References
- ACI Committee 318 (2008), Building code requirements for structural concrete (ACI 318-08) and commentary, American Concrete Intitute, Farmington Hills, Mich.
- Bentz, E.C. (2005), "Empirical modeling of reinforced concrete shear strength size effect for members without stirrups", ACI Struct. J., 102(2), 232-241.
- Chen, H.J., Yang, T.Y. and Tang, C.W. (2009), "Strength and durability of concrete in hot spring environments", Comput. Concrete, 6(4), 269-280. https://doi.org/10.12989/cac.2009.6.4.269
- Cho, S.H. (2003), "Shear strength prediction by modified plasticity theory for short beams", ACI Struct. J., 100(1), 105-112.
- Choi, K.K., Park, H.G. and Wight, J.K. (2007), "Unified shear strength model for reinforced concrete beams-Part I: Development", ACI Struct. J., 104(2), 142-152.
- ENV 1992-1-1: Eurocode No. 2. (1991), Design of concrete structures- Part 1: General rules and rules for building, Commission of the European Communities.
- Hassan, A.A.A., Hossain, K.M.A. and Lachemi, M. (2008), "Behavior of full-scale self-consolidating concrete beams in shear", Cement Concrete Comp., 30(7), 588-596. https://doi.org/10.1016/j.cemconcomp.2008.03.005
- Mehta, P.K. and Monteiro, P.J.M. (2006), Concrete: Microstructure, properties, and materials (International Editions 2006), McGraw-Hill Education (Asia), Taiwan.
- Park, R. and Paulay, T. (1975), Reinforced concrete structures, John Wiley & Sons.
- Somayaji, S. (2001), Civil engineering materials, Prentice Hall, Upper Siddle River, New Jersey.
- Tang, C.W., Yen, T. and Chen, H.J. (2009), "Shear behavior of reinforced concrete beams made with sedimentary lightweight aggregate without shear reinforcement", J. Mater. Civil Eng.-ASCE, 21(12), 730-739. https://doi.org/10.1061/(ASCE)0899-1561(2009)21:12(730)
- Tang, C.W. (2010), "Hydration properties of cement pastes containing high-volume mineral admixtures", Comput. Concrete, 7(1), 17-38. https://doi.org/10.12989/cac.2010.7.1.017
- Taylor, H.P.J. (1972), "Shear strength of large beams", J. Struct. Div.-ASCE, 98(11), 2473-2490.
- Rebeiz, K.S. (1999), "Shear strength prediction for concrete members", J. Struct. Eng.-ASCE, 125(3), 301-308. https://doi.org/10.1061/(ASCE)0733-9445(1999)125:3(301)
- Russell, H.G. (1999), "ACI defines high performance concrete", Concrete Int., 21(2), 56-57.
- Russo, G., Somma, G. and Mitri, D. (2005), "Shear strength analysis and prediction for reinforced concrete beams without shear stirrups", J. Struct. Eng.-ASCE, 131(1), 66-74. https://doi.org/10.1061/(ASCE)0733-9445(2005)131:1(66)
- Zarais, P.D. and Papadakis, G.C. (2001), "Diagonal shear failure and size effect in RC beams without web reinforcement", J. Struct. Eng.-ASCE, 127(7), 733-742. https://doi.org/10.1061/(ASCE)0733-9445(2001)127:7(733)
- Zararis, P.D. (2003), "Shear strength and minimum shear reinforcement of reinforced concrete slender beams", ACI Struct. J., 100(2), 203-214.
- Zsutty, T.C. (1971), "Shear strength prediction for separate categories of simple beam test", ACI J., 68(2), 138-143.