Souhila Khobzaoui | Computational Metallurgy | Women in Metallurgy Award

Dr. Souhila Khobzaoui | Computational Metallurgy | Women in Metallurgy Award

ESSA Tlemcen algeria | Algeria

Souhila Khobzaoui Benabdelmoumene is a materials engineer and Associate Professor (Maître de Conférences, Class B) and teacher-researcher at the École Supérieure des Sciences Appliquées (ESSA), Tlemcen, Algeria. She holds a Doctorate in Science specializing in polymer physics from Abou Bekr Belkaid University of Tlemcen, focused on the characterization and physical properties of bentonite/acrylamide-based composite materials. Her academic background also includes a Magister degree in electronic physics and modeling and a postgraduate diploma in polymer physics. She has accumulated extensive teaching and research experience in physics, materials science, electronics, mechanics, and fluid mechanics, with international research exposure in France and Spain. Her research interests cover polymer composites, nanocomposites, conductive polymers, surface engineering, mechanical characterization, and ab initio materials modeling, supported by advanced experimental techniques such as XRD, FTIR, SEM, DSC, TGA, nano-indentation, and micro-indentation. She has authored 2 scientific documents, receiving 4 citations, with a current h-index of 1, reflecting emerging scholarly impact. She actively participates in scientific events, multidisciplinary research projects, and academic development initiatives. Overall, her profile demonstrates strong engagement in higher education, experimental and computational materials research, and the advancement of polymer and composite materials science.

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Featured Publications

Regasa Yadeta Sembeta | Civil Engineering | Research Excellence Award

Mr. Regasa Yadeta Sembeta | Civil Engineering | Research Excellence Award

Mattu University | Ethiopia

Regasa Yadeta Sembeta is a civil engineer with a Master of Science in Structural Engineering from Jimma Institute of Technology and a B.Sc. in Civil Engineering from Mattu University. Since 2009 he has served as a teacher, researcher, reviewer and community-service academic, progressing to an editorial-board position at Mattu University through sustained academic contributions. His research spans structural and sustainable construction engineering, including finite-element analysis of encased composite columns, performance evaluation under monotonic and cyclic loads, and sustainability-driven materials design such as geopolymer concrete using industrial by-products e.g. copper slag, recycled aggregate, GGBFS and natural fibers e.g. bamboo fiber. Through numerous peer-reviewed publications he has advanced understanding in load-capacity modeling of composite columns, mechanical and thermal performance of sustainable/conventional concrete, and optimization of fiber-reinforced composite materials. His work reflects a strong commitment to combining structural performance with environmental sustainability, computational modelling, and innovative materials research. With 10 Documents publications, 29 citations, and an h-index of 3, his academic impact shows both breadth and influence in the civil/construction engineering community. He remains dedicated to mentoring students, expanding sustainable construction research, and contributing to community-oriented engineering education.

Profiles: Scopus | Google Scholar | Orcid

Featured Publications

Yadeta Sembeta, R., & Zerfu, K. (2023). Finite element‐based performance analysis of encased composite columns under monotonic axial compression load. Advances in Civil Engineering, 2023(1), 5974705.

Yadeta Sembeta, R., Zerfu, K., Mersha, M., & Agon, E. C. (2024). The effects of different steel sections on the performance of encased composite columns under cyclic lateral loads. Results in Engineering, 24, 103510.

Yadeta Sembeta, R., Rath, B., Agon, E. C., Dereje, B., Garoma, S., Debela, A., & Kebede, K. (2023). Modification of load carrying capacity model for composite columns. Journal of Building Pathology and Rehabilitation, 8(1), 11.

Yadeta Sembeta, R., Arunvivek, G. K., Anandaraj, S., Kumar, P., & Pratap, B. (2025). Compressive strength modelling of cenosphere and copper slag–based geopolymer concrete using deep learning model. Scientific Reports, 15(1), 27849.

Yadeta Sembeta, R., Paswan, R. K., Kumar, P., & Kumar, V. (2025). Mechanical properties of alkali-activated slag binder–based concrete at elevated temperatures. Discover Sustainability, 6(1), 744.