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Dr Raghavendra CR

Associate Professor/Mechanical Engineering · Commissionerate of collegiate education, Government of Karnataka

https://researchid.co/raghavendra.crclk
@dce.karnataka.gov.in
40Scopus Publications
433Google Scholar Citations
13Google Scholar h-index
14Google Scholar i10-index

Research Interests

Tribology, Nano materials, Coatings, Heat transfer

Biography

Faculty Profile -Government Engineering College, Haveri Faculty ID:2372384 Dr. Raghavendra CR Associate Professor Department of Mechanical Engineering Government Engineering College Haveri-581110, Karnataka, India Ph: +919845762686 E-mail: raghavendra.crclk@gmail.com dr.raghavendracr@gmail.com ORCID ID: 0000-0002-4160-1932 Vision: I will provide the best technical knowledge to the students of undergraduate and post graduate, helping myself gain enhanced skills and to reach peak in the research filed with optimistic determination, dedication, and hard work. Educational Qualification: • Post-Graduation Diploma in Artificial Intelligence and Machine learning, NIT Warangal and EDUREKA Bengaluru, in 2022. • Ph.D. in Mechanical Engineering Science at University B. D. T College of Engineering, Davanagere, in 2019. • M.E in Thermal Science and Engineering at University Visvesvaraya College of Engineering, (U.V.C.E) Bengaluru, 2008. • B.E in Mechanical Engineering at Sir.

Education

BE, ME, PGD(AIML), PhD,MIE

Recent Scopus Publications

  1. Influence of nano CeO2 particles and surface roughness on wear behavior and heat maps of WC composite coating
    Nano Structures and Nano Objects, 2026
  2. Basalt Fiber Reinforced WC Nanofillers Based Polymer Nanocomposites: Characterization and Evaluation Study
    Journal of Natural Fibers, 2026
  3. Tribological behavior of NiCrB/α-Al2O3/Graphene nano particle coating by plasma spray method
    Results in Surfaces and Interfaces, 2026
  4. NiCrAlY plasma sprayed coatings: A critical review
    Results in Surfaces and Interfaces, 2025
  5. Arduino based temperature measurement in Ni-α Al2O3 nano composite coating under dry sliding wear conditions
    Results in Surfaces and Interfaces, 2025

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