Assessing the Performance and Transport Properties of Concrete using Electrical Property Measurements

Author:

Suryanto Benny1,Kim Jaehwan2,McCarter William John1,Starrs Gerard1,Aitken Martin William1

Affiliation:

1. School of Energy, Geoscience, Infrastructure and Society, Heriot-Watt University, Edinburgh, Scotland, United Kingdom.

2. Sustainable Infrastructure Research Center, Korea Institute of Civil Engineering and Building Technology, Gyeonggi-do, Korea.

Publisher

Japan Concrete Institute

Subject

General Materials Science,Building and Construction

Reference138 articles.

1. 1) ACI Committee 222, (2001). “222R-01: Protection of metals in concrete against corrosion.” Technical Report for ACI Committee 222. Farmington Hills, Michigan, USA: American Concrete Institute, 1-41.

2. 2) Alaswad, G., Suryanto, B. and McCarter, W. J., (2018). “Moisture movement within concrete exposed to simulated hot arid/semi-arid conditions.” Proceedings of the Institution of Civil Engineers - Construction Materials, 171, 1-15.

3. 3) Alexander, M. G., Mackechnie, J. R. and Ballim, Y., (1999). “Research Monograph 2: Guide to the use of durability indexes for achieving durability in concrete structures [online].” Cape Town, South Africa. The University of Cape Town. Available from: <http://www.comsiru.uct.ac.za/sites/default/files/image_tool/images/333/Research/Downloads/Monograph_2_Nov_09.pdf> [Accessed 07 March 2020].

4. 4) Alexander, M. and Thomas, M., (2015). “Service life prediction and performance testing - Current developments and practical applications.” Cement and Concrete Research, 78, 155-164.

5. 5) Andrade, C., Prieto, M., Tanner, P., Tavares, F. and D’Andrea, R., (2013). “Testing and modelling chloride penetration into concrete.” Construction and Building Materials, 39, 9-18.

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