References
- ACI Committee 363R-92 (1997), "State-of-the-art report on high-strength concrete", (ACI 363R-92), 55.
- ACI Committee 435 (1991), "States of the art report on control of two way slab deflections", ACI Struct. J., 88(4), 501-514.
- Al-Shaarbaf, I. (1990), "Three-dimensional non-linear finite element analysis of reinforced concrete beams in torsion", PhD Thesis, University of Bradford.
- Attard, M. M. and Stewart, M. G. (1998), "A two parameter stress block for high-strength concrete", ACI Struct. J., 95(3), 305-317.
- Bahn, B. Y. and Hsu, T. T. C. (2000), "Cyclically and biaxially loaded reinforced concrete slender columns", ACI Struct. J., 97(3), 444-454.
- Belakhdar, K. A. M. (2006), "Three dimensional nonlinear finite element analysis of high strength reinforced concrete slabs", M.Sc Thesis, Faculty of Graduate Studies, Jordan University of Science and Technology, Irbid, Jordan, 188.
- Cervera, M. and Hinton, E. (1986), "Nonlinear analysis of reinforced concrete plates and shells using a three dimensional modeling of reinforced concrete structures", Pineridge Press, Swansea, UK, 327-370.
- Chen, W. F. and Saleeb, A. F. (1982), "Constitive equations for engineering material", John Wiley & Sons, New York, V. 1, 580.
- Chung, W. and Ahmed, H. (1994), "Model for shear critical high strength concrete beams", ACI Struct. J., 91(1), 31-41.
- Crisfield, M. A. (1994), "Nonlinear finite element analysis of solids and structures", Department of Aeronautics, Imperial College of Science, Technology and Medicine, London, UK, John Wiley & Sons, v. 1, 345.
- Dahl, K. K. B. (1992), "Uniaxial stress-strain curves for normal and high strength concrete", ABK Report No.R282, Department of Structural Engineering, Technical University of Denemark.
- Deaton, J. B. (2005), "A finite element approach to reinforced concrete slab design", M.Sc Thesis, School of Civil and Environmental Engineering, Georgia Institute of Technology, 170.
- Fields, K. and Bischoff, P. (2004), "Tension stiffening and cracking of high-strength reinforced concrete tension members", ACI Struct. J., 101(4), 447-456.
- Figueiras, J. A. and Owen, R. J. (1984), "Nonlinear analysis of reinforced concrete shell structures", Proceedings of the International Conference on Computer Aided Analysis and Design of Concrete Structures, Yogoslavia.
- Foster, S. J., Budiono, B. and Gilbert, R. I. (1996), "Rotating Crack Finite Element Model For Reinforced Concrete Structures", Comput. Struct., 58(1), 43-50. https://doi.org/10.1016/0045-7949(95)00109-T
- Hussein, A. and Marzouk, H. (2000), "Behavior of high-strength concrete under biaxial stresses", ACI Mater. J., 97(1), 27-36.
- Jiang, J. and Mirza, F. (1997), "Nonlinear analysis of reinforced concrete slabs by discrete finite element approach", Comput. Struct., 65(4), 1667-1687.
- Kwak, H. G. and Filippou, F. C. (1990), "Finite element analysis of reinforced concrete structures under monotonic loads", Structure Engineering Mechanics and Materials,. Report No.USB/SEMM-90/14, Department of Civil Engineering, University of California, Berkely, 120.
- Marzouk, H. and Chen Z. (1993), Finite element analysis of high strength concrete slabs: ACI Struc. J., 90(5), 505-513.
- Marzouk, H. and Jiang, D. (1996), "Finite element evaluation of shear enhancement of high strength concrete plates", ACI Struct. J., 93(6), 667-673.
- Murray, K. A., Cleland, D. J. and Gilbert, S. (2005), "The development of non-linear numerical model to simulate the behaviour of reinforced concrete flat slabs in the vicinity of edge columns", Construct. Bldg. Mater., 19, 703-712. https://doi.org/10.1016/j.conbuildmat.2005.02.019
- Naji, J. H. (1989), "Non-linear finite element analysis of reinforced concrete panels and infilled frames under monotonic and cyclic loading", PhD Thesis, University of Bradford.
- Pang, X. B. and Hsu. T. T. C. (1996), "Fixed angle softened truss model for reinforced concrete", ACI Struct. J., 93(2), 197-207.
- Polak, M. A. (2005), "Ductility of reinforced concrete flat slab-column connections", Comput Aided Civ. Infrastruct. Eng., 20, 184-193. https://doi.org/10.1111/j.1467-8667.2005.00386.x
- Polak, M.A. (1998), "Modelling punching shear of reinforced concrete slabs using layered finite elements", ACI Struct. J., 95(1), 71-80.
- Reitman, M. and Yankelevsky, D. (1997), "A new simplified model for nonlinear RC slabs analysis", ACI Struct. J., 94(4), 399-408.
- Salim, W. and Sebastian, W. (2002), "Plasticity model for predicting punching shear strengths of reinforced concrete slabs", ACI Struc. J., 99(6), 827-835.
- Sam, C. and Lyer, P. K. (1995), "Nonlinear finite element analysis of reinforced concrete four pile caps", Comput. and Struct., 57(4), 605-622. https://doi.org/10.1016/0045-7949(95)00068-R
- Shanmugam, N. E., Kumar, G. and Thevendram, V. (2002), "Finite element modeling of double skin composite slabs", Fin. Elements in Anal. and Des., 38, 579-599. https://doi.org/10.1016/S0168-874X(01)00093-2
- Staller, D. (2000), "Analytical studies and numerical analysis of punching shear failure in reinforced concrete slabs", TRITA-BKN Bulletin, 57, 8.
- Thabet, A. and Haldane, D. (2000), "Three-dimensional simulation of nonlinear response of reinforced concrete members subjected to impact loading", ACI Struct. J., 97(5), 698-702.
- Tomaszewicz, A. (1993), "High-strength concrete", SP2 (Plates and Shells, Report 2.3, Punching Shear Capacity of Reinforced Concrete Slabs; Report No. STF70A93082): SINTEF, Trondheim, 36.
- Vainiunas, P., Popovas, V. and Vilnius, A. J. (2004), "Nonlinear FEA of RC floor slab-to-column joint connection", Theoretical Foundations of Civil engineering-XII, Ed. by W. Szczesninak, OW PW, Warsaw, 12.
- Vecchio, F. and Collins, M. (1986), "The modified compression field theory for reinforced concrete element subjected to shear", ACI J., 83(2), 219-231.
- Vecchio, F., Collins, M. and Aspiotis, J. (1994), "High strength concrete elements subjected to shear", ACI Struct. J., 91(4), 423-433.
- Vidosa, F., Kotsovos, M. and Pavlovic, M. (1988), "Symmetrical punching of reinforced concrete slabs: an analytical investigation based on NFE modelling", ACI Struct. J., 85(2), 241-250.
- Wang, T. and Hsu, T. C. C. (2001), "Nonlinear finite element analysis of concrete structures using new constitutive models", Comput. Struct., 79, 2781-2791. https://doi.org/10.1016/S0045-7949(01)00157-2
Cited by
- A 3D finite element model for reinforced concrete structures analysis vol.4, pp.4, 2011, https://doi.org/10.1590/S1983-41952011000400002
- Finite element analysis of initially damaged beams repaired with FRP plates vol.134, 2015, https://doi.org/10.1016/j.compstruct.2015.07.124
- Strength capacity of simply supported circular concrete slab vol.44, pp.5, 2013, https://doi.org/10.1002/mawe.201300145
- A tension stiffening model for analysis of RC flexural members under service load vol.17, pp.1, 2016, https://doi.org/10.12989/cac.2016.17.1.029
- Nonlinear analysis of concrete shells including effects of normal and transverse shear stresses vol.45, pp.4, 2014, https://doi.org/10.1002/mawe.201400225
- Static And Dynamic Characteristics Of Waste Ceramic Aggregate Fibre Reinforced Concrete vol.15, pp.2, 2015, https://doi.org/10.1515/tvsb-2015-0005
- Non-linear finite element analysis of reinforced concrete members and punching shear strength of HSC slabs vol.149, pp.2261-236X, 2018, https://doi.org/10.1051/matecconf/201714902056
- Non-linear finite element analysis of reinforced concrete members and punching shear strength of HSC slabs vol.149, pp.2261-236X, 2018, https://doi.org/10.1051/matecconf/201814902056
- Elucidating the mechanical behavior of ultra-high-strength concrete under repeated impact loading vol.37, pp.1, 2007, https://doi.org/10.12989/sem.2011.37.1.001
- Finite element investigation of the joints in precast concrete pavement vol.21, pp.5, 2007, https://doi.org/10.12989/cac.2018.21.5.547