89
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Numerical investigation on the behaviour of the high-strength ring strengthened dowel connection under vertical load

ORCID Icon & ORCID Icon
Article: 2287144 | Received 08 Jul 2023, Accepted 19 Nov 2023, Published online: 06 Feb 2024

References

  • ABAQUS 6.14, 2014. Dassault systems. Providence, RI: Dassault Systèmes Simulia Corp.
  • ABAQUS 6.14 CAE User’s Guide, 2014. Dassault systems. Providence, RI: Dassault Systèmes Simulia Corp.
  • ACI Committee 325, 2002. ACI 325.12R-02 Guide for design of jointed concrete pavements for streets and local roads. Detroit, MI: American Concrete Institute.
  • Al-Humeidawi, B., and Mandal, P., 2014a. Evaluation of performance and design of GFRP dowels in jointed plain concrete pavement–part 2: numerical simulation and design considerations. International Journal of Pavement Engineering, 15 (8), 752–765.
  • Al-Humeidawi, B. H., and Mandal, P., 2014b. Evaluation of performance and design of GFRP dowels in jointed plain concrete pavement–part 1: experimental investigation. International Journal of Pavement Engineering, 15 (5), 449–459.
  • Al-Humeidawi, B. H., and Mandal, P., 2022. Numerical evaluation of the combined effect of dowel misalignment and wheel load on dowel bars performance in JPCP. Engineering Structures, 252, 113655.
  • American Association of State Highway and Transportation Officials, 1993. Guide for design of pavement structure. Washington, DC: AASHTO.
  • CEB/FIP, 1993. CEB-FIP model code 1990. Design code., Switzerland: Thomas Telford Publishing.
  • CEB/FIP, 2010. Model code for concrete structures. Berlin, Germany: Ernst & Sohn, Wiley.
  • Channakeshava, C., Barzegar, F., and Voyiadjis, G. Z., 1993. Nonlinear FE analysis of plain concrete pavements with doweled joints. Journal of Transportation Engineering, 119 (5), 763–781.
  • Davids, W. G., et al., 2003. Three-dimensional finite element analysis of jointed plain concrete pavement with EverFE2.2. Transportation Research Record, 1853 (1), 92–99.
  • Debnath, P. P., and Chan, T.-M., 2021. A comprehensive numerical approach for modelling blind-bolted CFST connections. Structures, 33, 2208–2225.
  • Fang, M. J., et al., 2022. Precast system and assembly connection of cement concrete slabs for road pavement: A review. Journal of Traffic and Transportation Engineering-English Edition, 9 (2), 208–222.
  • Ferraris, C. F., Obla, K. H., and Hill, R., 2001. The influence of mineral admixtures on the rheology of cement paste and concrete. Cement concrete research, 31 (2), 245–255.
  • Friberg, B., Richart, F. and Bradbury, R., 1939. Load and deflection characteristics of dowels in transverse joints of concrete pavements. Highway Research Board Proceedings.
  • Guo, J.-C., and Chan, T.-M., 2022a. Stainless steel ring strengthened removable dowel bar connection system: Effect of key parameters and design recommendations. Structures, 44, 1767–1782.
  • Guo, J.-C., and Chan, T.-M., 2022b. Characteristics of compressive stress around dowel joint in concrete pavement system. International Journal of Pavement Engineering.
  • Guo, J.-C., and Chan, T.-M., 2022c. Experimental and numerical study on the structural performance of the stainless steel ring strengthened removable dowel bar connection system. International Journal of Pavement Engineering.
  • Guo, J.-C., Chan, T.-M., and Wang, Y.-H., 2023. Experimental investigation on the structural performance of the high-strength ring strengthened dowel connection under monotonic load. Engineering Structures, 292, 116423.
  • 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., 1985. A computer package for structural analysis of concrete pavements. ed. Third International Conference on Concrete Pavement Design and Rehabilitation, Purdue University.
  • Huang, Y., and Wang, S., 1973. Finite-element analysis of concrete slabs and its implications for rigid pavement design. Highway Research Record, 466, 55–69.
  • Hühne, S., et al., 2016. A two-way loose coupling procedure for investigating the buckling and damage behaviour of stiffened composite panels. Composite Structures, 136, 513–525.
  • Jeong, E., et al., 2020. Prediction of dowel action against concrete core without consideration of transverse reinforcement. Journal of Structural Engineering, 146 (12), 04020279.
  • Kim, J., and Hjelmstad, K. D., 2003. Three-dimensional finite element analysis of doweled joints for airport pavements. Transportation Research Record, 1853 (1), 100–109.
  • Kuo, C. M., Hall, K. T., and Darter, M. I., 1995. Three-dimensional finite element model for analysis of concrete pavement support. Transportation Research Record 1505, 119–127.
  • Lee, J., and Fenves, G. L., 1998. Plastic-damage model for cyclic loading of concrete structures. Journal of Engineering Mechanics, 124 (8), 892–900.
  • Lubliner, J., et al., 1989. A plastic-damage model for concrete. International Journal of solids structures, 25 (3), 299–326.
  • Mackiewicz, P., 2015a. Analysis of stresses in concrete pavement under a dowel according to its diameter and load transfer efficiency. Canadian Journal of Civil Engineering, 42 (11), 845–853.
  • Mackiewicz, P., 2015b. Finite-element analysis of stress concentration around dowel bars in jointed plain concrete pavement. Journal of Transportation Engineering, 141 (6).
  • Mackiewicz, P., and Szydło, A., 2020. The analysis of stress concentration around dowel bars in concrete pavement. Magazine of Concrete Research, 72 (2), 97–107.
  • Mahboub, K. C., Liu, Y., and Allen, D. L., 2004. Evaluation of temperature responses in concrete pavement. Journal of Transportation Engineering, 130 (3), 395–401.
  • Maitra, S. R., Reddy, K., and Ramachandra, L., 2009. Load transfer characteristics of dowel bar system in jointed concrete pavement. International Journal of Fracture, 135 (11), 813–821.
  • Nagaraj, M., Petrolo, M., and Carrera, E., 2021. A global–local approach for progressive damage analysis of fiber-reinforced composite laminates. Thin-Walled Structures, 169, 108343.
  • Prabhu, M., Varma, A., and Buch, N., 2009. Analytical investigation of the effects of dowel misalignment on concrete pavement joint opening behaviour. International Journal of Pavement Engineering, 10 (1), 49–62.
  • Priddy, L. P., et al., 2015. Three-dimensional modelling of precast concrete pavement repair joints. Magazine of Concrete Research, 67 (10), 513–522.
  • Randl, N., 2013. Design recommendations for interface shear transfer in fib Model Code 2010. Structural Concrete, 14 (3), 230–241.
  • Rasmussen, B., 1963. The carrying capacity of tranceversely loaded bolts and dowels embedded in concrete. Bygings Statiske Meddelser, 34 (2).
  • Reinoso, J., et al., 2012. Experimental and three-dimensional global-local finite element analysis of a composite component including degradation process at the interfaces. Composites Part B: Engineering, 43 (4), 1929–1942.
  • Riad, M. Y., et al., 2009. Effect of skewed joints on the performance of jointed concrete pavement through 3D dynamic finite element analysis. International Journal of Pavement Engineering, 10 (4), 251–263.
  • Shi, C.-J., et al., 2015. A review on ultra high performance concrete: Part I. Raw materials and mixture design. Construction Building Materials, 101, 741–751.
  • Shoukry, S. N., William, G., and Riad, M., 2002. Characteristics of concrete contact stresses in doweled transverse joints. International Journal of Pavement Engineering, 3 (2), 117–129.
  • Smith, P. and Snyder, M. B., 2019. Manual for jointed precast concrete pavement. National Precast Concrete Association.
  • Soroushian, P., Obaseki, K., and Rojas, M. C., 1987. Bearing strength and stiffness of concrete under reinforcing bars. Materials Journal, 84 (3), 179–184.
  • Syed, A., and Sonparote, R. S., 2020a. A Review of Precast Concrete Pavement Technology. Baltic Journal of Road Bridge Engineering, 15 (4), 22–53.
  • Syed, A., and Sonparote, R. S., 2020b. Construction of Pretensioned Precast Concrete Pavement. Iranian Journal of Science and Technology-Transactions of Civil Engineering, 44, 507–514.
  • Tabatabaie, A. M., and Barenberg, E., 1978. Finite-element analysis of jointed or cracked concrete pavements. Transportation Research Record, 671, 11–19.
  • Tayabji, S., Ye, D. and Buch, N., 2013a. Precast concrete pavement technology. Washington: Transportation Research Board.
  • Tayabji, S., Ye, D., and Buch, N., 2013b. Precast concrete pavements: Technology overview and technical considerations. PCI Journal, 58 (1), 112–128.
  • Timoshenko, S., and Lessells, J. M., 1925. Applied elasticity. Westinghouse technical night school press.
  • Tomek, R., 2017. Advantages of precast concrete in highway infrastructure construction. Procedia engineering, 196, 176–180.
  • Vaitkus, A., Šernas, O., and Gražulytė, J., 2021. Modular pavements: Developing high performance concrete. Construction Building Materials, 292, 123362.
  • Xu, L.-Y., et al., 2022. High-strength high-ductility Engineered/Strain-Hardening Cementitious Composites (ECC/SHCC) incorporating geopolymer fine aggregates. Cement Concrete Composites, 125, 104296.
  • Yaqoob, S., Silfwerbrand, J., and Strömberg, L., 2021. Evaluation of rapid repair of concrete pavements using precast concrete technology: a sustainable and cost-effective solution. Nordic Concrete Research, 65 (2), 107–128.
  • Zaman, M., and Alvappillai, A., 1995. Contact-element model for dynamic analysis of jointed concrete pavements. Journal of Transportation Engineering, 121 (5), 425–433.
  • Zhang, J., et al., 2022. Mechanical behavior of doweled joints in concrete pavements: a review. Journal of Transportation Engineering, Part B: Pavements, 148 (4), 03122002.
  • Zhao, Y., et al., 2021. Experimental study of the shear behaviour of concrete-grout-concrete joints. Journal of Building Engineering, 43, 103095.
  • Zhou, M., et al., 2018. Application of ultra-high performance concrete in bridge engineering. Construction Building Materials, 186, 1256–1267.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.