708468/
https://www.ncbi.nlm.nih.gov/pubmed/34947256
http://dx.doi.org/10.3390/ma14247662
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