Mohamed Karam Hussein Ismail (Mohamed K. Ismail)
Associate Professor, Department of Structural Engineering
(email)
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2023
Ismail, M. K., A. A. A. Hassan, B. H. AbdelAleem, and W. El-Dakhakhni,
"
Flexural behavior and cracking of lightweight RC beams containing coarse and fine slag aggregates
",
Structures
, vol. 47, pp. 1005-1019, 2023.
Elgamel, H., M. K. Ismail, A. Ashour, and W. El-Dakhakhni,
"
Backbone model for reinforced concrete block shear wall components and systems using controlled multigene genetic programming
",
Engineering Structures
, vol. 274, pp. 115173, 2023.
Zaki, Y. A., A. A. Abouhussien, A. A. A. Hassan, M. K. Ismail, and B. H. AbdelAleem,
"
Crack detection and classification of repaired concrete beams by acoustic emission monitoring
",
Ultrasonics
, vol. 134, pp. 107068, 2023.
AbdelAleem, B. H., M. K. Ismail, A. A. A. Hassan, and W. El-Dakhakhni,
"
Cyclic behavior of lightweight engineered cementitious composite beam-column joints
",
Engineering Structures
, vol. 295, pp. 116786, 2023.
Ismail, M. K., A. Yosri, and W. El-Dakhakhni,
"
Evolutionary computing-based models for predicting seismic shear strength of RC columns
",
Magazine of Concrete Research
, vol. 76, issue 3, pp. 124-143, 2023.
Ismail, M. K., B. H. AbdelAleem, A. A. A. Hassan, and W. El-Dakhakhni,
"
Prediction of tapered steel plate girders shear strength using multigene genetic programming
",
Engineering Structures
, vol. 295, pp. 116806, 2023.
2022
AbdelAleem, B. H., M. K. Ismail, M. Haggag, W. El-Dakhakhni, and A. A. A. Hassan,
"
Interpretable soft computing predictions of elastic shear buckling in tapered steel plate girders
",
Thin-Walled Structures
, vol. 176, pp. 109313, 2022.
Ismail, M. K., A. Yosri, and W. El-Dakhakhni,
"
A multi-gene genetic programming model for predicting shear strength of steel fiber concrete beams
",
ACI Structural Journal
, vol. 119, issue 2, pp. 317-328, 2022.
Ismail, M. K., and A. A. A. Hassan,
"
Performance of lightweight SCC beams strengthened with rubberized engineered cementitious composite in shear
",
Engineering Structures
, vol. 252, pp. 113687, 2022.
2021
Batran, T. Z., M. K. Ismail, and A. A. A. Hassan,
"
Behavior of novel hybrid lightweight concrete composites under drop-weight impact loading
",
Structures
, vol. 34, pp. 2789-2800, 2021.
Batran, T. Z., M. K. Ismail, and A. A. A. Hassan,
"
Flexural Behavior of Lightweight Self-Consolidating Concrete Beams Strengthened with Engineered Cementitious Composite
",
ACI Materials Journal
, vol. 118, issue 4, pp. 39-50, 2021.
Ismail, M. K., and A. A. A. Hassan,
"
Structural performance of large-scale concrete beams reinforced with cementitious composite containing different fibers
",
Structures
, vol. 31, pp. 1207-1215, 2021.
2020
Ismail, M. K., and A. A. A. Hassan,
"
Effect of Cold Temperatures on Performance of Concrete under Impact Loading
",
Journal of Cold Regions Engineering
, vol. 34, issue 3, pp. 04020019, 2020.
Sadek, M. M., M. K. Ismail, and A. A. A. Hassan,
"
Impact Resistance and Mechanical Properties of Optimized SCC Developed with Coarse and Fine Lightweight Expanded Slate Aggregate
",
Journal of Materials in Civil Engineering
, vol. 32 , issue 11, pp. 04020324, 2020.
Sadek, M. M., M. K. Ismail, and A. A. A. Hassan,
"
Stability of Lightweight Self-Consolidating Concrete Containing Coarse and Fine Expanded Slate Aggregates
",
ACI Materials Journal
, vol. 117, issue 3, pp. 133-143, 2020.
AbdelAleem, B. H., M. K. Ismail, and M. Lachemi,
"
Structural Behavior of Rubberized Engineered Cementitious Composite Beam-Column Joints under Cyclic Loading
",
ACI Materials Journal
, vol. 117, issue 2, pp. 55-66, 2020.
Omar, A. T., M. K. Ismail, and A. A. A. Hassan,
"
Use of Polymeric Fibers in the Development of Semilightweight Self-Consolidating Concrete Containing Expanded Slate
",
Journal of Materials in Civil Engineering
, vol. 32, issue 5, pp. 04020067, 2020.
2019
Ismail, M. K., A. A. A. Hassan, and M. Lachemi,
"
Performance of Self-Consolidating Engineered Cementitious Composite under Drop-Weight Impact Loading
",
Journal of Materials in Civil Engineering
, vol. 31, issue 3, 2019.
Ismail, M. K., and A. A. A. Hassan,
"
Abrasion and impact resistance of concrete before and after exposure to freezing and thawing cycles
",
Construction and Building Materials
, vol. 215, pp. 849-861, 2019.
Ismail, M. K., A. A. A. Hassan, and M. Lachemi,
"
Abrasion Resistance of Self-Consolidating Engineered Cementitious Composites Developed with Different Mixture Compositions.
",
ACI Materials Journal
, vol. 16, issue 1, 2019.
Siad, H., M. Lachemi, M. K. Ismail, M. A. A. Sherir, M. Sahmaran, and A. A. A. Hassan,
"
Effect of Rubber Aggregate and Binary Mineral Admixtures on Long-Term Properties of Structural Engineered Cementitious Composites
",
Journal of Materials in Civil Engineering
, vol. 31, issue 11, 2019.
Abouhussien, A. A., A. A. A. Hassan, M. K. Ismail, and B. H. AbdelAleem,
"
Evaluating the cracking behavior of ECC beam-column connections under cyclic loading by acoustic emission analysis
",
Construction and Building Materials
, vol. 215, pp. 958-968, 2019.
Ismail, M. K., and A. A. A. Hassan,
"
Influence of fibre type on the shear behaviour of engineered cementitious composite beams
",
Magazine of Concrete Research
, pp. 1-12, 2019.
2018
Ismail, M. K., A. A. A. Hassan, K. E. Ridgley, and B. Colbourne,
"
Steel-Fiber Self-Consolidating Rubberized Concrete Subjected to Impact Loading
",
International Congress on Polymers in Concrete
, New Mexico, US, 2018.
AbdelAleem, B. H., M. K. Ismail, and A. A. A. Hassan,
"
The combined effect of crumb rubber and synthetic fibers on impact resistance of self-consolidating concrete
",
Construction and Building Materials
, vol. 162, pp. 816-829, 2018.
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Recent Publications
Prediction of tapered steel plate girders shear strength using multigene genetic programming
Cyclic behavior of lightweight engineered cementitious composite beam-column joints
Crack detection and classification of repaired concrete beams by acoustic emission monitoring
Evolutionary computing-based models for predicting seismic shear strength of RC columns
Flexural behavior and cracking of lightweight RC beams containing coarse and fine slag aggregates
more