High-Temperature Effect on the Physical and Dynamic Compressive Properties of Pre-Stressed Cement Mortar
Author:
Affiliation:
1. School of Resources and Safety Engineering, Central South University, Changsha 410083, PR China.
Publisher
Japan Concrete Institute
Subject
General Materials Science,Building and Construction
Link
https://www.jstage.jst.go.jp/article/jact/17/5/17_232/_pdf
Reference25 articles.
1. 1) Ahn, Y. B., Jang, J. G. and Lee, H. K., (2016). “Mechanical properties of lightweight concrete made with coal ashes after exposure to elevated temperatures.” Cement and Concrete Composites, 72, 27-38.
2. 2) Černý, R., Totová, M., Poděbradská, J., Toman, J., Drchalová, J. and Rovnaníková, P., (2003). “Thermal and hygric properties of Portland cement mortar after high-temperature exposure combined with compressive stress.” Cement and Concrete Research, 33(9), 1347-1355.
3. 3) Demirel, B. and Keleştemur, O., (2010). “Effect of elevated temperature on the mechanical properties of concrete produced with finely ground pumice and silica fume.” Fire Safety Journal, 45(6-8), 385-391.
4. 4) Fu, Q., Xie, Y. J., Long, G. C., Niu, D. T., Song, H. and Liu, X. G., (2017). “Impact characterization and modelling of cement and asphalt mortar based on SHPB experiments.” International Journal of Impact Engineeringl, 106, 44-52.
5. 5) Georgali, B. and Tsakiridis, P. E., (2005). “Microstructure of fire-damaged concrete: A case study.” Cement and Concrete Composites, 27(2), 255-259.
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