Journal of Engineering and Applied Sciences

Year: 2018
Volume: 13
Issue: 11
Page No. 3965 - 3978

Evaluation of ACI Shear Provisions for Concrete Beams Without Web Reinforcement Using Stepwise Regression

Authors : MuhanedA. Shallal

References

Adebar, P. and M.P. Collins, 1996. Shear strength of members without transverse reinforcement. Can. J. Civ. Eng., 23: 30-41.
Direct Link  |  

Ahamad, S.H., Y. Xie and T. Yu, 1994. Shear strength of reinforced lightweight concrete beams of normal and high strength concrete. Mag. Concr. Res., 46: 57-66.
Direct Link  |  

Ahmad, S.H., A.R. Khaloo and A. Poveda, 1986. Shear capacity of reinforced high-strength concrete beams. J. Proc., 83: 297-305.
Direct Link  |  

Ahmad, S.H., F. Park and K. El-Dash, 1995. Web reinforcement effects on shear capacity of reinforced high-strength concrete beams. Mag. Concr. Res., 47: 227-233.
CrossRef  |  

Cladera, A. and A.R. Mari, 2005. Experimental study on high-strength concrete beams failing in shear. Eng. Struct., 27: 1519-1527.
CrossRef  |  

Collins, M.P. and D. Kuchma, 1999. How safe are our large, lightly reinforced concrete beams, slabs and footings?. Struct. J., 96: 482-490.
Direct Link  |  

Elzanaty, A.H., A.H. Nilson and F.O. Slate, 1986. Shear capacity of reinforced concrete beams using high-strength concrete. J. Proc., 83: 290-296.
Direct Link  |  

Fonteboa, G.B., 2002. [Concrete with recycled arid from demolitions: Dosages, properties, mechanics and structural behavior to cortante (In Spanish)]. MSc Thesis, Department of Construction Technology, University of A Coruna, A Coruna, Spain.

Islam, M.S., H.J. Pam and A.K.H. Kwan, 1998. Shear capacity of high-strength concrete beams with their point of inflection within the shear span. Proc. Inst. Civ. Eng. Struct. Build., 128: 91-99.
Direct Link  |  

Jin-Keun, K. and P. Yon-Dong, 1994. Shear strength of reinforced high strength concrete beam without web reinforcement. Mag. Concr. Res., 46: 7-16.
Direct Link  |  

Johnson, M.K. and J.A. Ramirez, 1989. Minimum shear reinforcement in beams with higher strength concrete. Struct. J., 86: 376-382.
Direct Link  |  

Kani, M.W., M.W. Huggins, G. Kani and R.R. Wittkopp, 1979. Kani on Shear in Reinforced Concrete. University of Toronto, Canada, Pages: 225.

Kulkarni, S.M. and S.P. Shah, 1998. Response of reinforced concrete beams at high strain rates. ACI. Struct. J., 95: 705-715.
Direct Link  |  

Morrow, J. and I.M. Viest, 1957. Shear strength of reinforced concrete frame members without web reinforcement. J. Proc., 53: 833-869.
Direct Link  |  

Mphonde, A.G. and G.C. Frantz, 1984. Shear tests of high-and low-strength concrete beams without stirrups. J. Proc., 81: 350-357.
Direct Link  |  

Salandra, M.A. and S.H. Ahmad, 1989. Shear capacity of reinforced lightweight high-strength concrete beams. Struct. J., 86: 697-704.
Direct Link  |  

Thorenfeldt, E. and G. Drangsholt, 1990. Shear capacity of reinforced high-strength concrete beams. Spec. Publ., 121: 129-154.
Direct Link  |  

Xie, Y., S.H. Ahmad, T. Yu, S. Hino and W. Chung, 1994. Shear ductility of reinforced concrete beams of normal and high-strength concrete. Struct. J., 91: 140-149.
Direct Link  |  

Yoon, Y.S., W.D. Cook and D. Mitchell, 1996. Minimum shear reinforcement in normal, medium, and high-strength concrete beams. ACI. Struct. J., 93: 576-584.
Direct Link  |  

Design and power by Medwell Web Development Team. © Medwell Publishing 2024 All Rights Reserved