Climent, M.-Á.; Miró, M.; Eiras, J.-N.; Poveda, P.; de Vera, G.; Segovia, E.-G.; Ramis, J.
Early Detection of Corrosion-Induced Concrete Micro-cracking by Using Nonlinear Ultrasonic Techniques: Possible Influence of Mass Transport Processes. Corros. Mater. Degrad. 2022, 3, 235-257.
https://doi.org/10.3390/cmd3020014
AMA Style
Climent M-Á, Miró M, Eiras J-N, Poveda P, de Vera G, Segovia E-G, Ramis J.
Early Detection of Corrosion-Induced Concrete Micro-cracking by Using Nonlinear Ultrasonic Techniques: Possible Influence of Mass Transport Processes. Corrosion and Materials Degradation. 2022; 3(2):235-257.
https://doi.org/10.3390/cmd3020014
Chicago/Turabian Style
Climent, Miguel-Ángel, Marina Miró, Jesús-Nuño Eiras, Pedro Poveda, Guillem de Vera, Enrique-Gonzalo Segovia, and Jaime Ramis.
2022. "Early Detection of Corrosion-Induced Concrete Micro-cracking by Using Nonlinear Ultrasonic Techniques: Possible Influence of Mass Transport Processes" Corrosion and Materials Degradation 3, no. 2: 235-257.
https://doi.org/10.3390/cmd3020014
APA Style
Climent, M.-Á., Miró, M., Eiras, J.-N., Poveda, P., de Vera, G., Segovia, E.-G., & Ramis, J.
(2022). Early Detection of Corrosion-Induced Concrete Micro-cracking by Using Nonlinear Ultrasonic Techniques: Possible Influence of Mass Transport Processes. Corrosion and Materials Degradation, 3(2), 235-257.
https://doi.org/10.3390/cmd3020014