Sangam Sangral | Mechanical Metallurgy | Best Researcher Award

Dr. Sangam Sangral | Mechanical Metallurgy | Best Researcher Award

University of Palermo | Italy

Dr. Sangam Sangral is a researcher at the University of Palermo, Italy, specializing in materials processing, fatigue analysis, and additive manufacturing. He holds degrees in Mechanical and Materials Engineering, with a strong foundation in metallurgical research. His doctoral work focused on enhancing the fretting fatigue strength of titanium, nickel-based superalloys, and magnesium alloys using friction stir processing, complemented by international research collaboration in Japan. His contributions include studies on fatigue behavior, microstructural evolution, and additive manufacturing of smart and functional alloys such as Nitinol. He has completed several research projects on naval steel, metal matrix composites, and WAAM-based fabrication of alloys, demonstrating expertise in structure–property correlation and advanced material design. Dr. Sangral has published 9 documents in reputed SCI and Scopus-indexed journals, with 42 citations and an h-index of 5, reflecting his growing impact in materials engineering research. His work integrates experimental investigations with computational modeling, promoting sustainable and high-performance materials for industrial and biomedical applications. Through continuous innovation, he aims to advance the fields of fatigue, additive manufacturing, and materials characterization to support next-generation engineering solutions.

Profiles: Scopus | Google Scholar 

Featured Publications

Sangral, S., & Sharma, R. (2022). Enhancement of fretting fatigue resistance in titanium alloys through friction stir processing. Journal of Materials Engineering and Performance, 31(8), 5204–5216.

Sangral, S., & Kumar, A. (2021). Microstructure and fatigue behavior of high-strength naval steel under low cycle loading conditions. Materials Today: Proceedings, 45, 3780–3788.

Sangral, S., & Rao, S. (2023). Influence of reinforced particles on fatigue life of Ni-based superalloys processed via friction stir technique. International Journal of Fatigue, 167, 107361.

Sangral, S., & Gupta, V. (2022). Fabrication and mechanical characterization of aluminum–steel joints using wire arc additive manufacturing (WAAM) with CMT process. Journal of Manufacturing Processes, 79, 995–1005.

Sangral, S., & Tanaka, H. (2024). Additive manufacturing of Nitinol alloys for biomedical applications: Microstructural evolution and mechanical properties. Materials Science and Engineering: A, 889, 145674.

Lin Yue-Feng | Surface Engineering | Best Researcher Award

Mr. Lin Yue-Feng | Surface Engineering | Best Researcher Award

National Chin-Yi University of Technology | Taiwan

Dr. Yue-Feng Lin is an accomplished researcher and academic specializing in intelligent manufacturing, semiconductor material processing, and precision machining. His work integrates ultrasonic-assisted machining, diamond-wire wafer slicing, and AI-based optimization to enhance precision, efficiency, and sustainability in modern manufacturing. He has completed eight government-funded projects, including two ongoing, and collaborated on industry-academia projects focused on semiconductor process optimization, smart manufacturing, and low-carbon production. which have received 16 citations from 13 documents, with an h-index of 3. He also holds four granted patents and has authored two technical books on advanced material processing and ultrasonic vibration-assisted machining. In addition to his research achievements, he serves as a reviewer for Sensors and Materials and CSME Journal. Dr. Lin’s interdisciplinary expertise bridges academic research and industrial application, driving innovation in precision engineering and sustainable manufacturing. His continued dedication to research excellence and collaborative development contributes significantly to advancing smart manufacturing technologies and promoting global competitiveness in next-generation production systems.

Profiles: Scopus Orcid

Featured Publications

Lin, Y.-F., Chen, M.-C., Ven, S.-I., Tzoi, M.-R., & Chuong, T.-M. (2025). Intelligent casting method integrating anomaly detection and semantic segmentation. Machines, 13(1), 317.

Lin, Y.-F., Wang, Y.-C., Lien, H.-H., & Tzoi, M. (2016). Geometric-overlap modeling and sweep uniformity optimization of five diamond conditioning disks. International Journal of Advanced Manufacturing Technology, 87(5–8), 225–3710.

Lin, Y.-F., & Wang, Y.-C. (2021). Optimization of ultrasonic-assisted cutting parameters using AI-based prediction models. Applied Sciences, 11(22), 11840.

Lin, Y.-F., Chen, M.-C., & Lien, H.-H. (2020). Analysis of diamond-wire slicing characteristics in semiconductor wafer processing. Materials, 13(15), 3325.

Lin, Y.-F., & Tzoi, M.-R. (2019). Precision control of ultrasonic vibration-assisted machining for difficult-to-cut materials. International Journal of Advanced Manufacturing Technology, 102(1–4), 145–156.

 

Olufisayo Emmanuel Ojo | Sustainable Metallurgy | Best Researcher Award

Mr. Olufisayo Emmanuel Ojo | Sustainable Metallurgy | Best Researcher Award

Durban University of Technology | South Africa

Mr.Ojo Olufisayo Emmanuel, R.Engr., IEng (UK), M.I.E.T, MNSE. An accomplished Electromechanical and Water Engineer with over 18 years of professional experience in mechanical systems design, project management, and sustainable infrastructure development across international development projects funded by organizations such as the World Bank, USAID, AFD, and atmosfair gGmbH. The engineer holds an MSc (Research) in Mechanical Engineering from the University of KwaZulu-Natal, South Africa, and is currently pursuing doctoral degrees in Mechanical and Industrial Engineering. Their research contributions have significantly advanced the fields of renewable energy, desalination systems, and sustainable water technologies. Publications in collaboration with leading experts have explored renewable-energy-powered reverse osmosis, biodiesel optimization, and membrane desalination modeling. Extensive professional practice includes managing water treatment plant projects, developing asset management frameworks, and leading multidisciplinary teams for infrastructure delivery. Recognized for leadership, innovation, and technical excellence, they have designed and supervised numerous water and energy projects across Africa. Their current research interests focus on renewable energy systems, water treatment, and environmental sustainability. Committed to bridging theory and practice, they continue to contribute to engineering advancement through applied research, innovation, and sustainable technology development for global energy and water security.

Profiles: Google Scholar | Orcid

Featured Publications

Ojo, E. O., & Inambao, F. (2020). A review of renewable power generation using piezoelectric materials. International Journal of Mechanical Engineering and Technology, 10(12), 559–577.

Ojo, E. O., Inambao, F., & Ige, O. E. (2023). Modeling and simulation for a seawater reverse osmosis system. Journal of Materials Engineering, 51(2), 515–535.

Ojo, E. O., & Inambao, F. (2021). A review of renewable energy powered reverse osmosis system for seawater desalination. International Journal of Mechanical and Production Engineering Research and Development, 11(6), 73–90.

Olufisayo, O. E., & Olanrewaju, O. (2024). A review of renewable energy powered seawater desalination treatment process for zero waste. Water, 16(19), 2804.

Ojo, E. O., & Inambao, F. (2024). Additives and blends of biodiesel. Journal of Propulsion Technology, 45(1), 5032–5050.