- Ferrario Fabio, (2004). Analysis and Modelling of the Seismic Behaviour of High Ductility Steel-Concrete
Composite Structures. PhD Thesis, University of Trento, Department of Mechanical and Structural Engineering, Italy.
- Yulismana Wahyu, (2005).
Experimental Study Of The Behavior Of Fiber Reinforced Polymer Deck System. PhD Thesis, Civil and Environmental Engineering, University of Pittsburgh.
- Minnaugh Patrick Lucien, (2006).
The Experimental Behavior of Steel Fiber Reinforced Polymer Retrofit Measures. MSc Thesis, Civil and Environmental Engineering, University of Pittsburgh.
- Lee Seung Joon, (2005).
Nonlinear analysis of smart composite plate and shell structures. PhD Thesis, Civil Engineering, Texas A&M University.
- Vinnakota S., Foley C., Vinnakota M., (1988). Design of Partially or Fully Composite Beams, with Ribbed Metal
Deck, Using LRFD Specifications. Engineering Journal Second Quarter, pp. 60-78. Available from Christopher M. Foley, Department of Civil and Environmental Engineering, College of Engineering, Marquette University.
- Prickett B.S. and Driver R.G., (2006). Behaviour of Partially Encased Composite Columns Made with High
Performance Concrete. Structural Engineering Report No. 262, Department of Civil and Environmental Engineering, University of Alberta, Canada.
- Maurer M.B. and Kennedy D.J.L., (1994). Shrinkage and Flexural Tests of a Full-Scale Composite Truss.
Structural Engineering Report No. 206, Department of Civil and Environmental Engineering, University of Alberta, Canada.
- Woldegiorgis B. and Kennedy D.J.L., (1994). Some Behavioural Aspects of Composite Trusses. Structural
Engineering Report No. 195, Department of Civil and Environmental Engineering, University of Alberta, Canada.
- Kennedy S.J. and Cheng J.J.R., (1987). Behaviour of Transversely Loaded Continuous Steel-Concrete
Composite Plates. Structural Engineering Report No. 150, Department of Civil and Environmental Engineering, University of Alberta, Canada.
- Brattland A. and Kennedy D.J.L., (1986). Shrinkage and Flexural Tests of Two Full-Scale Composite Trusses.
Structural Engineering Report No. 143, Department of Civil and Environmental Engineering, University of Alberta, Canada.
- S.S. Chen, A.J. Aref, I-S. Ahn, M. Chiewanichakorn, J.A. Carpenter, A. Nottis and I. Kalpakidis, (2005). NCHRP Report 543. Effective Slab Width for Composite Steel Bridge Members. Transportation Research Board. National Cooperative Highway Research Program. Washington.
- Y.F. Wu, D.J. Oehlers, M.C. Griffith, (2001). Numerical Simulation of Composite Plated Columns. Research Report No. R172. Department of Civil and Environmental Engineering, The University of Adelaide, Australia.
- Blazevicius, Zygimantas, (2007). On the adaptability of concrete-filled steel tubular columns in the light of the
post-fire testing results. Technological and Economic Development of Economy, Research Journal of Vilnius Gediminas Technical University, No. 2, pp. 100-108.
- Kwak Y.K., Eberhard M.O., Kim W.S. and Kim J., (2002). Shear Strength of Steel-Fiber Reinforced Concrete
Beams Without Stirrups. ACI Structural Journal, Jul.-Aug. 2002, Vol. 99(4), pp. 530-538. Available from Marc O. Eberhard homepage, Department of Civil and Environmental Engineering, University of Washington.
- Eugene Fosness, Peter Wegner, and Jan Denoyer, (2000). Overview of Composite Materials Research and
Applications for Space Structures. Proceedings of the Fourteenth Engineering Mechanics Conference, American Society of Civil Engineers, May 21-24, 2000.
- Amir Mirmiran and Wenqing Yuan, (2000). Slenderness Effects In Concrete Columns Reinforced With FRP Rods. Proceedings of the 14th Engineering Mechanics Conference, American Society of Civil Engineers, May 21-24, 2000.
- Arup Maji, Ana Lilia Orozco and Robert Acree, (2000). Fracture Analysis of FRP Reinforced Concrete Beams.
Proceedings of the 14th Engineering Mechanics Conference, American Society of Civil Engineers, May 21-24, 2000.
- Szilvia Erdélyi, László Dunai, (2004). Behaviour Of A New Type Of Composite Connection. Periodica
Polytechnica, Civil Engineering, 48/1, pp. 89-100. Available from Budapest University of Technology and Economics.
- Stander Heinrich, (2007). Interfacial bond properties for ECC overlay systems. Msc Thesis, Department of Civil Engineering, Stellenbosch University.
- Boshoff William Peter, (2007). Time-Dependant Behaviour of Engineered Cement-Based Composites. PhD
Thesis, Department of Civil Engineering, Stellenbosch University.
- Tort C. and Hajjar J.F., (2007). Reliability-Based Performance-Based Design of Rectangular Concrete-Filled Steel Tube (RCFT) Members and Frames.
Structural Engineering Report No. ST-07-1, Department of Civil Engineering, University of Minnesota, Minneapolis, Minnesota, August, 401 pp. Available from Jerome F. Hajjar homepage.
- Krzmarzick D. and Hajjar J.F., (2006). Load Rating of Composite Steel Curved I-Girder Bridges through Load
Testing with Heavy Trucks. Report No. MN/RC-2006-40, Minnesota Department of Transportation, St. Paul, Minnesota, October, 546 pp. Available from Jerome F. Hajjar homepage.
- Tort C. and Hajjar J.F., (2003). Damage Assessment of Concrete-Filled Steel Tube Members and Frames.
Structural Engineering Report No. ST-03-1, Department of Civil Engineering, University of Minnesota, Minneapolis, Minnesota, April, 318 pp. Available from Jerome F. Hajjar homepage.
- P.P. Cordova and G.G. Deierlein, (2005). Validation of the Seismic Performance of Composite RCS Frames: Full-Scale Testing, Analytical Modeling, and Seismic Design
Report TR155. The John A. Blume Earthquake Engineering Center. Department of Civil and Environmental Engineering Stanford University.
- S.S. Mehanny and G.G. Deierlein, (2000). Modeling of Assessment of Seismic Performance of Composite Frames with Reinforced Concrete Columns and Steel Beams
Report TR135. The John A. Blume Earthquake Engineering Center. Department of Civil and Environmental Engineering Stanford University.
- I. Nishiyama, S. Morino, K. Sakino, H. Nakahara, T. Fujimoto, A. Mukai, E. Inai, K. Makoto, H. Tokinoya, T.
Fukumoto, K. Mori, K. Yoshioka , O. Mori, K. Yonezawa, M. Uchikoshi, Y. Hayashi, (2002). Summary of Research on Concrete-Filled Structural Steel Tube Column System Carried Out Under The US-JAPAN Cooperative Research Program on Composite and Hybrid Structures. BRI Research Paper No. 147, 176p. Available from BRI.
- Andre Plumier and Catherine Doneux, (2001). European Development of Seismic Design Guidelines for
Composite Steel Concrete Structures. University of Liege, Belgium.
- R. Benzaid, N.E. Chikh, H. Mesbah, (2008). Behaviour of Square Concrete Column Confined with GFRP
Composite Warp. Journal of Civil Engineering and Management, International Research and Achievements. Vilnius: Technika, 2008, Vol. 14, No. 2, pp. 115-120.
- A. Soundararajan, K. Shanmugasundaram, (2008). Flexural Behaviour of Concrete-Filled Steel Hollow Sections Beams.
Journal of Civil Engineering and Management, International Research and Achievements. Vilnius: Technika, 2008, Vol. 14, No. 2, pp. 107-114.
- Zoltan V. Nagy, Istvan Szatmari, (1998). Composite Slab Design. 2nd International Ph.D. Symposium in Civil
Engineering at the Technical University of Budapest.
- Upendra K. Mallela, Rajeev Chandak and Akhil Upadhyay, (2006). Laminated Composites for Structural
Engineering - Perspective Applications and Challenges. Proceedings of the 2nd International Congress on Computational Mechanics and Simulation (ICCMS06), December 8 - 10, 2006.
- S. Pradyumna and J.N. Bandyopadhyay, (2006). Static and Free Vibration Analysis of Laminated Conoids Using a Higher-Order Theory
. Proceedings of the 2nd International Congress on Computational Mechanics and Simulation (ICCMS06), December 8 - 10, 2006.
- Pramod Kumar, Rakesh Chandra, S.P. Singh, (2006). Micromechanical Bridging Model for the Prediction of
Damping in Fiber Reinforced Composites. Proceedings of the 2nd International Congress on Computational Mechanics and Simulation (ICCMS06), December 8 - 10, 2006.
- Ajay Kumar Garg, Rakesh Kumar Khare and Tarun Kant, (2006). Free Vibration of Laminated Folded Plates
using a Shear Deformable Finite Element Model. Proceedings of the 2nd International Congress on Computational Mechanics and Simulation (ICCMS06), December 8 - 10, 2006.
- D. Van Gemert, L. Czarnecki, P. Lukowski and E. Knapen, (2006). Cement Concrete and Concrete-Polymer
Composites: Two Merging Worlds: A report from 11th ICPIC Congress in Berlin, 2004. Proceedings of ISPIC International Symposium Polymers in Concrete, Guimaraes, Portugal, pp. 1-12.
- D. Van Gemert and E. Knapen, (2006). Recent Development of Concrete Polymer Composites in Belgium. 5th
Asian Symposium on Polymers in Concrete, Chennai, India.
- D. Van Gemert and E. Knapen, (2006). Concrete-Polymer Composites: Synergies and Prospects. Tagung
Bauchemie, Karlsruhe, Germany.
- F.A. Tavarez, L.C. Bank and M.E. Plesha, (2003). Analysis of Fiber-Reinforced Polymer Composite Grid
Reinforced Concrete Beams. ACI Structural Journal, Title no. 100-S27, Vol. 100, No. 2, pp. 250-258.
- D.A. Jacobson, L.C. Bank, M.G. Oliva and J.S. Russell, (2005). Punching Shear Capacity of Double Layer FRP Grid Reinforced Slabs
. Proceedings of the 7th Symposium on FRP in Reinforced Concrete Structures- FRPRCS7, SP-230, American Concrete Institute, Farmington Hills, MI, pp. 857-876.
- M. Oliva, L. Bank, H-U. Bae, J. Barker, S-W. Yoo, (2007). FRP Stay-in-Place Formwork and Reinforcing for
Concrete Highway Bridge Decks. Proceedings of FRPRCS8, 8th International Symposium on FRP in Reinforced Concrete Structures, July 16-18, Patras, GREECE, pp. 602- 603.
- L.C. Bank, J.S. Russell, T.R. Gentry, and B.P. Thompson, (2002). Accelerated Test-Based Material Specifications for Fiber Reinforced Plastics for Highway Structures
Final Report, Contract No. DTFH61-00-C-00021. FHWA.
- L.C. Bank, M.G. Oliva, D. Arora, and D.T. Borowicz, (2003). Rapid Strengthening of Reinforced Concrete Bridges. Report WHRP 03-06. Wisconsin Highway Research Program.
- G. Mohan Ganesh, A. Upadhyay and S.K. Kaushik, (2006). Assessment of longitudinal shear strength
parameters of composite slab by artificial neural network. Asian Journal of Civil Engineering (Building and Housing), Vol. 7, No. 3, pages 287-300.
- Barzin Mobasher, S.D. Rajan, (2003). Image Processing Applications for the Study of Displacements and
Cracking in Composite Materials. The 16th ASCE Engineering Mechanics Conference, July 16 - 18, 2003, University of Washington, Seattle.
- Shunzhi Qian, Victor C. Li, (2008). Simplified Inverse Method for Determining the Tensile Properties of Strain
Hardening Cementitious Composites (SHCC). Journal of Advanced Concrete Technology, Vol.6, No.2, pp. 353- 363. Japan Concrete Institute.
- S. Wang, V.C. Li, (2007). Engineered Cementitious Composites with High-Volume Fly Ash. ACI Materials Journal, Title No. 104-M25, Technical Paper, Vol. 104, No. 3, pp. 233-241.
- M. Lepech, V.C. Li, (2005). Durability and Long Term Performance of Engineered Cementitious Composites.
International RILEM Workshop on High Performance Fiber Reinforced Cementitious Composites (HPFRCC) in Structural Applications, Honolulu, Hawaii.
- H. Tan, Y. Huang, C. Liu, P.H. Geubelle, (2006). Effect of Nonlinear Interface Debonding on the Constitutive
Model of Composite Materials. International Journal for Multiscale Computational Engieering, 4(1), pp. 147-167. Begell House, Inc.
- M. Lepech, V.C. Li, (2005). Water Permeability of Cracked Cementitious Composites. Paper 4539 of
Compendium of Papers CD ROM, ICF 11, Turin, Italy.
- V.M. Karbhari, J.W. Chin, D. Hunston, B. Benmokrane, T. Juska, R. Morgan, J.J. Lesko, U. Sorathia, D. Reynaud, (2003). Durability Gap Analysis for Fiber-Reinforced Polymer Composites in Civil Infrastructure. Building and Fire Research Laboratory, National Institute of Standards and Technology (NIST), Journal of Composites for Construction, 7(3), pp. 238-247.
- I. Nishiyama, S. Morino, K. Sakino, H. Nakahara, T. Fujimoto, A. Mukai, E. Inai, M. Kai, H. Tokinoya, T. Fukumoto, K. Mori, K. Yoshioka , O. Mori, K. Yonezawa, M. Uchikoshi, Y. Hayashi, (2002). Summary of Research on Concrete- Filled Structural Steel Tube Column System Carried Out Under The US-JAPAN Cooperative Research Program on Composite and Hybrid Structures
BRI Research Paper, Report No. 147.
- G. Fischer, and V.C. Li, (2002). Effect of Matrix Ductility on Deformation Behavior of Steel Reinforced ECC
Flexural Members under Reversed Cyclic Loading Conditions. ACI Structural Journal, Technical Paper, Title No. 99-S79, Vol. 99, No. 6, pp. 781-790.
- T. Kanda, V.C. Li, (1998). Interface Property and Apparent Strength of a High Strength Hydrophilic Fiber in
Cement Matrix. Journal of Materials in Civil Engineering, Vol. 10, No. 1, pp. 5-13.
- A.E. Naaman, P. Paramasivam, G. Balazs, Z.M. Bayasi, J. Eibl, L. Erdelyi, N. M. Hassoun, N. Krstulovic-Opara, V.
C. Li, and G. Lohrmann, (1996). Reinforced and Prestressed Concrete using HPFRCC Matrices. High Performance Fiber Reinforced Cementitious Composites, RILEM Proc. 31, A.E. Naaman and H.W. Reinhardt (eds.), pages 291-344.
- M. Maalej, T. Hashida, V.C. Li, (1995). Effect of Fiber Volume Fraction on the Off-Crack-Plane Fracture Energy in Strain-Hardening Engineered Cementitious Composites
. Journal of the American Ceramics Society, Vol. 78, No. 12, pp. 3369-3375.
- Y. Wang, V.C. Li, S. Backer, (1990). Experimental Determination of Tensile Behavior of Fiber Reinforced
Concrete. ACI Materials Journal, Technical Paper, Title No. 87-M48, Vol. 87, No. 5, pp. 461-468.
<< Indice >>
|