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Mr. Bodduru Kamesh

Mr. Bodduru Kamesh

Assistant Professor, Mechanical Engineering (ME)

bodduru.kamesh@sharda.ac.in

About

Mr. Bodduru Kamesh is Assistant Professor of the Department of Mechanical Engineering (Design and Manufacturing) in the School of Engineering and Technology, Sharda University, India. He holds a full time Ph.D. from Sharda University, specializing in Honeycomb Cored Sandwich Composite on Static and Structural Dynamics. He earned his M.Tech. in Mechanical (Computer Aided Design and Manufacturing) from Gayatri Vidya Parishad College of Engineering (Autonomous), Visakhapatnam, and B.Tech in Mechanical Engineering from Kakinada Institute of Engineering & Technology affiliated to JNTU University Kakinada, Andhra Pradesh. Mr. Kamesh worked as Junior Research fellow (JRF) Two DST-SERB Project. He interests encompass Static, mechanical and Dynamics of composite structures, Honeycomb Structures, Hybrid sandwich modeling, tapered and laminated composites and Cutting. He has an impressive publication record with over twelve research papers in SCI Indexed high-impact factor international journals.

Experience
  • Assistant Professor, Sharda University, Greater Noida, Oct 2023 – Continuing.
  • Junior research fellow (JRF) DEST-SERB Funded Project, Sharda University, Greater Noida, Mar 2021- Mar 2022.
  • Junior research fellow (JRF) DEST-SERB Funded Project, Gayatri Vidya Parishad College of Engineering (Autonomous),
Qualification
  • Ph.D. (Full Time) in Mechanical Engineering (Pre-PhD submission) from Sharda University, Greater Noida (2020-2023). Thesis title: Synergistic Effect of MXene and Carbon Nanotube on the Mechanical and Structural Response of Epoxy based Honeycomb Core Sandwich Nanocomposites.
  • M.Tech (Full Time)  in Mechanical Engineering (Computer Aided Design & Manufacturing) from GVPCE (A) Engineering & Technology affiliated to JNTU University, Visakhapatnam, Andhra Pradesh (2016-2018- CGPA 7.9/10, First Class with Distinction).
  • B.Tech (Full Time)  in Manufacturing Engineering from Kakinada Institute of Engineering & Technology affiliated to JNTU University Kakinada, Andhra Pradesh (2012 – 2016- CGPA 6.3/10 First Class).
  • XII from Government Junior college, Parvathipuram, Andhra Pradesh (2010–2012, Percentage: 65.2%).
  • X from Z.P.H School, Kotturu, Andhra Pradesh (2001–2010, Percentage: 67%).
Award & Recognition

  • International Journals under SCI and Scopus Indexed : 11
  • Journal Papers through International Conferences Scopus Indexed: 07
  • Reviewer of international journal of advanced mechanical engineering
  • I worked for NAC in IQAC at Sharda University.
  • Conducted seminar on National Seminar on Emerging trends in Nano-Materials and their Engineering Applications (NSENMEA-2019) as assistant DST-SERB Sponsored.
  •  Attended Faculty Development program on Serial and Parallel Robotics: Analysis, Design and Applications.
  • Attended Faculty Development program on Pedagogical Training on Outcome Based Education.
  • Obtained 646 rank in APPGECET 2016.
  • Industrial training in Hindustan shipyard limited in shipbuilding design.
  • Designed and Participated in robotics workshop on line follower in KIET Engineering College.

Research

International Journals

  • Bodduru, K., Singh, L. K., Kassa, M. K., Al-Fatlawi, A., & Arumugam, A. B. (2023). Thermo-mechanical Properties of Sandwich Composite Plates with MWCNT Reinforced Honeycomb Core: A Numerical and Experimental Study. Fibers and Polymers, 1-16
  • Bodduru, K., Singh, L. K., Kassa, M. K., Maddamsetty, A., & Arumugam, A. B. (2023). Influence of MXene, graphene nanoplatelet and multi-walled carbon nanotube on mechanical properties, swelling and flammability behaviour of hybrid sisal/glass fibre reinforced epoxy laminate composites. Materials Research Express, 10(4), 045002.
  • Kamesh, B., Singh, L. K., Kassa, M. K., & Arumugam, A. B. (2023). Synergetic effect of incorporating graphene, CNT and hybrid nanoparticles on the mechanical properties of glass fiber reinforced epoxy laminated composites. Cogent Engineering, 10(1), 2232604.
  • Maddamasetty, A., Bodduru, K., Bevara, S., Revuru, R. S., & Kumar, S. (2022). Performance evaluation of graphene added nanofluids and self-lubricating tools in machining Inconel 718. World Journal of Engineering, 19(4), 583-593.
  • Amrita, M., Kamesh, B., Revuru, R. S., Bharati, M. S. S., Chandu, B., & Rao, S. V. (2022). Experimental investigation on effect of inclusion of graphene while machining Ti6Al4V. International Journal of Machining and Machinability of Materials, 24(1-2), 149-164.
  • Amrita, M., Kamesh, B., Srikant, R. R., Bharati, M. S. S., Chandu, B., & Soma, V. R. (2022). Sustainability Evaluation of Machining Ti6Al4V with Graphene Inclusion. International Journal of Automotive and Mechanical Engineering, 19(2), 9647-9659.
  • Maddamasetty, A., Bodduru, K., & Revuru, R. S. (2021). Preparation, characterisation and testing of graphene self-lubricated tungsten carbide tools for sustainable turning. International Journal of Machining and Machinability of Materials, 23(4), 327-347.
  • Maddamasetty, A., Bodduru, K., & Revuru, R. S. (2021). Preparation, characterisation and testing of graphene self-lubricated tungsten carbide tools for sustainable turning. International Journal of Machining and Machinability of Materials, 23(4), 327-347.
  • Amrita, M., Revuru, R. S., Siva, B., & Kamesh, B. (2021). Sustainability Analysis of Machining Inconel 718 Using Graphene-Based Nanofluids and Self-Lubricating Tools. Smart and Sustainable Manufacturing Systems, 5(1), 219-241.
  • Amrita, M., & Kamesh, B. (2021). Optimization of graphene based minimum quantity lubrication of Inconel718 turning with multiple machining performances. Materials Today: Proceedings, 39, 1337-1344.
  • Amrita, M., Kamesh, B., Revuru, R. S., & Venkataramana, V. S. N. (2021). Tribological Behavior of Graphene-Dispersed Emulsifier Cutting Fluid. Journal of The Institution of Engineers (India): Series C, 102(4), 1091-1097.
  • Amrita, M., Kamesh, B., Srikant, R. R., Prithiviraajan, R. N., & Reddy, K. S. (2019). Thermal enhancement of graphene dispersed emulsifier-cutting fluid with different surfactants. Materials Research Express, 6 (12), 125030.

International Conference Papers Published in Scopus Indexed Journals

  • Bodduru, K., Singh, L. K., Amrita, M., Anbumani, P., & Singh, A. P. (2023). Influence of MXene and carbon nanotube on the mechanical properties of sisal fibre/glass fibre reinforced epoxy composite laminates. Materials Today: Proceedings.
  • Bodduru, K., Kumar, S., Kandpal, B. C., Johri, N., Arunprasath, K., & Singh, L. K. (2023). Effect of MXene reinforcement on bending behavior of glass fiber-epoxy based laminated composites. Materials Today: Proceedings.
  • Amrita, M., Kamesh, B., & Sree, K. L. S. (2022). Multi-response optimization in machining Ti6Al4V using graphene dispersed emulsifier oil. Materials Today: Proceedings, 62, 1179-1188.
  • Amrita, M., Kamesh, B., & Sree, K. L. S. (2022). Multi-response optimization in machining Ti6Al4V using graphene dispersed emulsifier oil. Materials Today: Proceedings, 62, 1179-1188.
  • Kishore, M., Amrita, M., & Kamesh, B. (2021). Tribological properties of basalt-jute hybrid composite with graphene as nanofiller. Materials Today: Proceedings, 43, 244-249.
  • Kishore, M., Amrita, M., & Kamesh, B. (2021). Experimental investigation of milling on basalt-jute hybrid composites with graphene as nanofiller. Materials Today: Proceedings, 43, 726-730.
  • Bevara, S., Amrita, M., Kumar, S., & Kamesh, B. (2020). Effect of graphene nanofluid on machining inconel 718. In Advances in Applied Mechanical Engineering: Select Proceedings of ICAMER 2019 (pp. 913-920). Springer Singapore.

Consulting work:

  • Working on the consulting problems through Sharda University- Advance Valves, Noida collaboration. (a) Structural analysis of triple offset butterfly valves at elevated temperature (b) Structural analysis of axial flow check valve at elevated temperature.

Area of Interest

  • Polymer Composite Structures.
  • Hybrid Composite Materials Modelling, Designing and Manufacturing.
  • Cutting Fluids and Cutting Tools on Machining.