Corrosion Characteristics of Q370 qENH Weathering Bridge Steel
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-97-3397-2_34
Reference12 articles.
1. Alcántara J, Chico B, Díaz I, de la Fuente D, Morcillo M (2015) Airborne chloride deposit and its effect on marine atmospheric corrosion of mild steel. Corros Sci 97:74–88
2. de la Fuente D, Alcántara J, Chico B, Díaz I, Jiménez JA, Morcillo M (2016) Characterisation of rust surfaces formed on mild steel exposed to marine atmospheres using XRD and SEM/Micro-Raman techniques. Corros Sci 110:253–264
3. Fan Y, Liu W, Li S, Chowwanonthapunya T, Wongpat B, Zhao Y, Dong B, Zhang T, Li X (2020) Evolution of rust layers on carbon steel and weathering steel in high humidity and heat marine atmospheric corrosion. J Mater Sci & Technol, 39:190–199
4. Gkatzogiannis S, Weinert J, Engelhardt I, Knoedel P, Ummenhofer T (2019) Correlation of laboratory and real marine corrosion for the investigation of corrosion fatigue behaviour of steel components. Int J Fatigue 126:90–102
5. Guo X, Zhu J, Kang J, Duan M, Wang Y (2020) Rust layer adhesion capability and corrosion behavior of weathering steel under tension during initial stages of simulated marine atmospheric corrosion. Constr Build Mater 234:117393
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