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Optimised technology for repair of vertical surface of concrete bridge elements

Open Access
|Dec 2023

References

  1. Albers, A., Nowicky, L., & Enkler, H. G. (2006). Development of a method for the analysis of mixed fraction problems. International Journal of Applied Mechanics and Engineering, 11(3), pp. 479-490.
  2. American Concrete Institute. (2014). Guide to Concrete Repair, ACI 546R-14. Farmington Hills, USA.
  3. Bissonnette, B., Courard, L., Garbacz, A., Vaysburd, A. M., & Von Fay, K. F. (2014). Concrete repair bond: Evaluation and factors of influence. In: Concrete Solutions 2014 Proceedings of the International Conference, Belfast, UK, 2014. CRC Press, London, pp. 51-58.
  4. Bjegović, D., Skazlić, M., & Mavar, K. (2003). Approach to repair strategy of reinforced concrete structure. In: Tenth International Conference Structural Faults and Repair Proceedings of the International Conference in London, UK, 2003.
  5. Bonaldo, E., Barros, J. A. O., & Lourenco, P. B. (2005). Bond characterization between concrete substrate and repairing SFRC using pull-off testing. International Journal of Adhesion & Adhesives, 25(6), pp. 463-474.
  6. Borovina, B. (2011). Repair technology of concrete bridges. Master thesis, University of Zagreb Faculty of Civil Engineering.
  7. Courard, L., Lenaers, J. F., Michel, F., & Garbacz, A. (2011). Saturation level of the superficial zone of concrete and adhesion of repair systems. Construction and Building Materials, 25(5), pp. 2488-2494.
  8. Courard, L., Piotrowski, T., & Garbacz, A. (2014). Near-to-surface properties affecting bond strength in concrete repair. Cement and Concrete Composites, 46, pp. 73-80.
  9. Emmons, P. H. (1993). Concrete Repair and Maintenance Illustrated. Means Company, Kingston.
  10. Garbacz, A., Courard, L., & Kostana, K. (2006). Characterization of concrete surface roughness and its relation to adhesion in repair systems. Materials Characterization, 56(4-5), pp. 281-289.
  11. Garbacz, A., Gorka, M., & Courard, L. (2005). Effect of concrete surface treatment on adhesion in repair systems. Magazine of Concrete Research, 57(1), pp. 49-60.
  12. Mavar, K. (2010). Influence of technology on the adhesion of repair mortars. Master thesis, University of Zagreb Faculty of Civil Engineering.
  13. Mavar, K., & Skazlić, M. (2012). Influence of construction technology on the adhesion of remedial concrete. Gradevinar, 64(7), pp. 545-552.
  14. Mehta, P. K. (1991). Durability of concrete-fifty years of progress. In: CANMET/ACI Proceedings of the International Conference in Montreal, Canada, 1991, pp. 1-31.
  15. Momayez, A., Ehsani, M. R., Ramezanianpour, A. A., & Rajaie, H. (2005). Comparison of methods for evaluating bond strength between concrete substrate and repair materials. Cement and Concrete Research, 35(4), pp. 748-757.
  16. Momber, A. (2011). Hydrodemolition of Concrete Surfaces and Reinforced Concrete Structures. Elsevier Science.
  17. Naderi, M. (2005). Friction-transfer test for the assessment of in situ strengthened adhesion of cementitious materials. Construction and Building Materials, 19(6), pp. 454-459.
  18. Radić, J. (2010). Concrete Structures 4 – Repair. Croatian University Press, Zagreb.
  19. Skazlić, M., & Mavar, K. (2013). Optimum concrete surface preparation for repair works. In: Fourth International Workshop on Performance, Protection and Strengthening of Structures Under Extreme Loading Proceedings of the International Conference in Mysore, India, 2013.
  20. Skazlić, M., Mavar, K., & Baričević, A. (2015). Influence of surface concrete preparation on adhesion properties of repair materials. In: Concrete Repair, Rehabilitation and Retrofitting IV Proceedings of the International Conference in Leipzig, Germany, 2015. CRC Press/Balkema, London, pp. 761-767.
  21. Water Jet Technology Association. (1987). Recommended Practices for the Use of Manually Operated High Pressure Water Jetting Equipment. U.S. Water Jet Technology Association, Colorado, USA.
DOI: https://doi.org/10.2478/otmcj-2023-0018 | Journal eISSN: 1847-6228 | Journal ISSN: 1847-5450
Language: English
Page range: 233 - 242
Submitted on: Aug 31, 2023
Accepted on: Dec 8, 2023
Published on: Dec 29, 2023
Published by: University of Zagreb
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2023 Marijan Skazlić, Berislav Borovina, Ivan Gabrijel, published by University of Zagreb
This work is licensed under the Creative Commons Attribution 4.0 License.