Dr. Madhan Kumar Anbazhagan | Polymer Material | Research Excellence Award
Assistant Professor – Senior Grade at Saveetha Engineering College| India
Dr. A. Madhan Kumar is a distinguished researcher in mechanical and manufacturing engineering whose contributions to composite materials, machining studies, microstructural analysis, and mechanical characterization demonstrate strong alignment with the objectives of the Research Excellence Award. With a Scopus record of 74 citations, 9 indexed documents, and an h-index of 6, his research impact is evident across advanced manufacturing science and sustainable materials development. His work spans high-performance biocomposites, nanocomposites, lattice-structured materials, PLA-based green composites, and AI-driven engineering applications, reflecting a multidisciplinary approach that significantly advances materials engineering. His publications in leading journals such as the International Journal of Hydrogen Energy, Science Progress, Journal of Environmental Protection and Ecology, Springer Nature, Journal of Polymer Composites, and Materials: Design and Applications highlight his commitment to high-quality, peer-reviewed research. He has contributed to innovations including nanoparticle-enhanced biodiesel combustion, biocomposite packaging materials, 3D-printed carbon-fiber-reinforced structures, and machine-learning-driven analytics, showcasing both scientific rigor and societal relevance. His patents and ongoing contributions to composite machining, biodegradable material reinforcement, and performance characterization further enhance his research profile. Dr. Kumar’s extensive publication record, impactful citations, and continued engagement in emerging domains-such as AI-integrated materials research and environmentally conscious composite development-position him as a strong candidate for the Research Excellence Award, demonstrating consistent innovation, scholarly excellence, and meaningful contributions to engineering advancement.
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Featured Publications
Drilling Studies on Particle Board Composite Using HSS Twist Drill and Spade Drill
Crushing Behavior Optimization of Octagonal Lattice-Structured Thin-Walled 3D Printed CF/PETG Composite Tubes
Mechanical and Drilling Characterization of Biodegradable PLA Particulate Green Composites
Feasibility of Joining Techniques for 3D-Printed Polylactic Acid and Wood-Reinforced PLA Biocomposites
Enhancing the Performance of PLA Reinforced with Sawdust, Rice Husk, and Bagasse Particles