Indicador de corrosión del acero embebido en concreto frente a ambientes con presencia de contaminación de cloruros
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2026
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Universidad Católica Santo Toribio de Mogrovejo
Resumen
En esta investigación se interpretó el comportamiento electroquímico de aceros embebidos en concreto frente a la exposición de ambientes como lo son intemperie marina, agua de mar, arena y agua contaminadas al 3.5% con NaCl y en agua contaminada al 3.5% con NaCl con periodos de secado. Se cuenta con dos grupos de especímenes por ambiente, pues se emplearon dos tipos de cemento, que a su vez tienen embebidos dos grupos de acero, el grupo B conformado por dos de las más reconocidas en Perú y el A por otras dos presentes en el mercado peruano. La mezcla fue diseñada para un f’c=215 kg/cm2 siguiendo el modelo ACI 211. Los especímenes pasada la etapa de curado fueron expuestos a los ambientes contaminados para proceder a realizar mediciones electroquímicas cada 5 días en 140 días de exposición, las mismas que se interpretaron conforme a lo dispuesto por la norma ASTM C876, obteniendo que el acero embebido en concreto se corroe con mayor facilidad en exposición a agua contaminada al 3.5% con NaCl con periodos de secado. Además, la utilización del cemento tipo V para el concreto en cuanto a la corrosión de aceros embebidos en él propicia la protección de su capa pasiva. En cuanto a los grupos de acero, el A presentó el mejor desempeño a la exposición de los ambientes evaluados.
In this research, the electrochemical behavior of steel embedded in concrete was interpreted when exposed to environments such as marine weather, sea water, sand and water contaminated at 3.5% with NaCl and in water contaminated at 3.5% with NaCl with periods of drying. There are two groups of specimens per environment, since two types of cement were used, which in turn have embedded two groups of steel, group B made up of two of the most recognized in Peru and group A made up of two others present in the Peruvian market. The mixture was designed for a f'c=215 kg/cm2 following the ACI 211 model. The specimens after the curing stage were exposed to contaminated environments to proceed with electrochemical measurements every 5 days in 140 days of exposure, the same which were interpreted in accordance with the provisions of the ASTM C876 standard, obtaining that the steel embedded in concrete corrodes more easily when exposed to water contaminated at 3.5% with NaCl with drying periods. Furthermore, the use of type V cement for concrete in terms of corrosion of steel embedded in it promotes the protection of its passive layer. Regarding the steel groups, A presented the best performance when exposed to the evaluated environments.
In this research, the electrochemical behavior of steel embedded in concrete was interpreted when exposed to environments such as marine weather, sea water, sand and water contaminated at 3.5% with NaCl and in water contaminated at 3.5% with NaCl with periods of drying. There are two groups of specimens per environment, since two types of cement were used, which in turn have embedded two groups of steel, group B made up of two of the most recognized in Peru and group A made up of two others present in the Peruvian market. The mixture was designed for a f'c=215 kg/cm2 following the ACI 211 model. The specimens after the curing stage were exposed to contaminated environments to proceed with electrochemical measurements every 5 days in 140 days of exposure, the same which were interpreted in accordance with the provisions of the ASTM C876 standard, obtaining that the steel embedded in concrete corrodes more easily when exposed to water contaminated at 3.5% with NaCl with drying periods. Furthermore, the use of type V cement for concrete in terms of corrosion of steel embedded in it promotes the protection of its passive layer. Regarding the steel groups, A presented the best performance when exposed to the evaluated environments.
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Corrosión de materiales, Tecnología del hormigón, Ingeniería de materiales, Corrosion of materials, Concrete technology, Materials engineering
Citación
S. Saldaña, “Indicador de corrosión del acero embebido en concreto frente a ambientes con presencia de contaminación de cloruros,” tesis de licenciatura, Fac. de Ingeniería, Univ. USAT, Chiclayo, Perú, 2026. [En línea]. Disponible en: https://hdl.handle.net/20.500.12423/10179
