Civil Engineering Reference
In-Depth Information
10. Kosmatka, S.H. and Panarese, W.C., Design and Control of Concrete Mixtures.
Skokie, IL: Portland Cement Association, 1988, 66-67.
11. Hester, W.T., High-range water-reducing admixtures in precast applications .
PCI Journal , 1978, July- August :68-85.
12. Hutchison, R.G., Chang, J.T., et al., Thermal acceleration of Portland-cement
mortars with microwave-energy . Cement and Concrete Research , 1991,
21 (5):795-799.
13. Bella, G.D., S. Lai, and M. Pinna, Microwaves for the peraccelerated curing
of concretes. Betonwerk und Fertigteil-Technik/Concrete Precasting Plant and
Technology , 1994, 60 (12):87-93.
14. Leung, C.K.Y. and Pheeraphan, T., Very high early strength of microwave
cured concrete . Cement and Concrete Research , 1995, 25 (1):136-146.
15. Leung, C.K.Y. and Pheeraphan, T., Determination of optimal process for micro-
wave curing of concrete . Cement and Concrete Research , 1997, 27 (3):463-472.
16. Mak, S.L., Microwave accelerated processing for precast concrete produc-
tion. In Proceedings of the 4th CANMET/ACI International Conference on
Durability of Concrete, Sydney, Australia, August 17-22, 1997, pp. 709-720.
17. Mak, S.L., Accelerated heating of concrete with microwave curing. In
Proceedings of the 4th CANMET/ACI/JCI International Conference on
Recent Advances in Concrete Technology, Tokushima, Japan, June 7-11, 1998,
pp. 531-542.
18. Sohn, D.G. and Johnson, D.L., Microwave curing effects on the 28-day
strength of cementitious materials . Cement and Concrete Research , 1999,
29 (2):241-247.
19. Mak, S.L., Banks, R.W., et al., Advances in microwave curing of concrete. In
Fourth World Congress on Microwave and Radio Frequency Applications,
Sydney, Australia, September 22-26, 2002. Available at HYPERLINK “https://
publications.csiro.au/rpr/pub?list=BRO&pid=procite:76309505-ab72-4edb-
a473-dacba4229de8” https://publications.csiro.au/rpr/pub?list=BRO&pid=
procite:76309505-ab72-4edb-a473-dacba4229de8
20. Lee, M.G., Preliminary study for strength and freeze-thaw durability of micro-
wave- and steam-cured concrete . Journal of Materials in Civil Engineering ,
2007, 19 (11):972-976.
21. Rattanadecho, P., Suwannapum, N., et al., Development of compressive strength
of cement paste under accelerated curing by using a continuous microwave
thermal processor . Materials Science and Engineering , 2008. 427 :299-307.
22. Makul, N., Agrawal, D.K., and Chatveera, B., Microstructures and mechani-
cal properties of Portland cement at an early age when subjected to micro-
wave accelerated- curing . Journal of Ceramic Processing Research , 2011,
12 (1):62-69.
23. Powers, T.C., Structure and physical properties of hardened portland cement
paste. Journal of the American Ceramic Society , 1958, 41 (1):1-6.
24. Powers, T.C., Absorption of water by Portland cement paste during the hard-
ening process . Industrial and Engineering Chemistry , 1935, 27 :790-794.
Search WWH ::




Custom Search