Faculty

Faculty List

Dr. VSR Naga Santhosi Bhyri

M.Tech, Ph.D
Assistant Professor
Science & Humanities
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Education:

  • 2022 - Ph.D. (Nanotechnology) from Andhra University
  • 2013 - M. Tech (Nanotechnology) from Andhra University
  • 2009 - B. Sc (M.P.C) from SSN Degree College (AU)


Experience:

  • APR 2022 to Present - Assistant Professor (MVGR College Of Engineering (A))
  • SEP 2022 – NOV 2023 - IIC Member (MVGR College Of Engineering (A))
  • MAR 2014 - SEP 2015 - Research Assistant (Andhra University)


Journal Publications (International/National):

  1. Nagaraju, D., Mohammad, A. R., Santhosi, B., Kolla, N. K., & Tota, R. K. (2023). Experimental and numerical analysis of convective heat transfer and entropy generation of graphene/water nanofluid in AEAOT heat exchanger. Journal of the Taiwan Institute of Chemical Engineers, 150, 105022.
  2. Santhosi, B., Ramji, K., Rao, N. B. R. M., Nagaraju, D., & Naidu, M. K. (2023). Microwave absorption analysis of graphene-based hybrid nanocomposites: experimental, numerical and component level testing studies. Plastics, Rubber and Composites, 52(3), 129–144.
  3. Nagaraju, D., Abdul Razack, M., V.S.R.N. Santhosi, B., Narendra Kumar, K., & Rakesh Kumar, T. (2023). Experimental and numerical analysis of convective heat transfer and entropy generation of graphene/water nanofluid in AEAOT heat exchanger. Journal of the Taiwan Institute of Chemical Engineers, 150, 105022.
  4. Mohammad, A. R., Nagaraju, D., Kolla, N. K., & Santhosi, B. (2022). Effective utilization of CuO/water nanofluid potential in the natural circulation loop. International Journal of Environmental Science and Technology, 1–16.
  5. Santhosi, B., Ramji, K., & Rao, N. B. R. M. (2021). Microwave absorption performance enhancement using glass fiber-reinforced polymer nanocomposites containing dielectric fillers in X-band. Polymers and Polymer Composites, 29(5), 444–455.
  6. Santhosi, B., Ramji, K., & Rao, N. B. R. M. (2020). Design and development of polymeric nanocomposite reinforced with graphene for effective EMI shielding in X-band. Physica B: Condensed Matter, 586, 412144.
  7. Santhosi, B., Ramji, K., Rao, N. B. R. M., & Naidu, M. K. (2020). Comparative study of polymer-based nanocomposites microwave absorption performance in X–band. Materials Research Express, 7(1), 015324.
  8. Tammareddy, H., Ramji, K., Sree, P. S. N., & Santhosi, B. (2019). Complex permittivity, permeability and microwave absorbing properties of PANI coated MWCNTs/Manganese Zinc ferrite nanocomposite. Materials Today: Proceedings, 18, 420–425.
  9. Nagasree, P. S., Ramji, K., Haritha, T., & Santoshi, B. (2019). Polymer based MWCNT/Nickel Zinc Ferritenanocomposites for RAS application with simulation. Materials Today: Proceedings, 18, 406–412.
  10. Santhosi, B., Ramji, K., & Rao, N. B. R. M. (2019). Optimization of double layered graphene-based microwave absorber in X—band using Pareto genetic algorithm. Materials Research Express, 6(10), 105610.
  11. Naidu, M. K., Ramji, K., Santhosi, B., Shami, T. C., Baskey, H. B., & Satyanarayana, B. (2017). Enhanced microwave absorption of quartic layered epoxy-mwcnt composite for radar applications. Advanced Composites Letters, 26(4), 096369351702600405.
  12. Naidu, M. K., Ramji, K., Santhosi, B., Krushna Murthy, K., Subrahmanyam, C., & Satyanarayana, B. (2018). Influence of NiFe alloy nanopowder on electromagnetic and microwave absorption properties of MWCNT/Epoxy composite. Advances in Polymer Technology, 37(2), 622–628.
  13. Ramji, K., Naidu, M. K., & Santhosi, B. (2015). Simulation of multi layered Radar Absorbing Structure of epoxy based MWNTs for better microwave absorption.
  14. B. V. S. R. N. Santhosi M. K. Naidu B. Satyanarayana, K. R. (2016). Dielectric characterization and micro wave absorption of epoxy-MWCNT composites for RADAR applications. Proceedings of Two Day National Seminar on Characterization Techniques of Materials, 2016.
  15. B V S R N Santhosi Prof K Ramji, M. K. N. (2016). MULTILAYERED RAS OPTIMIZATION COMPOSED OF MWCNTs AND CB USING GENETIC ALGORITHM. APSC 2016.