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Dr. M. Sandeep Kumar

Associate Professor
sandeepkumar.m@bvrit.ac.in

Ph.D.: – Manufacturing Technology, NIT Warangal, 2016
M.Tech: – Manufacturing Technology,NIT Calicut, 2010
B.E.: – Mechanical Engineering, Maharashtra College of Engineering, Latur, 2007

Teaching Experience: 10 years (along with R&D)

Contact Number: +91 7659004440
BVRITN Employee ID: 780
JNTUH Registration ID: 7211-150409-131146

  1. No. of B.Tech. projects guided: 15
  2. No. of international journal & international conference publications: 22
  1. Nanotechnology
  2. Machining
  3. Eco-Friendly Cutting Fluids
  4. Manufacturing Technology
  1. Process optimization

  2. Design of experiments

  3. Innovate Design

  4. Operations management

  5. Product Life Cycle Management


    • Research Gate Score:

      8.69

      Google scholar 

      Citations:

      345

      h-Index :

      11

      i10-Index :

      11

  1.  Received Best paper award at “International conference on Applied Mechanical Engineering Research ICAMER 2019” held at Department of Mechanical Engineering, National Institute of Technology, Warangal.

  2. In-charge for center for Nanotechnology: https://www.bvrit.ac.in/index.php/vishnuinnovation-labs-mechanical/center-for- nanotechnology

  3. Google Scholar:         https://scholar.google.co.in/citations?user=KI_H_W8AAAAJ&hl=en
  4. Scopus ID:                 https://www.scopus.com/authid/detail.uri?authorId=57290466300

International Journals

  1. Thermal Conductivity and Viscosity Of Vegetable Oil Based Cu, Zn And Cu-Zn Hybrid Nanofluids, Journal of Testing and Evaluation (ASTM), 2014, 44 (3), 1077-1083 (DOI: 10.1520/ JTE20140286), Impact factor 1.264 (SCI journal).
  2. Thermal Conductivity and Rheological Studies for Cu-Zn Hybrid Nanofluids with Various Basefluids, Journal of the Taiwan Institute of Chemical Engineers (Elsevier), 2016, 66, 321- 327 (DOI 10.1016/j.jtice.2016.05.033), Impact factor 5.477 (SCI journal).
  3. Investigation of Thermal conductivity and Rheological Properties of Vegetable Oil Based Hybrid Nanofluids Containing Cu-Zn Hybrid Nanoparticles, Experimental Heat Transfer (T & F), 2016, 1-17 (DOI 10.1080/08916152.2016.123317), Impact factor 4.058 (SCI journal).
  4. Thermal Conductivity of Cu-Zn Hybrid Newtonian Nanofluids: Experimental data and modelling using neural network, Procedia Engineering (Elsevier), 2015, 127, 561 – 567 (DOI 10.2016/j.proeng .2015.11.345) (Scopus journal).
  5. Rheological study of Cu-Zn Hybrid Newtonian Nano-fluids: Experimental data and modelling using neural network, Materials Today: Proceedings (Elsevier), 2017, 4, 1957–1963 (DOI 10.2016/ j.matpr.2017.02.041)(Scopus journal).
  6. A 3-D Simulation and Experimental Study of Cutting Forces in Turning Inconel-718, Materials Today: Proceedings (Elsevier), 2017, 4, 942-9945(Scopus journal). (Scopus journal).
  7. Temperature study in Turning Inconel-718: 3D Simulation and Experimentation, Materials Today: Proceedings (Elsevier), 2017, 4, 942-9945(Scopus journal).
  8. A Comprehensive Review of the Pigeon-Inspired Optimization Algorithm, International Journal of Engineering & Technology 7 (29), 358-361, 2018. (Scopus journal).
  9. Experimental Investigation on Performance of Hybrid PCM’s on Addition of Nano Particles in Thermal Energy Storage, Materials Today: Proceedings 17, 271-276, 2019(Scopus journal).
  10. Numerical analysis of forced convective heat transfer of nanofluids in microchannel for cooling electronic equipment, Materials Today: Proceedings 17, 295-302, 2019(Scopus journal).
  11. Investigation on Influence of Hybrid Nanofluid/MQL on Surface Roughness in Turning Inconel-718, Advances in Applied Mechanical Engineering, 1137-1145, 2020(Scopus journal).
  12. Analysis of Miniature Loop Heat Pipe under Varying Working Fluids and Wick Materials at Low Heat Inputs” Emerging Trends in Mechanical Engineering, 33-41, 2020 (Scopus journal).
  13. Fabrication and parametric optimization of SiO2-BN gel cast ceramic composites using response surface methodology, Materials Today: Proceedings, 18, 2298-2307, 2019 (Scopus journal).
  14. An Investigation on Turning AISI 1018 Steel with Hybrid Biodegradeable nanofluid/MQL Incorporated with Combinations of CuO-Al2O3 Nanoparticles, Material today: Proceedings,Elsevier, 24, 1577-1584, 2020
  15. Investigation on influence of Hybrid Biodegradable Nanofluids (CuO-ZnO) on Surface Roughness in Turning AISI 1018 Steel, Material today: Proceedings, Elsevier, 24, 1570-1576, 2020
  16. Effect of hydroxy gas addition on performance and exhaust emissions in variable compression spark ignition engine, Material today: Proceedings, Elsevier, 24, 930-936, 2020
  17. Investigation on Influence of Hybrid Nanofluid/MQL on Surface Roughness in Turning Inconel-718, Lecturer Notes in Mechanical Engineering (LNME). Springer, 1137-1145, 2020
  18. Numerical investigation of heat transfer and pressure drop for cooling of microchannel heat sink using MWCNT-CuO-Water hybrid nanofluid with different mixture ratio, Material today: Proceedings, Elsevier, 42, 969-974, 2021
  19. Numerical study of fluid flow and heat transfer for flow of Cu-Al2O3-water hybrid nanofluid in a microchannel heat sink, Material today: Proceedings, Elsevier, 49, 1298-1302, 2022
  20. Nanofluids Application for Cutting Fluids, Advances in Sustainable Machining and Manufacturing Processes, Taylor and francis, CRC Press, 2022
  21. Intensification of PCM Thermal conductivity with nanomaterials for thermal energy storage applications, Journal of chemical technology and metallurgy, 5, 925-931, 2023.
  1. M Sandeep kumar, V Vasu, A Venu Gopal, “Thermal Conductivity of Cu-Zn Hybrid Newtonian Nanofluids: Experimental data and modelling using neural network”, International Conference on Computational Heat and Mass Transfer (ICCHMT)-2015
  2. M Sandeep kumar, V Vasu, A Venu Gopal, “Rheological study of Cu-Zn Hybrid Newtonian Nanofluids: Experimental data and modelling using neural network”, International Conference On material processing and characterization (ICMPC)-2016
  3. M Sandeep kumar, V Vasu, A Venu Gopal,” A 3-D Simulation and Experimental Study of Cutting Forces in Turning Inconel-718″ International Conference on Recent Trends in Engineering and Material Sciences (17-19 March 2016)
  4. M Sandeep kumar, V Vasu, A Venu Gopal,” Temperature study in Turning Inconel-718: 3D Simulation and Experimentation” International Conference on Recent Trends in Engineering and Material Sciences (17-19 March 2016)
  5. Mechiri Sandeep Kumar, V Vasu, A Venu Gopal,” Investigation on Influence of Hybrid Nanofluid/MQL on Cutting Forces in Turning Inconel-718″ 6th International & 27th All India Manufacturing Technology, Design and Research Conference (AIMTDR-2016)
  6. Mechiri Sandeep Kumar, ““An Investigation on Turning AISI 1018 Steel with Hybrid Biodegradeable nanofluid/MQL Incorporated with Combinations of CuO-Al2O3 Nanoparticles” IConamma-2018
  7. Mechiri Sandeep Kumar, “Investigation on influence of Hybrid Biodegradable Nanofluids (CuO-ZnO) on Surface Roughness in Turning AISI 1018 Steel” IConamma- 2018
  8. Mechiri Sandeep Kumar, “Fabrication and optimization of process parameters of SiO2- BN gel cast ceramic composites using response surface methodology”, IConAmma-2018
  9. Mechiri Sandeep Kumar, “Effect of hydroxy gas addition on performance and exhaust emissions in variable compression spark ignition engine”, IConAmma-2018
  10. Mechiri Sandeep Kumar, “Experimental Investigation on Performance of Hybrid PCM’s on Addition of Nano Particles in Thermal Energy Storage”, ICAMEES-2018
  11. Mechiri Sandeep Kumar, Performance Evaluation of Miniature Loop Heat Pipe Under Varying Working Fluids and Wick Materials at Low Heat Inputs” ICEMTE-2018.
  1. “Emerging Trends In Manufacturing And Testing Of Composite Materials”, organized at VEDIC in collaboration with DRDL, ASL, IIT Madras and L&T for the faculty members of Sri Vishnu Educational Society, during 31 Jan 2018 to 2 Feb 2018.
  2. “Rapid prototyping and its applications to modern industry” one day workshop at BVRIT Narsapur, on 26th July 2019.
  3. “Computational Research Techniques Using Matlab”, a national level Faculty Development Program organized at BVRIT Narsapur, from 03th-07th December 2018.