“The effect of CFRP and CFRP/concrete interface models when modelling retrofitted RC beams with FEM”
π Composite Structures (2010), 92(6), pp. 1391β1398.
π Cited 369 times, this study investigates finite element modeling (FEM) techniques for retrofitted RC beams using CFRP.
“Retrofitting of reinforced concrete beams using composite laminates”
π Construction and Building Materials (2011), 25(2), pp. 591β597.
π Cited 202 times, this article explores composite laminate retrofitting for RC beams, focusing on structural performance.
“Retrofitting of partially damaged reinforced concrete beam-column joints using various plate-configurations of CFRP under cyclic loading”
π Construction and Building Materials (2019), 198, pp. 313β322.
π Cited 72 times, it examines innovative CFRP configurations for seismic retrofitting of RC joints.
“Evaluation of parameters of bond action between FRP and concrete”
π Journal of Composites for Construction (2013), 17(5), pp. 626β635.
π Cited 62 times, focuses on critical bond parameters affecting FRP-concrete interaction.
“Effect of olive waste (Husk) on behavior of cement paste”
π Case Studies in Construction Materials (2016), 5, pp. 19β25.
π± Cited 58 times, investigates the sustainable use of olive waste in cement paste formulations.
“Structural retrofitting of concrete beams using FRP-debonding issues”
π Doctoral Dissertation (2011).
π Cited 54 times, addresses challenges of FRP debonding in structural retrofitting applications.
“A new technique for repairing reinforced concrete columns”
π Journal of Building Engineering (2020), 30, 101256.
ποΈ Cited 44 times, proposes an innovative column repair method using CFRP.
“Non-linear finite-element investigation of the parameters affecting externally-bonded FRP flexural-strengthened RC beams”
π Results in Engineering (2020), 8, 100168.
π₯οΈ Cited 42 times, presents a FEM analysis for flexural strengthening of RC beams.
“New anchorage technique for NSM-CFRP flexural strengthened RC beam using steel clamped end plate”
π Construction and Building Materials (2020), 263, 120246.
π§ Cited 40 times, this work details advanced anchorage solutions for NSM-CFRP systems.
“Performance of RC beam strengthened with NSM-CFRP strip under pure torsion: Experimental and numerical study”
π International Journal of Civil Engineering (2020), 18, pp. 585β593.
π Cited 38 times, investigates the torsional strengthening of RC beams using NSM-CFRP strips.
“Shear strengthening of RC beams using near-surface mounted carbon fibre-reinforced polymers”
π Australian Journal of Structural Engineering (2019), 20(1), pp. 54β62.
βοΈ Cited 38 times, explores NSM-CFRP applications for shear strength enhancement.
“Compressive strength prediction of lightweight short columns at elevated temperature using gene expression programming and artificial neural network”
π Journal of Civil Engineering and Management (2020), 26(2), pp. 189β199.
π₯ Cited 27 times, uses AI to predict structural performance under heat stress.
“Case study on production of self-compacting concrete using white cement by-pass dust”
π Case Studies in Construction Materials (2018), 9, e00190.
π Cited 27 times, highlights sustainable concrete production methods.
“Effect of aggregate size on the bond behavior between carbon fiberβreinforced polymer sheets and concrete”
π Journal of Materials in Civil Engineering (2019), 31(12), 04019295.
π Cited 24 times, examines how aggregate size impacts CFRP-concrete bond behavior.
“Effect of elevated temperature on the bond behavior between NSM-CFRP strips and recycled aggregate concrete”
π Construction and Building Materials (2020), 251, 118970.
π‘οΈ Cited 22 times, investigates bond integrity under heat exposure.
“Behavior of NSM CFRP reinforced concrete columns: Experimental and analytical work”
π Case Studies in Construction Materials (2021), 15, e00589.
ποΈ Cited 21 times, combines experimental and analytical approaches to column strengthening.
“A nonlinear finite element model for shear deficient heat-damaged concrete beams repaired using NSM CFRP strips”
π Construction and Building Materials (2018), 170, pp. 314β325.
π¨ Cited 21 times, provides a FEM-based solution for repairing heat-damaged beams.
“Repair of heat-damaged SCC cantilever beams using SNSM CFRP strips”
π Structures (2020), 24, pp. 151β162.
π§ Cited 20 times, focuses on repairing SCC beams using advanced CFRP techniques.
“Innovative strengthening schemes of concrete cantilever beams using CFRP sheets: End anchorage effect”
π Construction and Building Materials (2018), 190, pp. 1215β1225.
π‘ Cited 17 times, analyzes the end anchorage impact in CFRP-strengthened beams.