Suresh Vellingiri | Matrix Composites | Pioneer Researcher Award

Dr. Suresh Vellingiri | Matrix Composites | Pioneer Researcher Award

Associate Professor | Kalaignar karunanidhi Institute of Technology | India

Dr. Suresh Vellingiri is a distinguished academic and researcher in the field of Mechanical Engineering, currently serving as an Associate Professor at KIT–Kalaignarkarunanidhi Institute of Technology, Coimbatore. He holds a Ph.D. in Mechanical Engineering from Anna University, obtained in 2014, along with an M.E. in Engineering Design and a B.E. in Mechanical Engineering, both with first-class distinction. With over two decades of academic and research experience, including 11 years post-Ph.D., Dr. Vellingiri has made notable contributions in materials and manufacturing processes, composite materials, CAD/CAM, FEA, and additive manufacturing technologies. His doctoral research focused on the mechanical testing and machining parameter analysis of LM25 aluminium hybrid metal matrix composites reinforced with boron carbide and graphite. A recognized research supervisor under Anna University, he has published extensively in reputed journals, achieving over 970 citations with an h-index of 13 and i10-index of 16. His research includes innovative works on intelligent control systems, solar energy applications, and biofuels with nano-additives. Beyond research, Dr. Vellingiri has played several academic leadership roles, including Research Coordinator, NBA/NAAC Criteria Coordinator, and International Conference Organizer at various engineering institutions. His consistent efforts in promoting academic excellence, mentoring young researchers, and integrating modern design and manufacturing concepts into education exemplify his dedication to advancing engineering science and technology. Through his scholarly impact, leadership, and research innovation, Dr. Vellingiri continues to be a driving force in the evolving field of mechanical and manufacturing engineering.

Profile:  ORCID Google Scholar

Featured Publications

  • Perundyurai, T. S., Vellingiri, S., Rajendrian, S., Munusamy, S., & Chinnaiyan, S. (2020). K-nearest neighbour technique for the effective prediction of refrigeration parameter compatible for automobile. Thermal Science, 24(1 Part B), 565–569.

  • Vigneshkumar, N., Venkatasudhahar, M., Kumar, P. M., Ramesh, A., Subbiah, R., & Vellingiri, S. (2021). Investigation on indirect solar dryer for drying sliced potatoes using phase change materials (PCM). Materials Today: Proceedings, 47, 5233–5238.

  • Vasanthaseelan, S., Kumar, P. M., Anandkumar, R., Ram, K. H., Subbiah, R., & Vellingiri, S. (2021). Investigation on solar water heater with different types of turbulators. Materials Today: Proceedings, 47, 5203–5208.

  • Saravankumar, P. T., Suresh, V., Vijayan, V., & Godwin Antony, A. (2019). Ecological effect of corn oil biofuel with SiO₂ nano-additives. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 41, 1–10.

  • Sathish Kumar, A., Naveen, S., Vijayakumar, R., Suresh, V., Asary, A. R., & Others. (2023). An intelligent fuzzy-particle swarm optimization supervisory-based control of robot manipulator for industrial welding applications. Scientific Reports, 13(1), 8253.

Guoqing Yuan | aerospace, advanced manufacture | FRP Technical Achievement Award

Assoc. Prof. Dr. Guoqing Yuan | aerospace, advanced manufacture | FRP Technical Achievement Award

Associate Professor at Tongji University, China

Dr. Guoqing Yuan is an esteemed Associate Professor at the School of Aerospace Engineering and Applied Mechanics at Tongji University. Over the course of his academic and research career, he has significantly contributed to the field of composite materials, smart structural systems, and engineering mechanics. His work is recognized for its innovation, practical relevance, and scientific depth, particularly in advancing shape memory alloy (SMA) actuated composites and the mechanical performance of adhesives in extreme environments. Dr. Yuan’s dedication to research, teaching, and applied engineering solutions makes him an influential figure in modern mechanics and material science.

Education

Dr. Yuan received all of his higher education from Tongji University, a leading institution in engineering education in China. He earned his Ph.D. in Engineering Mechanics in 2002 after completing a Master’s degree in Computational Mechanics in 1990. His academic journey began with a Bachelor’s degree in Solid Mechanics in 1987. These foundational degrees have equipped him with a profound understanding of mechanical behavior, computation, and materials, forming the bedrock of his distinguished research career.

Experience

Dr. Yuan’s academic journey at Tongji University spans over three decades. Starting as an Assistant Lecturer in 1990, he was later promoted to Lecturer in 1993 and served in that role until 2001. He then became Associate Professor at the Institute of Solid and Applied Mechanics before transitioning in 2004 to the Institute of Composite Materials and Structures, where he continues to teach and conduct research. His professional roles have encompassed both teaching and leadership in research initiatives, mentoring students, and developing innovative methodologies in structural analysis and material engineering.

Research Interest

Dr. Yuan’s research interests are focused on advanced composite structures, shape memory alloy-reinforced smart materials, mechanical behavior of adhesives under low-temperature and high-strain-rate conditions, and stress simulations during composite curing processes. His studies address critical issues in aerospace, civil, and marine engineering, including durability, structural integrity, and material resilience under harsh environmental conditions. Ongoing projects include research into cold extrusion strengthening technology for slotted bushings and residual stress simulations at ultra-low temperatures, with a practical focus on enhancing composite performance and longevity.

Awards

Dr. Yuan has been honored with several accolades for his research and technological innovation. Notably, he received the 2011 Research Award from the Navigation Society for Technological Progress for his work on FRP-reinforced concrete structures used in port engineering. He also holds multiple Chinese patents, such as those related to FRP end anchorage testing, SMA actuator design, and FRP coaxial connections, reflecting both his engineering ingenuity and impact on applied mechanics. These recognitions underline his dedication to advancing practical applications in composite material systems.

Publications

Dr. Yuan has authored numerous high-impact journal articles that have attracted significant scholarly attention. Selected publications include:
(1) “Structural deformation performance of glass fiber reinforced polymer composite beam actuated by embedded indented SMA wires,” Composites Part B, 2019 – Cited by 55 articles;


(2) “Shear properties of polyurethane ductile adhesive at low temperatures under high strain rate conditions,” Composites Part B, 2019 – Cited by 42 articles;


(3) “Effect of high loading rate and low temperature on mode I fracture toughness of ductile polyurethane adhesive,” Journal of Adhesion Science and Technology, 2019 – Cited by 28 articles;


(4) “Enhancement of interfacial bonding strength of SMA smart composites by using mechanical indented method,” Composites Part B, 2016 – Cited by 61 articles;


(5) “Numerical study on the mechanical behavior of a polyurethane adhesive under high strain rate,” Composites Part B, 2019 – Cited by 33 articles;


(6) “Experimental and numerical study on the behavior of SMA wire reinforced smart composites,” Composites Science and Technology, 2015 – Cited by 48 articles;


(7) “Simulation and control of residual stress in thermoset composites,” Journal of Composite Materials, 2020 – Cited by 21 articles.
These publications highlight Dr. Yuan’s consistent and impactful contributions to the understanding and advancement of material behavior in engineering applications.

Conclusion

Dr. Guoqing Yuan presents a well-rounded and impressive profile in the realm of Fiber Reinforced Polymers. With a strong academic foundation, extensive publication record, impactful research projects, multiple practical patents, and relevant awards, he exemplifies the caliber of a deserving recipient of the FRP Technical Achievement Award.