Kulmani Mehar
Manipal Academy of Higher Education, Madanapalle Institute of Technology and Science, National Institute of Technology Rourkela, Vignan's Institute of Information Technology
About
Dr. Kulmani Mehar is an Assistant Professor in the Department of Mechanical and Industrial Engineering at Manipal Institute of Technology, Manipal. His research focuses on smart materials, thermoelastic analysis, and functionally graded composite structures. He has published over 64 SCI/SCIE-indexed papers and has been listed in the Stanford University Global Top 2% Scientist ranking for the past five consecutive years. His work integrates advanced modelling, experimental validation, and interdisciplinary collaboration across materials and structural mechanics.
Employment
-
Manipal Academy of Higher Education Assistant Professor2022 - Present
-
Vignan's Institute of Information Technology Associate Professor2021 - 2022
-
Madanapalle Institute of Technology and Science Asst. Professor2018 - Present
Education
-
National Institute of Technology Rourkela Ph.D.2014 - Present
Projects & Funding
Projects & funding information is unavailable.
Publications (77)
- Development of granite waste nanoparticle-reinforced Montrichardia linifera /epoxy hybrid composites: a step towards sustainable materials for lightweight applications Save
- Comprehensive evaluation of agave cantala fiber: structural robustness, mechanical behavior, and antimicrobial properties for multifunctional bio-material applications Save
- Nonlinear numerical thermoelastic frequency prediction of hybrid smart (SMA bonded) nanocomposite doubly curved structure Save
- Digital Intelligence for Power Transmission and Distribution in Low‐Carbon Multi‐Energy Systems: Reference Architecture, Digital Twins, and Physics‐Data Hybrid Methods Save
- A Review of Model Uncertainty, Cyber–Physical Threats and Assurance Frameworks for Safety‐Critical AI in Process Industries Save
- Green nanofuel strategy on performance, emission, and combustion characteristics of graphene-integrated tamanu biodiesel blends Save
- Decentralized pyrolysis of hospital plastic waste for diesel-range fuel recovery: a technological and economic feasibility study Save
- Bioenergy with carbon capture and storage: technological pathways, global implementations, and future prospects Save
- Hybrid photovoltaic–thermal energy storage–thermoelectric system for enhanced solar energy harvesting Save
- Optimized microstructural, mechanical, and tribological properties of Ti-6Al-4V nanocomposites for next-generation dental implant applications Save