Mena Souliman, Ph.D.

Affiliations: 
2012 Civil and Environmental Engineering Arizona State University, Tempe, AZ, United States 
Area:
Civil Engineering
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"Mena Souliman"

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Matthew W. Witczak grad student 2012 Arizona State
 (Integrated Predictive Model for Healing and Fatigue Endurance Limit for Asphalt Concrete.)
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Publications

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Walubita LF, Nyamuhokya TP, Torres LPO, et al. (2020) Laboratory evaluation of grid-reinforced HMA beams using the flexural bending-beam fatigue (FBBF) test in load-controlled mode International Journal of Pavement Engineering. 1-15
Souliman M, Zeiada WA, Arab M, et al. (2019) Effect of asphalt binders with identical PG grading from different suppliers on the laboratory performance of asphalt mixture International Journal of Pavement Research and Technology. 12: 117-124
Zhang J, Simate GS, Hu X, et al. (2017) Impact of recycled asphalt materials on asphalt binder properties and rutting and cracking performance of plant-produced mixtures Construction and Building Materials. 155: 654-663
Souliman MI, Eifert A. (2016) Mechanistic and Economical Characteristics of Asphalt Rubber Mixtures Advances in Civil Engineering. 2016
Mamlouk M, Souliman MI. (2016) Reducing inconsistency of HMA flexure fatigue testing Journal of Materials in Civil Engineering. 28
Chamoun Z, Souliman MI, Hajj EY, et al. (2015) Evaluation of select warm mix additives with polymer and rubber modified asphalt mixtures Canadian Journal of Civil Engineering. 42: 377-388
Souliman MI, Piratheepan M, Hajj EY, et al. (2015) Impact of lime on the mechanical and mechanistic performance of hot mixed asphalt mixtures Road Materials and Pavement Design. 16: 421-444
Zeiada WA, Souliman MI, Kaloush KE, et al. (2014) Comparison of fatigue damage, healing, and endurance limit with beam and uniaxial fatigue tests Transportation Research Record. 2447: 32-41
Souliman MI, Mamlouk M, Kaloush KE. (2014) Preliminary prediction of endurance limit for asphalt rubber mixtures due to healing Canadian Journal of Civil Engineering. 41: 964-969
Zeiada WA, Souliman MI, Kaloush KE, et al. (2014) Endurance limit for HMA based on healing concept using uniaxial tension-compression fatigue test Journal of Materials in Civil Engineering. 26
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