Static and Fatigue Test on Real Steel Bridge Components Deteriorated by Corrosion
Author:
Funder
COST CZ (LD) project of the Ministry of Education, Youth and Sport LD
Publisher
Springer Science and Business Media LLC
Subject
Civil and Structural Engineering
Link
http://link.springer.com/article/10.1007/s13296-018-0099-6/fulltext.html
Reference25 articles.
1. Beaulieu, L. V., Legeron, F., & Langlois, S. (2010). Compression strength of corroded steel angle members. Journal of Constructional Steel Research, 66(11), 1366–1373.
2. Chen, Y., Li, X., Chai, Y. H., & Zhou, J. (2010). Assessment of the flexural capacity of corroded steel pipes. International Journal of Pressure Vessels and Piping, 87(2), 100–110.
3. ČSN EN ISO 13822. (2005). Bases for design of structures—assessment of existing structures, CNI Praha.
4. Di Battista, J. D., Adamson, D. E., & Kulak, G. L. (1998). Fatigue strength of riveted connections. Journal of Structural Engineering, 124(7), 792–797.
5. Feldmann, M., Heinemeyer, C., & Hinrichs, H. (2008). Zum Einfluss der Nietkopfabrostung auf die Nietvorspannung und Dauerhaftigkeit alter Stahlkonstruktionen. Bautechnik, 85(2), 93–102.
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