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Articles

Evaluation of performance and design of GFRP dowels in jointed plain concrete pavement – part 2: numerical simulation and design considerations

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Pages 752-765 | Received 07 Mar 2012, Accepted 26 Dec 2013, Published online: 10 Mar 2014

REFERENCES

  • AASHTO, 1993. AASHTO guide for design of pavement structure. Washington, DC: American Association of State Highway and Transportation Officials.
  • Al-Humeidawi, B.H., 2013. Evaluation of the performance of GFRP dowels in jointed plain concrete pavement (JPCP) for road/airport under the combined effect of dowel misalignment and cyclic wheel load. (PhD). University of Manchester.
  • Al-Humeidawi, B.H. and Mandal, P., 2013. Evaluation of performance and design of GFRP dowels in jointed plain concrete pavement – part 1: experimental investigation. International Journal of Pavement Engineering, http://dx.doi.org/10.1080/10298436.2013.824081.
  • American Concrete Institute (ACI) Committee 325, 1956. Structural design considerations for pavement joints. ACI Journal, 53 (7), 1–28.
  • Brown, V.L. and Bartholomew, C.L., 1993. FRP dowel bars in reinforced concrete pavements. In: Proceedings of the international symposium on FRP reinforcement for concrete structures. Michigan, MI: American Concrete Institute.
  • BS 7533-12, 2006. Pavements constructed with clay, natural stone or concrete pavers. In: Part 12: guide to the structural design of trafficked pavements constructed on a bound base using concrete paving flags and natural stone slabs. London: British Standard Institution, 1–16.
  • BS EN 1992-1-1, 2004. Eurocode 2: design of concrete structures. In: Part 1-1: general rules and rules for buildings. London: British Standards Institution, 1–225.
  • CEB-FIP 1990, 1993. Design of concrete structures. London: Thomas Telford.
  • CEB-FIP, 2007. FRP reinforcement in RC structures. Lausanne, Switzerland: International Federation for Structural Concrete (fib).
  • Eddie, D., 1999. FRP dowels for concrete pavements. (M.Sc.) University of Manitoba.
  • Eddie, D., Shalaby, A., and Rizkalla, S., 2001. Glass fiber-reinforced polymer dowels for concrete pavements. ACI Structural Journal, 98 (2), 201–206.
  • Guo, H., Sherwood, J.A., and Snyder, M.B., 1995. Component dowel-bar model for load-transfer systems in PCC pavements. Journal of Transportation Engineering, 121 (3), 289–298.
  • Huang, Y. and Wang, S., 1973. Finite-element analysis of concrete slabs and its implications for rigid pavement design. Highway Research Record466, 55–69.
  • Hull, D. and Clyne, T., 1996. An introduction to composite materials. London: Cambridge University Press.
  • Ioannides, A.M., Lee, Y.H., and Darter, M.I., 1990. Control of faulting through joint load transfer design. Transportation Research Record1286, 49–56.
  • Keeton, J.R. and Bishop, J.A., 1957. Load transfer characteristics of a dowelled joint subjected to aircraft wheel loads. In: Proceeding of highway research board. Washington, DC: Highway Research Board, 190–198.
  • Löfsjögård, M., 2005. A laboratory investigation on bonding properties of dowels in concrete roads. Materials and Structures/Materiaux et Constructions, 38 (281), 721–728.
  • Maitra, S.R., Reddy, K.S., and Ramachandra, L.S., 2009a. Experimental evaluation of interface friction and study of its influence on concrete pavement response. Journal of Transportation Engineering, 135 (8), 563–571.
  • Maitra, S.R., Reddy, K.S., and Ramachandra, L.S., 2009b. Load transfer characteristics of dowel bar system in jointed concrete pavement. Journal of Transportation Engineering, 135 (11), 813–821.
  • Mancio, M., et al., 2008. Evaluation of corrosion resistance of steel dowels used for concrete pavements. Journal of Materials in Civil Engineering, 20 (10), 650–658.
  • Murison, S., Shalaby, A., and Mufti, A., 2005. Concrete-filled, glass fiber-reinforced polymer dowels for load transfer in jointed rigid pavements. Transportation Research Record: Journal of the Transportation Research Board, 1919 (1), 54–64.
  • Nishizawa, T., Fukuda, T., and Matsuno, S., 1989. A refined model of doweled joints for concrete pavement using FEM analysis. 4th international conference on concrete pavement design and rehabilitation. West Lafayette, IN: Purdue University.
  • Porter, M., et al., Investigation of glass fiber composite dowel bars for highway pavement slabs: final report. TR-408 Submitted to Highway Division of the Iowa Department of Transportation and Iowa Highway Research Board. Ames, IA: Engineering Research Institute, Iowa State University2001.
  • Porter, M., et al., Non-corrosive tie reinforcing and dowel bars for highway pavement slabs: progress report. Iowa Highway Research Board Project HR-343. Ames, IA: Department of Civil and Construction Engineering, Iowa State University1993.
  • Porter, M. and Pierson, N., 2007. Laboratory evaluation of alternative dowel bars for use in Portland cement concrete pavement construction. Transportation Research Record: Journal of the Transportation Research Board, 2040 (1), 80–87.
  • Prabhu, M., Buch, N., and Varma, A.H., 2007. Experimental and analytical investigations of mechanistic effects of dowel misalignment in jointed concrete pavements. Transportation Research Record, 2037, 12–29.
  • Prabhu, M., Buch, N., and Varma, A.H., 2009. Analytical investigation of the effects of dowel misalignment on concrete pavement joint opening behaviour. International Journal of Pavement Engineering, 10 (1), 49–62.
  • Saxena, P., et al., 2009. Laboratory and finite element evaluation of joint lockup. Transportation Research Record: Journal of the Transportation Research Board, 2095 (1), 34–42.
  • Shoukry, S.N., William, G., and Riad, M., 2003. Nonlinear temperature gradient effects in dowel jointed concrete slabs. International Journal of Pavement Engineering, 4 (3), 131–142.
  • SIMULIA, 2010. Abaqus analysis user manual version 6.10. Dassaults System, Headquartered in Providence, RI, USA.
  • Tabatabaie, A.M. and Barenberg, E.J., 1980. Structural analysis of concrete pavement systems. Transportation Engineering Journal, 106 (5), 493–506.
  • Tsai, S.W. and Hahn, H.T., 1980. Introduction to composite materials. Pennsylvania: CRC Press.
  • UK Highway Agency, 2009. Manual of contract documents for highway works (MCHW). Volume 1, specification for highway works, London: UK Highway Agency.
  • Vijay, P.V., et al., 2009. Design and evaluation of jointed plain concrete pavement with fiber reinforced polymer dowels. Morgantown, WV: West Virginia University.
  • William, G.W. and Shoukry, S.N., 2001. 3D finite element analysis of temperature-induced stresses in dowel jointed concrete pavements. International Journal of Geomechanics, 1 (3), 291–307.
  • Yoder, E.J. and Witczak, M.W., 1975. Principles of pavement design. USA: John Wiley & Sons.

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