| Literature DB >> 30881196 |
Hayder M Oleiwi1,2, Yu Wang1, Michele Curioni3, Xianyi Chen4, Guowen Yao5, Levingshan Augusthus-Nelson1, A H Ragazzon-Smith6, Igor Shabalin1.
Abstract
Cathodic protection (CP) is being increasingly used on reinforced concrete structures to protect steel reinforcing bars from corrosion in aggressive conditions. Due to the complexity of environmental conditions, the design specifications in national and international standards are still open to discussion to achieve both sufficient and efficient protection for reinforced concrete structures in engineering practices. This paper reports an experimental research to investigate the influence of chloride content on concrete resistivity, rebar corrosion rate and the performance of CP operation using different current densities. It aims to understand the correlation between the chloride content and concrete resistivity together with the CP current requirement, and to investigate the precision of the CP design criteria in standards.Entities:
Keywords: CP design criteria; Cathodic protection; Concrete resistivity; Reinforcement corrosion
Year: 2018 PMID: 30881196 PMCID: PMC6394418 DOI: 10.1617/s11527-018-1273-1
Source DB: PubMed Journal: Mater Struct ISSN: 1359-5997 Impact factor: 3.428
Fig. 1The configuration and dimension of the reinforced concrete specimens
Fig. 2Illustration of concrete specimens used for electrical resistivity measurements
Fig. 3Experimental scheme for reinforced specimens under CP
Chloride content, reinforcement corrosion rate and concrete resistivity
| Added NaCl % cement weight | 0 | 1 | 2 | 3.5 | 5 |
| Measured total Cl− % cement weight | 0 | 0.814 | 1.425 | 2.258 | 3.301 |
| Concrete resistivity kΩ cm | 18.4 | 15.9 | 12.4 | 10.1 | 7.7 |
Fig. 4Reinforcement corrosion rate versus chloride contents and concrete resistivity
Fig. 5Reinforcement instant-off potential versus CP operation time
Fig. 624-h instant-off potential versus CP current density at different chloride contents
Fig. 7Reinforcement depolarization versus CP current density (the horizontal solid line for the criterion of 100 mV and the dash line for 50 mV)
Fig. 8Reinforcement depolarization versus CP current density and 24-h CP instant-off potential (the horizontal solid line for 100 mV potential decay and the dash line for 50 mV while the vertical solid line for − 500 mV instant-off potential)
Fig. 9The required CP current density for different depolarization versus the initial corrosion rate of reinforcements
Fig. 10The required CP current density for the 100 mV and 50 mV depolarization versus chloride content and concrete resistivity (the horizontal lines indicate no CP current)
Fig. 11The required 24-h CP instant-off potential for the 100 mV and 50 mV depolarization (4-h decay potential) versus chloride content and concrete resistivity (the horizontal lines indicate − 500 mV instant-off potential)