Page 19 - ICJ Feb Openaccess 2026
P. 19
TECHNICAL PAPER
[17] Nedeljković, M., Visser, J., Šavija, B., Valcke, S., and Building Materials, Vol. 68, pp-68-81.
Schlangen, E. (2021). “Use of fine recycled concrete https://doi. org/10.1016/j.conbuildmat.2014.06.009
aggregates in concrete: A critical review.” Journal of [27] Badgujar, S., and Dwivedi, A. K. (2022). “Microstructural
Building Engineering, Vol. 38, pp-102196. analysis of self-compacting concrete – A review.”
https://doi. org/10.1016/j.jobe.2021.102196
Materials Today: Proceedings. https://doi.org/10.1016/j.
[18] Donza, H., Cabrera, O., and Irassar, E. F. (2002). “High matpr.2022.04.185
strength concrete with different fine aggregate.” Cement [28] Rajamallu, C., Reddy, T. C., and Arunakanthi, E. (2021).
and Concrete Research, Vol. 32, No. 1), pp-1755-1761. “Service life prediction of self-compacted concretes with
https://doi.org/10.1016/S0008-8846(02)00860-8
respect to chloride ion penetration.” Materials Today:
[19] Revilla-Cuesta, V., Ortega-López, V., Skaf, M., and Manso, Proceedings, Vol. 46, pp-677-681.
J. M. (2020). “Effect of fine recycled concrete aggregate https://doi. org/10.1016/j.matpr.2020.11.746
on the mechanical behavior of self-compacting concrete.”
Construction and Building Materials, Vol. 263, pp-120671. [29] Kesharwani, K. C., Biswas, A. K., Chaurasiya, A., and
https://doi.org/10.1016/j.conbuildmat.2020.120671 Rabbani, A. (2017). “Experimental study on use of fly ash in
concrete.” International Research Journal of Engineering
[20] Evangelista, L., and de Brito, J. M. (2010). “Durability and Technology, Vol. 4, No. 9, pp-1527-1530.
performance of concrete made with fine recycled
concrete aggregates.” Cement and Concrete [30] Suthaviji, S., and Rani, B. P. (2023). “Study on performance
Composites, Vol. 32(1), pp-9-14. https://doi.org/10.1016/j. of self-compacting concrete using SCBA and GGBS for
cemconcomp.2009.09.005 sustainable construction: A review.” International Research
Journal of Engineering and Technology, Vol. 10, No. 4,
[21] Castellote, M., Andrade, C., and Alonso, C. (2001). pp 957-965.
“Measurement of the steady and non-steady-state
chloride diffusion coefficients in a migration test.” Cement [31] Bhat, S., and Singh, J. (2022). “Studying the influence
and Concrete Research, Vol. 31, No. 10, pp-1411-1420. of polycarboxylic ether on properties of concrete.”
https:// doi.org/10.1016/S0008-8846(01)00562-2 International Research Journal of Engineering and
Technology, Vol. 9, No. 8, pp. 407-417.
[22] Sangoju, B., Pillai, R. G., Gettu, R., Bharatkumar, B. H., and
Iyer, N. R. (2015). “Use of portland pozzolana cement to [32] Naik, G., and Koniki, K. (2021). “Comparative study
enhance the service life of reinforced concrete exposed to of Conplast SP 430 and polycarboxylic ether based
chloride attack.” Journal of Materials in Civil Engineering, superplasticizer on M50 grade PVA-FRC.” E3S Web of
Vol. 27, No. 11, pp-04015031. https://doi.org/10.1061/ Conferences, Vol. 309, pp-01173. https://doi.org/10.1051/
(ASCE) MT.1943-5533.0001293 e3sconf/202130901173
[23] ASTM, Standard test method for corrosion potentials of [33] Karuppanasamy, J., and Pillai, R. G. (2017). “Statistical
uncoated reinforcing steel in concrete (ASTM C876), ASTM distributions for the corrosion rates of conventional and
International, West Conshohocken, PA, 2012. prestressing steel reinforcement embedded in chloride
contaminated mortar.” Corrosion, Vol. 73, No. 9,
[24] Marsavina, L., Audenaert, K., de Schutter, G., Faur, N., pp-1119 1131. https://doi.org/10.5006/2330
and Marsavina, D. (2009). “Experimental and numerical
determination of the chloride penetration in cracked [34] Sudha, C., Krishnan, K. D., Ravichandran, P. T., and
concrete.” Construction and Building Materials, Rajkumar, P. R. K. (2016). “Strength characteristics of
Vol. 23, No. 1, pp-264-274. https://doi.org/10.1016/j. high strength concrete using M-sand.” Indian Journal of
conbuildmat.2007.12.015 Science and Technology, Vol. 9, No. 41.
https://doi. org/10.17485/ijst/2016/v9i41/95864
[25] Konečný, P., Horňáková, M., Lehner, P., Rovnaníková, P.,
and Sýkora, M. (2021). “Model uncertainty in diffusion [35] Patil, Y. O., Patil, P. N., and Dwivedi, A. K. (2013). “GGBS
coefficient for chloride ingress into concrete.” Procedia as partial replacement of OPC in cement concrete – An
Structural Integrity, Vol. 31, pp-147-153. experimental study.” International Journal of Scientific
https://doi. org/10.1016/j.prostr.2021.03.023 Research, Vol. 2, No. 11, pp 189-191.
[26] Torres-Luque, M., Bastidas-Arteaga, E., Schoefs, F., [36] Gladwin, A., and Baskar, R. (2016). “Behaviour of micro &
Sánchez-Silva, M., and Osma, J. F. (2014). “Non-destructive nano particles in M-sand cement mortar.” International
methods for measuring chloride ingress into concrete: Journal of Applied Engineering Research, Vol. 11, No. 1,
State-of-the-art and future challenges.” Construction and pp 385-391.
40 THE INDIAN CONCRETE JOURNAL | FEBRUARY 2026

