DOI QR코드

DOI QR Code

Assessment of structural behavior of reinforced concrete slab ceiling under full load test in a residential complex project

  • Jaffar A. Kadim (Department of Civil Engineering, College of Engineering, Basrah University) ;
  • Oday A. Abdulrazzaq (Department of Civil Engineering, College of Engineering, Basrah University) ;
  • Abdulamir A. Karim (Department of Civil Engineering, College of Engineering, Basrah University) ;
  • Aqeel H. Chkheiwer (Department of Civil Engineering, College of Engineering, Basrah University)
  • 투고 : 2023.03.23
  • 심사 : 2024.03.22
  • 발행 : 2024.03.25

초록

This research deals with the process of conducting a reinforced concrete slab loading test of a Residential Complex Project at the Shatt Al Arab District which is located in southern Iraq. The purpose of the test which represents a destructive test is to evaluate the structural behavior of the slab condition state during and after the examination of the test process in order to ascertain the ability of the slab ceiling to withstand the loads generated during the use of the building. The test was carried out accordant to ACI 437.2-13 code. The reason for this test is the postponed 8 years of building project construction. Concrete blocks were used to simulate and conduct a loading test of 30-tons for 3 days. The central point has been installed to measure the slab deflection that occurred during the test. The results showed that both the total deflection and residual deflections were lesser than the permissible values according to the ACI 437.2-13, the RC slab behavior was mainly linear structural behave, and that the purpose of the examination was achieved. Finally, a new method was introduced to the assessment of the slab condition at the support which is found in good condition.

키워드

참고문헌

  1. ACI 318 (2014), Building Code Requirements for Structural Concrete, American Concrete Institute.
  2. ACI 437.2 (2013), Code Requirements for Load Testing of Existing Concrete Structures, American Concrete Institute.
  3. ACI 562 (2013), Code Requirements for Evaluation, Repair, and Rehabilitation of Concrete Buildings, American Concrete Institute.
  4. Albareda-Valls, A., Rivera-Rogel, A., Costales-Calvo, I. and Garcia-Carrera, D. (2020), "Real cyclic load-bearing test of a ceramic-reinforced slab", Appl. Sci., 10(5), 1763. https://doi.org/10.3390/app10051763.
  5. Buddhawanna, S., Witchayangkoona, B. and Panmekiat, S. (2014), "Structural strength evaluation by NDE and load test of RC slab structure, case study: RC deck slab of primary hospital building", Faculty of Medicine, Thammasat University, Thailand.
  6. Casadei, P., Parretti, R., Nanni, A. and Heinze, T. (2005), "In situ load testing of parking garage reinforced concrete slabs: Comparison between 24 h and cyclic load testing", Pract. Period. Struct. Des. Constr., 10(1), 40-48. https://doi.org/10.1061/(ASCE)1084-0680(2005)10:1(40)
  7. ElBatanouny, M., Ziehl, P., Larosche, C. and Nanni, A. (2015), "Load testing techniques for the strength evaluation of existing reinforced concrete structures", Forensic Engineering, 30-39.
  8. Hussein, M.H., Massarsch, K.R., Likins, G.E. and Holtz, R.D. (2012), "Full-scale testing and foundation design: Honoring Bengt H. Fellenius", American Society of Civil Engineers, March. https://doi.org/10.1061/9780784412084.
  9. Kigoye, E. and Kyakula, M. (2022), "Load deflection relationship of a solid slab under the action of construction loads", Adv. Civil Eng., 2022, Article ID 3125920. https://doi.org/10.1155/2022/3125920.
  10. Lam, D., Dai, X. and Sheehan, T. (2019), "Testing of a full-scale composite floor plate", Eng., 5(2), 223-233. https://doi.org/10.1016/j.eng.2018.11.021.
  11. Lantsoght, E., van der Veen, C., de Boer, A. and Hordijk, D.A. (2017), "Proof load testing of reinforced concrete slab bridges in the Netherlands", Struct. Concrete, 18(4), 597-606. https://doi.org/10.1002/suco.201600171.
  12. Li, C., Sun, Q. and Liu, Y. (2021), "Study on static load test of simply supported hollow slab bridge flexural strengthened with polyurethane-cement composite", Int. J. Struct. Integr., 13(1), 112-132. https://doi.org/10.1108/IJSI-08-2020-0073.
  13. Masetti, F., Galati, N., Nehil, T. and Nanni, A. (2006), "In-situ load test: a case Study", Federation Internationale du Beton Proceedings of the 2nd International Congress, Naples, Italy.
  14. Saleem, M.A., Abbas, S. and Nehdi, M.L. (2019), "Assessment of reinforced concrete slabs using in-situ load testing: A case study", J. Build. Eng., 25, 100844. https://doi.org/10.1016/j.jobe.2019.100844.