Performance evaluation of self-compacting concrete containing volcanic ash and recycled coarse aggregates

Author:

Chakkamalayath Jayasree,Joseph Antony,Al-Baghli Hussain,Hamadah Omar,Dashti Danah,Abdulmalek Noura

Funder

Kuwait Institute for Scientific Research

Publisher

Springer Science and Business Media LLC

Subject

Civil and Structural Engineering

Reference42 articles.

1. AASHTO TP95-2014. (2014). Standard method of test surface resistivity indication of concrete’s ability to resist chloride ion penetration. Washington: American Association of State Highway and Transportation Officials (AASHTO).

2. Al-Bahar, S., Chakkamalayath, J., Joseph, A., Abdulsalam, M., Al-Otaibi, S., & Al-Aibani, A. (2017). Effect of volcanic ash incorporation on the mechanical properties and surface morphology of hydrated cement paste. ASCE Journal of Materials in Civil Engineering,29, 1943–5533.

3. Alexander, M. G., & Beushausen, H. (2009). Performance-based durability testing, design and specification in south africa: latest developments. In M. C. Limbachiya & H. Y. Kew (Eds.), Excellence in concrete construction through innovation (pp. 429–434). London: Taylor and Francis Group.

4. Alexander, M. G., & Magee, B. J. (1999). Durability performance of concrete containing condensed silica fume. Cement and Concrete Research,29, 917–922.

5. Al-Fadala, S., Chakkamalayath, J., Al-Bahar, S., Al-Aibani, A., & Ahmed, S. (2017). Significance of performance based specifications in the qualification and characterization of blended cement using volcanic ash. Construction and Building Materials,144, 532–540.

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