References
- AASHTO (2010). LRFD Bridge Construction Specifications, 3rd Edition, American Association of State Highway and Transportation Officials.
- Aitcin, P., Ballivy, G., and Parizeau, R. (1984). The use of condensed silica fume in grouts, Innovative Cement Grouting, SP-83, J. P. Welsh, ed., American Concrete Institute, Farmington Hills, Mich., 1-18.
- Aoki, C., Taniguchi T., Tsuji, Y., and Ikeda, M. (2006). Fresh behaviors and strength of PC grout with variable replacement ratios of slag powder, Proceedings of the Japan Concrete Institute, 28(1), 179-184 [in Japanese].
- BS EN 445 (2007). Grout for Prestressing Tendons-Test Method, British Standards Institution, BSI, London.
- Diederichs, U., and Schutt, K. (1996). Silica fume modified grouts for corrosion protection of post-tensioning tendons," Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete, Proceedings of the Third International Conference, Trondheim, Norway, SP-114, V. M. Malhotra, ed., American Concrete Institute, Farmington Hills, Mich., 1173-1195.
- FDOT (2001). Mid-Bay bridge post-tensioning evaluation. Final Report, Corven Engineering, Inc., Florida Department of Transportation, Tallahassee, FL, USA.
- FIB (2002). Grouting of tendons in prestressed concrete, International Federation for Structural Concrete, FIB bulletin 20.
- Fujimoto, K., Tsuji, Y., Ikeda M., and Taniguti, T. (2004). Fresh and strength behaviors for PC using blast furnace slag powder, Proceedings of the Japan Concrete Institute, 26(1), 129-134 [in Japanese].
- Korea Institute of Construction Technology(KICT) (2013). Development of void zero grouting technologies for prestressed concrete bridges, KICT 2013-219.
- Lee, H.H., and Kwon, S.J. (2013). Evaluation of Chloride Penetration in Concrete with Ground Granulated Blast Furnace Slag considering Fineness and Replacement Ratio, Journal of the Korean Recycled Construction Resource Institute, 1(1), 26-34. https://doi.org/10.14190/JRCR.2013.1.1.026
- Lee, J.K., Choi, J.H., Yoon, J.S., and Cho, I.S. (2010). Study on material segregation of grout and filling characteristics of grouting for post-tensioned concrete beam, Journal of the Korea Concrete Institute, 22(3), 419-426. https://doi.org/10.4334/JKCI.2010.22.3.419
- Mirza V., Saleh K., Roy V., and Mirza M.S. (1997). Use of high volume fly ash in grouting applications. In: Proceedings of 3rd CANMET/ACI international conference on high-performance concrete: design and materials and recent advances in concrete technology, SP-172, 281-298.
- Post-Tensioning Institute(PTI) (2013). Specification for grouting of post-tensioned structures, 3rd edition, PTI M55.1-12.
- Ranish, E. H., Rostasy, F. S., and Herschelmann, F. (1996). Properties of cement grouts with silica fume addition for the injection of post-tensioning ducts, Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete, Proceedings of the Third International Conference, Trondheim, Norway, SP-114, V. M. Malhotra, ed., American Concrete Institute, Farmington Hills, Mich. 1159-1171.
- Ryu, G.S., Koh, K.T., and Lee, J.H. (2013). Strength Development and Durability of Geopolymer Mortar Using the Combined Fly ash and Blast-Furnace Slag, Journal of the Korean Recycled Construction Resource Institute, 1(1), 35-41. https://doi.org/10.14190/JRCR.2013.1.1.035
- Schokker, A.J., Breen, J.E., and Kreger, M.H. (2001). Grouts for bonded post-tensioning in corrosive environments, ACI Materials Journal, 98(4), 296-305.
- Schokker, A.J. (1999). Improving Corrosion Resistance of Post-Tensioned Substructures Emphaszing High Performance Grouts, Doctor of Philosophy, The University of Texas at Austin.
- Sonebi, M. (2010). Optimization of cement grouts containing silica Fume and viscosity modifying admixture, ASCE Materials Journal in Civil Engineering, 22(4), 332-342. https://doi.org/10.1061/(ASCE)MT.1943-5533.0000026
- Trejo, D., Hueste, M. B. D., Gardoni, P., and Pillai, R. G. (2009), Effect of voids in grouted, post-tensioned concrete bridge construction, FHWA/TX-09/0-4588-1.
- TRRL (1987). Seventh Report of the Committee for the two years ending July 1987. EA/88/4, Standing Committee on Structural Safety, Transport and Road Research Laboratory, UK.
- Yamaguchi, H., Lee, H., and Tsuji, Y. (2009). Manufacture of PC grout reduced chloride ion by the combination of blast furnace slag, Proceedings of the Japan Concrete Institute, 31(1), 769-774.
Cited by
- Effects of Diameter of Cylinder and the Number of Strand on the Bleeding of Cement Paste vol.4, pp.1, 2016, https://doi.org/10.14190/JRCR.2016.4.1.038