Corrosion of Reinforced Concrete Structures: Mechanism, Monitoring, Control and Beyond
Corrosion of Reinforced Concrete Structures: Mechanism, Monitoring, Control and Beyond
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Corrosion of Reinforced Concrete Structures: Mechanism, Monitoring and Control is a comprehensive guide to corrosion, monitoring, and prevention in reinforced concrete structures. It considers the essential mechanisms of corrosion, provides key monitoring techniques, and highlights strategies to keep corrosion from becoming a serious threat.
Format: Paperback / softback
Length: 264 pages
Publication date: 02 March 2023
Publisher: Elsevier Science Publishing Co Inc
Corrosion of Reinforced Concrete Structures: Mechanism, Monitoring, and Control is a comprehensive guide to corrosion, monitoring, and prevention in reinforced concrete structures. It delves into the essential mechanisms of corrosion, highlighting key monitoring techniques and effective control measures. The book also explores the establishment of a cyber-physical protection system to mitigate the threat posed by corrosion, which is a significant factor in the deterioration of civil engineering structures worldwide. With concrete being the most utilized manufactured material, this book underscores strategies to prevent corrosion from becoming a severe concern.
Corrosion is a complex phenomenon that affects reinforced concrete structures, leading to their degradation and reduced lifespan. Reinforced concrete is a composite material composed of concrete, steel reinforcement, and other additives, making it susceptible to various environmental factors such as moisture, temperature, and chemical agents. The corrosion process begins with the formation of an electrolyte layer on the surface of the reinforced concrete, which allows for the flow of electrical current. This current can lead to the breakdown of the concrete, resulting in the formation of cracks, spalling, and eventually the complete destruction of the structure.
Monitoring and control of corrosion in reinforced concrete structures are essential to ensure their safety and longevity. Several monitoring techniques can be used to detect and assess the extent of corrosion, including visual inspection, electrochemical testing, and non-destructive testing methods such as ultrasound and X-ray fluorescence. Visual inspection involves examining the structure for signs of corrosion, such as pitting, cracking, or discoloration. Electrochemical testing involves measuring the electrical potential of the reinforced concrete and analyzing the resulting data to determine the level of corrosion. Non-destructive testing methods, such as ultrasound and X-ray fluorescence, can be used to detect and locate areas of corrosion without causing damage to the structure.
Once the extent of corrosion has been determined, effective control measures can be implemented to prevent further damage. These measures may include the use of protective coatings, such as epoxy or polyurethane, to seal the surface of the reinforced concrete and prevent the formation of an electrolyte layer. In addition, proper maintenance and cleaning practices can be implemented to remove any debris or contaminants that may contribute to corrosion.
In conclusion, Corrosion of Reinforced Concrete Structures: Mechanism, Monitoring, and Control is a valuable resource for engineers, researchers, and practitioners involved in the design, construction, and maintenance of reinforced concrete structures. The book provides a comprehensive understanding of the corrosion process, key monitoring techniques, and effective control measures, enabling professionals to ensure the safety and longevity of reinforced concrete structures in a wide range of applications.
Weight: 432g
Dimension: 227 x 151 x 16 (mm)
ISBN-13: 9780128195482
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