Stray Current-Induced Development of Cement-Based Microstructure in Water-Submerged, Ca(OH)2-Submerged and Sealed Conditions
Author:
Affiliation:
1. Faculty of Civil Engineering and Geosciences, Materials and Environment, Delft University of Technology, Delft, The Netherlands.
2. The Electronic and Mechanical Support Division (DEMO), Delft University of Technology, Delft, The Netherlands.
Publisher
Japan Concrete Institute
Subject
General Materials Science,Building and Construction
Link
https://www.jstage.jst.go.jp/article/jact/15/6/15_244/_pdf
Reference68 articles.
1. 1) Alonso, C., Castellote, M., Llorente, I. and Andrade, C., (2006). “Ground water leaching resistance of high and ultrahigh performance concretes in relation to the testing convection regime.” Cement and Concrete Research, 36, 1583-1594.
2. 2) Aylott, P. J., Cotton, I. and Charalambous, C. A., (2013). “Impact and management of stray current on DC rail systems.” CHAPCIS Intertek, United Kingdom.
3. 3) Babaahmadi, A., Tang, L., Abbas, Z., Zack, T. and Martensson, P., (2015). “Development of an electro-chemical accelerated ageing method for leaching of calcium from cementitious materials.” Materials and Structures, 49(1), 705-718.
4. 4) Bediako, M., Kevern, J. T. and Amankwah, E. O., (2015). “Effect of curing environment on the strength properties of cement and cement extenders.” Materials Sciences and Applications, 6, 33-39.
5. 5) Bertolini, L., Carsana, M. and Pedeferri, P., (2007). “Corrosion behaviour of steel in concrete in the presence of stray current.” Corrosion Science, 49, 1056-1068.
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