
Dr Pagidi Madhukar
FeaturedAbout Candidate
I have a strong multidisciplinary background spanning materials science, mechanical engineering, Bioengineering and Indian knowledge systems. My doctoral work at NIT Warangal focused on the fabrication and experimental investigations of nanoparticle-reinforced Al7150 metal matrix composites, with expertise in stir casting, ultrasonic-assisted casting, functionally graded materials, and advanced characterization techniques (OM, SEM, XRD, DSC, FTIR, UTM, wear and tribological studies). I extended this into applications such as additive manufacturing, high-temperature shape memory alloys, biomaterials, and self-healing materials. At IIT Guwahati, my postdoctoral research explored ancient herbal plant-based applications for food grain preservation, bridging traditional knowledge with modern nanotechnology and sustainable storage solutions. Alongside, I have industry experience in applied R&D and teaching experience at leading Indian institutes. With 23 publications (17 SCI, 4 Scopus, 2 book chapters), an h-index of 10, and expertise in composite materials, nanotechnology, tribology, and sustainable biomaterials, your research demonstrates both depth and versatility. My current interests include developing advanced composites, plant-based nanomaterials, and functional materials for energy, health, and marine applications, aligning well with global research priorities in sustainability and advanced manufacturing.
Education
We developed a novel fabrication technique to fabricate nanoparticle-reinforced Al7150 MMCs. Especially looked at uniform distribution of nanoparticles in the liquid metal Identified the process parameters for the optimal distribution The effect of nanoparticle reinforcement on microstructure, density, microhardness, porosity and ultimate tensile strength was studied Tribological behaviour and optimal process parameters have been investigated for minimum wear loss and coefficient of friction Microstructure studies using the optical microscope for grain refinement and electron microscopy for nanoparticle distribution, fracture surface and wear surface Master
We designed a new tool (bundle electrode) for EDM process The research investigated optimal process parameters of EDM process for maximum MRR It proved the bundle electrode has better MRR is compared to conventional electrodes
I have completed my Bachelor's degree in Mechanical Engineering.
Work & Experience
Research and Development
Teaching and guiding the students
