References
- American Concrete Institute ACI Committee. (2007). Selfconsolidating concrete ACI 237R-07. Farmington Hills, MI: American Concrete Institute.
- Bendert, D. A., & Burgueno, R. (2006a). Report on the experimental evaluation of prestressed box beams for SCC demonstration bridge. Research Report CEE-RR-2006-01, Department of Civil and Environmental Engineering, Michigan State University, East Lansing, MI.
- Bendert, D. A., & Burgueno, R. (2006b). Report on the production of prestressed box beams for SCC demonstration bridge. Research Report CEE-RR-2006-02, Department of Civil and Environmental Engineering, Michigan State University, East Lansing, MI.
- Burgueno, R., & Till, R. (2005). Special provision for production of prestressed beams with self-consolidating concrete. Internal Report, Michigan Department of Transportation, Lansing, MI.
- Choulli, Y. & Mari, A. R. (2005). Shear Behaviour of full scale prestressed I beams made with Self Compacting Concrete: Proceedings Second North American Conference on the Design and Use of Self-Consolidating Concrete and the Fourth International RILEM Symposium on Self-Compacting Concrete (CD-ROM). Chicago, IL.
- Collins, M. P., & Kuchma, D. (1999). How safe are our large, lightly reinforced concrete beams, slabs, and footings? ACI Structural Journal, 96(4), 482-490.
- Daczko, J., & Vachon, M. (2006). "Self consolidating concrete (SCC), significance of tests and properties of concrete and concrete-making materials," STP 169D (pp. 637-645). West Conshohocken, PA: ASTM International.
- Das, D., Kaushik, S. K., Gupta, V. K. (2005). Shear resistance of self-compacting concrete: Proceedings Second North American Conference on the Design and Use of Self- Consolidating Concrete and the Fourth International RILEM Symposium on Self-Compacting Concrete (CDROM). Chicago, IL.
- Dymond, BZ. (2007). Shear strength of A PCBT-53 girder fabricated with lightweight, self-consolidating concrete. MS Thesis, Virginia Tech, Blacksburg, VA.
- Dymond, BZ., Roberts-Wollmann, CL., & Cousins, T. E. (2009). Shear strength of a PCBT-53 girder fabricated with lightweight, self-consolidating concrete. Rep. No. 09- CR11, Virginia Transportation Research Council (VTRC): Charlottesville, VA.
- Dymond, B. Z., Roberts-Wollmann, C. L., & Cousins, T. E. (2010). Shear strength of a lightweight self-consolidating concrete bridge girder. Journal of Bridge Engineering ASCE, 15(5), 615-618. https://doi.org/10.1061/(ASCE)BE.1943-5592.0000096
- Hassan, A. A. A., Hossain, K. M. A., & Lachemi, M. (2008). Behavior of full-scale self-consolidating concrete beams in shear. Cement and Concrete Composites, 30(7), 588-596. https://doi.org/10.1016/j.cemconcomp.2008.03.005
- Hassan, A. A. A., Hossain, K. M. A., & Lachemi, M. (2010). Strength, cracking and deflection performance of largescale self-consolidating concrete beams subjected to shear failure. Engineering Structures, 32(5), 1262-1271. https://doi.org/10.1016/j.engstruct.2010.01.002
- Okamura, H. (1997). Self-compacting high-performance concrete, Concrete International, pp. 50-54.
- Ozawa, K., Maekawa, K., Kunishima, M., & Okamura, H. (1989). Development of high performance concrete based on the durability design of concrete structures: Proceedings of the Second East-Asia and Pacific Conference on Structural Engineering and Construction (EASEC-2). Vol. 1, pp. 445-450.
- Reineck, K. H., Kuchma, D. A., Kim, K. S., & Marx, S. (2003). Shear database for reinforced concrete members without shear reinforcement. ACI Structural Journal, 100(2), 240- 249.
- Taylor, H. P. J. (1970). Investigation of the forces carried across cracks in reinforced concrete beams in shear by interlock of aggregate. Cement and Concrete Association, London, Technical report 42.447.
- Taylor, H. P. J. (1972). Shear strength of large beams. Journal of the Structural Division ASCE, 98(ST11), 2473-2489.
- Taylor, H. P. J. (1974). The fundamental behavior of reinforced concrete beams in bending and shear American Concrete Institute, Shear in Reinforced Concrete, SP-42, pp. 43-77.
- Vecchio, F. J., & Collin, M. P. (1986). The modified compression field theory for reinforced concrete elements subjected to shear. ACI Structural Journal, 83(2), 219-223.
- Wilson, N. D., Kiousis, P. (2005) High-strength SCC in shear: Proceedings Second North American Conference on the Design and Use of Self-Consolidating Concrete and the Fourth International RILEM Symposium on Self-Compacting Concrete. Chicago, IL.
Cited by
- Shear strength of self‐compacting concrete beams with small stirrups ratios vol.17, pp.1, 2013, https://doi.org/10.1002/suco.201400084
- Shear strength of slender SCC beams - possible differences from VC beams vol.10, pp.4, 2013, https://doi.org/10.1590/s1983-41952017000400006
- Shear strength of self-compacting concrete and recycled aggregate concrete beams: an appraisal of design codes vol.20, pp.3, 2013, https://doi.org/10.1007/s42107-018-00108-8