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Prestressed Concrete Structures - General



Simplified transverse post-tensioning construction and maintenance of adjacent box girders
J. Hansen, K.E. Hanna, M.K. Tadros.
2012. PCI Journal, Spring 2012, pages 64-79.. Go


Torsion tests on spun-cast prestressed concrete poles
M. Kuebler, A.M. Polak.
2012. PCI Journal, Spring 2012, pages 120-141.. Go


Development of a laser-speckle imaging device to determine the transfer length in pretensioned concrete members
W. Zhao, B.T. Beck, H.-C. Wu, K. Larson, R.J. Peterman.
2012. PCI Journal, Winter 2012, pages 135-143.. Go


Welded-wire reinforcement versus random steel fibers in precast, prestressed concrete bridge girders
G. Morcous, M. Maguire, M.K. Tadros.
2011. PCI Journal, Spring 2011, pages 113-129.. Go


Behavior of precast, prestressed concrete sandwich wall panels reinforced with CFRP shear grid
G. Lucier, T.K. Hassan, B.A. Frankl, S.H. Rizkalla.
2011. PCI Journal, Spring 2011, pages 42-54.. Go


State of the Art of Precast/Prestressed Concrete Sandwich Wall Panels, Second Edition, Part 1.
PCI Committee on Precast Sandwich Panel.
2011. PCI Journal Spring 2011, pages 131-142.. Go


State of the Art of Precast/Prestressed Concrete Sandwich Wall Panels, Second Edition, Part 5.
PCI Committee on Precast Sandwich Panel.
2011. PCI Journal Spring 2011, pages 169-176.. Go


State of the Art of Precast/Prestressed Concrete Sandwich Wall Panels, Second Edition, Part 2.
PCI Committee on Precast Sandwich Panel.
2011. PCI Journal Spring 2011, pages 143-153.). Go


State of the Art of Precast/Prestressed Concrete Sandwich Wall Panels, Second Edition, Part 4.
PCI Committee on Precast Sandwich Panel.
2011. PCI Journal Spring 2011, pages 161-168.). Go


Moment Coefficients for Statically Indeterminate Prestressed Concrete Structures
Y. Arfiadia, M.N.S. Hadib.
2011. Asian Journal of Civil Engineering (Building and Housing), Vol. 12, No. 1, pp. 39-59. Go


Softening Coefficients for Prestressed Steel Fiber Reinforced Concrete.
Thomas Kelleher.
2008. REU Report, SMSL-Smart Materials and Structural Laboratory remote Laboratory Extension.). Go


Detailing of Plastic Hinges in Seismic Design of Concrete Structures.
R.P. Dhakal.
2008. ACI Structural Journal, Vol. 105, No. 6, pages 740-749.. Go


Constitutive Models of Prestressed Steel-Fiber Concrete.
Norman Hoffman Christopher Caruso, Y.L. Mo.
2007. REU Report, SMSL-Smart Materials and Structural Laboratory remote Laboratory Extension.). Go


Simplified Calculation of Short-Term Deflection in Prestressed Two-Way Flat Slabs
S.-H. Chao, A.E. Naaman.
2006. ACI Structural Journal. Go



Design of Pretension Prestressed Concrete Girder Bridge for Cambodian Rehabilitation
S. Vong, H. Shima.
2006. 10th East Asia-Pacific Conference on Structural Engineering and Construction, Bangkok, Thailand. Go


Effects of Temperature Variations on Precast, Prestressed Girders
P. Barr, M. Eberhard, J.F. Stanton.
2005. Journal of Bridge Engineering, ASCE, March/April 2005,Vol. 10, No. 2, pp 186-194. Available from Marc O. Eberhard homepage, Department of Civil and Environmental Engineering, University of Washington. Go


Prestressing Concrete Using Shape Memory Alloy Tendons
S. El-Tawil, J. Ortega.
2004. ACI Structural Journal, Title no. 101-S84, 101(6), pp. 1-6. Go


Extending Span Ranges of Precast Prestressed Concrete Girders
R.W. Castrodale, C.D. White.
2004. NCHRP Report 517. Transportation Research Board. National Cooperative Highway Research Program. Washington. Go


Design of Prestressed Barrier Cable Systems
J.D. Rogers.
2004. Technical Notes, No. 14. Post-Tensioning Institute (PTI). Go


Evaluation of high strength concrete prestressed bridge girder design
C.O. Cladys.
2004. MSc Thesis, Civil Engineering, Texas A&M University. Go


Dynamic testing of a pre-stressed concrete beam
S. Jacobs, G. De Roeck.
2003. In Proceedings of the 6th National Congress on Theoretical and Applied Mechanics, Ghent, Belgium, National Committee for Theoretical & Applied Mechanics. Go


Comprehensive Design Example for Prestressed Concrete (PSC) November 2003 Girder Superstructure Bridge with Commentary 6. Performing Organization Code (in US Customary Units)
W.G. Wassef, C.A.S. Smith, C.M. Clancy, M.J. Smith.
2003. Report No. FHWA NHI - 04-043, United States Department of Transportation - Federal Highway Administration. Go


Prestress Losses in Pretensioned High-Strength Concrete Bridge Girders
M.K. Tadros, N. Al-Omaishi, S.J. Seguirant, J.G. Gallt.
2003. NCHRP Report 496. Transportation Research Board. National Cooperative Highway Research Program. Washington. Go


Influence of Prestressing Forces on the Shear Capacity ? Part 1 Beams without Shear Reinforcement
C. Keller, N.V. Tue, M. Zink.
2002. LACER No. 7, 2002, pp. 287-296. Go


Torsional Analysis for Prestressed Concrete Multiple Cell Box
C.C. Fu, Y. Tang.
2001. Journal of Engineering Mechanics, ASCE Vol. 127, No. 1, pp. 45-51. Go


Live-Load Distribution Factors for Prestressed Concrete Bridges
P. Barr, M. Eberhard, J.F. Stanton.
2001. Journal of Bridge Engineering, ASCE, September, 2001, pp. 298-306. Available from Marc O. Eberhard homepage, Department of Civil and Environmental Engineering, University of Washington. Go


Collapse Load Analysis of Prestressed Concrete Structures
K.W. Wong, R.F. Warner.
1998. Research Report No. R162. Department of Civil and Environmental Engineering, The University of Adelaide, Australia. Go



Rational Design of Prestressed and Reinforced Concrete Tanks
A.A. Rashed, D.M. Rogowsky, A.E. Elwi.
1997. Structural Engineering Report No. 220, Department of Civil and Environmental Engineering, University of Alberta, Canada. Go


Prestressed Concrete Beams with Large Rectangular Web Openings
T.M.J. Alves, A. Scanlon.
1984. Structural Engineering Report No. 123, Department of Civil and Environmental Engineering, University of Alberta, Canada. Go


Cracking of Reinforced and Prestressed Concrete Wall Segments
J.G. MacGregor, S.H. Rizkalla, S.H. Simmonds.
1979. Structural Engineering Report No. 82, Department of Civil and Environmental Engineering, University of Alberta, Canada. Go


The fatigue of prestressed concrete beams under reversed cyclic loading
M.L. Jacobs.
1968. PhD Thesis, School of Engineering, University of Auckland, New Zealand. Go


Strengthening Prestressed Concrete Beams with Carbon Fiber Reinforced Polymer Plates
P.F. Takacs, T. Kanstad.
Publication No. 25-2. Nordic Concrete Research. Go














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