Durability Requirements for Reinforced Concrete Structures Placed in a Hostile Tropical Coastal Environment

被引:0
|
作者
Valdes, Abel Castaneda [1 ]
Perez, Francisco Corvo [2 ]
Pech, Ildefonso Pech [2 ]
Aguila, Rigoberto Marrero [3 ]
Bastidas-Arteaga, Emilio [4 ]
机构
[1] Natl Ctr Sci Res, Environm Div, Mat Protect Lab, Havana, Cuba
[2] Autonomous Univ Campeche, Corros Res Ctr, San Francisco De Campech 24039, Campeche, Mexico
[3] Technol Univ Havana, Engn Chem Sch, Havana 19390, Cuba
[4] La Rochelle Univ, Lab Engn Sci Environm LaSIE, UMR CNRS 7356, Ave Michel Crepeau, F-17042 La Rochelle, France
关键词
durability requirements; service life; reinforced concrete; corrosivity categories; corrosion; chloride ingress; akaganeite; MARINE ATMOSPHERIC CORROSION; CHLORIDE-INDUCED CORROSION; SERVICE LIFE PREDICTION; MILD-STEEL; BETA-FEOOH; AKAGANEITE; INGRESS; TIME; SURFACE; REHABILITATION;
D O I
10.3390/buildings14082494
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
In this work, a series of durability requirements are proposed for the construction of long-service-life reinforced concrete (RC) structures in a coastal environment with extreme atmospheric corrosivity. RC specimens were exposed in a coastal outdoor site in Cuba for three years. Carbon steel corrosion evaluation revealed an annual average atmospheric corrosion rate over the maximum limit established (ISO 9223:2012) for extreme (CX) atmospheric corrosivity. The service life of the RC structures, considered as the sum of the time-to-corrosion-initiation and time-to-corrosion-induced concrete cracking, was determined as a function of durability requirements. The most important durability requirements to achieve a long service life (>70 years) in RC structures subjected to a CX corrosivity category were defined as follows: water/cement ratio, compressive strength, percentage of effective capillary porosity, and concrete cover thickness. Under these hostile environments, the expansion of the corrosion products formed on the reinforcement steel and the induced cracking of the concrete could be attributed partially to the formation of the akaganeite phase in reinforcement steel, which revealed a different morphology compared to the akaganeite typically formed in bare carbon steels.
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页数:24
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