ANN, M5P-tree and nonlinear regression approaches with statistical evaluations to predict the compressive strength of cement-based mortar modified with fly ash
Mohammed, Ahmed, Rafiq, Serwan, Sihag, Parveen, Kurda, Rawaz, Mahmood, Wael, Ghafor, Kawan, Sarwar, Warzer
Published in Journal of materials research and technology (01.11.2020)
Published in Journal of materials research and technology (01.11.2020)
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Journal Article
Microstructure characterizations, thermal properties, yield stress, plastic viscosity and compression strength of cement paste modified with nanosilica
Mohammed, Ahmed, Rafiq, Serwan, Mahmood, Wael, Noaman, Riyadh, AL-Darkazali, Hind, Ghafor, Kawan, Qadir, Warzer
Published in Journal of materials research and technology (01.09.2020)
Published in Journal of materials research and technology (01.09.2020)
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Journal Article
Artificial Neural Network and NLR techniques to predict the rheological properties and compression strength of cement past modified with nanoclay
Mohammed, Ahmed, Rafiq, Serwan, Mahmood, Wael, Al-Darkazalir, Hind, Noaman, Riyadh, Qadir, Warzer, Ghafor, Kawan
Published in Ain Shams Engineering Journal (01.06.2021)
Published in Ain Shams Engineering Journal (01.06.2021)
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Journal Article
Microstructure tests, flow, and mechanical behavior of polymerized cement mortar
Salih Mohammed, Ahmed, Mahmood, Wael, Sarwar Qadir, Warzer, Ghafor, Kawan, Kurda, Rawaz
Published in Ain Shams Engineering Journal (05.04.2023)
Published in Ain Shams Engineering Journal (05.04.2023)
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Journal Article
Effect of Particle Size Distribution of Sand on Mechanical Properties of Cement Mortar Modified with Microsilica
Ghafor, Kawan, Mahmood, Wael, Qadir, Warzer, Mohammed, Ahmed
Published in ACI materials journal (01.01.2020)
Published in ACI materials journal (01.01.2020)
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Journal Article
Characterization and modeling the flow behavior and compression strength of the cement paste modified with silica nano-size at different temperature conditions
Mohammed, Ahmed, Rafiq, Serwan, Mahmood, Wael, Noaman, Riyadh, Ghafor, Kawan, Qadir, Warzer, Kadhum, Quraish
Published in Construction & building materials (10.10.2020)
Published in Construction & building materials (10.10.2020)
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Journal Article
Statistical variations and new correlation models to predict the mechanical behaviour of the cement mortar modified with silica fume
Ghafor, Kawan, Qadir, Sarwar, Mahmood, Wael, Mohammed, Ahmed
Published in Geomechanics and geoengineering : an international journal (02.01.2022)
Published in Geomechanics and geoengineering : an international journal (02.01.2022)
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Journal Article
Systemic multi-scale approaches to predict the flowability at various temperature and mechanical properties of cement paste modified with nano-calcium carbonate
Salih, Ahmed, Rafiq, Serwan, Mahmood, Wael, AL-Darkazali, Hind, Noaman, Riyadh, Ghafor, Kawan, Qadir, Warzer
Published in Construction & building materials (30.11.2020)
Published in Construction & building materials (30.11.2020)
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Journal Article
Systematic multiscale models to predict the effect of high-volume fly ash on the maximum compression stress of cement-based mortar at various water/cement ratios and curing times
Salih, Ahmed, Rafiq, Serwan, Sihag, Parveen, Ghafor, Kawan, Mahmood, Wael, Sarwar, Warzer
Published in Measurement : journal of the International Measurement Confederation (01.02.2021)
Published in Measurement : journal of the International Measurement Confederation (01.02.2021)
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Journal Article
Quantification the effect of microsand on the compressive, tensile, flexural strengths, and modulus of elasticity of normal strength concrete
Burhan, Lajan, Ghafor, Kawan, Mohammed, Ahmed
Published in Geomechanics and geoengineering : an international journal (02.11.2021)
Published in Geomechanics and geoengineering : an international journal (02.11.2021)
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Journal Article
Prediction of concrete materials compressive strength using surrogate models
Emad, Wael, Salih Mohammed, Ahmed, Kurda, Rawaz, Ghafor, Kawan, Cavaleri, Liborio, M.A.Qaidi, Shaker, Hassan, A.M.T., Asteris, Panagiotis G.
Published in Structures (Oxford) (01.12.2022)
Published in Structures (Oxford) (01.12.2022)
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