Dr. Venkata  Ramesh Mamilla
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Dr. Venkata Ramesh Mamilla

Professor
Sri Vasavi Engineering College, India


Highest Degree
Ph.D. in Biofuels from St. Peter`s University, India

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Area of Interest:

Engineering
100%
Biofuels
62%
Engineering Acoustics
90%
IC Design
75%
Design Engineering
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
0
Abstracts
0

Selected Publications

  1. Murthy, K.S.R. and V.R. Mamilla, 2018. Optimal design and fabrication of exhaust muffler using in I.C. engine. Int. J. Sci. Adv. Res. Technol., 4: 389-393.
  2. Mamilla, V.R., M.V. Mallikarjuna and G.L.N. Rao, 2018. Application of artificial neural networks in the field of biodiesel. Int. J. Pure Applied Math., 118: 1-9.
  3. Srinivasulu, M. and V.R. Mamilla, 2017. Study on design of a container with composite material. Am. J. Mech. Ind. Eng., 2: 127-129.
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  4. Praveena, G.L., S. Eshwari, K.K. Kumar and M.V. Ramesh, 2017. Structural analysis of multilayer pressure vessels for different shapes of cross sections by using FEM. Int. J. Innov. Res. Sci. Eng. Technol., 6: 16543-16551.
  5. Naresh, T.S., V.S. Teja and V.R. Mamilla, 2017. Mechanical properties and formability analysis on AA-LDH-GF and AA-CNT-GF sandwich sheets. Int. J. Eng. Res. Technol., 6: 208-213.
  6. Mamilla, V.R. and G.L.N. Rao, 2017. Performance and emission characteristics on CI engine fuelled with waste lubricating oil as an alternative fuel blended with diesel. J. Basic Applied Res. Int., 20: 225-232.
  7. Srinivasulu, M., V.R. Mamilla and G.L.N. Rao, 2016. Development of ultrasonic nondestructive procedure for testing of welded components. J. Environ. Sci. Comput. Sci. Eng. Technol., 5: 370-376.
  8. Srinivas, P., V.R. Mamilla, G.L.N. Rao and S.M. Ahmed, 2016. Design and analysis of an automobile exhaust muffler. Ind. Syst. Eng., 1: 10-15.
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  9. Noel, D., V.R. Mamilla, Y.B. Kumar and V. Trinath, 2016. Performance on CI engine fuelled honge biodiesel blended with diesel. Mater. Today: Proc., 3: 3626-3631.
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  10. Mamilla, V.R., M. Srinivasulu and N.M. Prasad, 2016. Study on Computer Numerical Control (CNC) machines. Int. J. Adv. Sci. Res., 1: 21-25.
  11. Mamilla, V.R. and G.L.N. Rao, 2016. Optimal performance and emission analysis of diesel engine fuelled with palm oil methyl ester with an artificial neural network. Am. J. Mod. Energy, 2: 17-21.
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  12. Mamilla, V.R. and G.L.N. Rao, 2016. A review: Waste lubricating oil as an alternative fuel blended with diesel. Int. J. Adv. Sci. Res., 1: 1-4.
  13. Lathuefa, S.A., V.R. Mamillaa and M. Srinivasulu, 2016. Design and thermal analysis of a plate heat exchanger. Int. J. Acad. Stud., 2: 303-308.
  14. Anusha, M., V.R. Mamilla and G.L.N. Rao, 2016. Review on research tool condition monitoring and machining processes in turning. Ind. Syst. Eng., 1: 22-26.
  15. Anusha, M., V.R. Mamilla and G.L.N. Rao, 2016. Optimization and analysis of tool life based on flank wear in a turning process. Int. J. Res. Applied Sci. Eng. Technol., 4: 630-636.
  16. Mamilla, V.R., G.L.N. Rao, K.V. Krishna, M.V.S. Krishna and B.V. Babu, 2015. Biodiesel production from waste cooking oil by alkali catalysed transesterification process. Int. J. Applied Eng. Res., 10: 4969-4972.
  17. Mamilla, V.R., G.L. Narayana, A. Rakesh and B.V. Krishna, 2015. Optimal blend for the performance and emission analysis of CI & VCR engine fuelled with animal tallow methyl esters (ATME) blended with diesels. Applied Mech. Mater., 812: 79-84.
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  18. Mamilla, V.R. and K.S. Chakradhar, 2014. Micro machining for micro electro mechanical systems (MEMS). Procedia Mater. Sci., 6: 1170-1177.
  19. Kumar, G.U. and V.R. Mamilla, 2014. Failure analysis of internal combustion engine valves by using ANSYS. Int. J. Res. Sci. Technol. Eng. Math., 14: 169-173.
  20. Kolusu, R. and V.R. Mamilla, 2014. Impact behavior on fiberglass reinforced laminates with the variation of composite core structure. Int. J. Multidisciplinary Res. Dev., 1: 55-58.
  21. Babu, S.R.K. and V.R. Mamilla, 2014. Crash test analysis of impact barrier using honey comb textile and other geometry's. Int. J. Multidisciplinary Res. Dev., 1: 154-164.
  22. Mamilla, V.R., M.V. Mallikarjun and G.L.N. Rao, 2013. Prediction of cetane number for biodiesel fuels: Karanja, Jatropha, sunflower, palm and waste cooking oil methyl esters. Artificial Intell. Syst. Mach. Learn., 5: 70-74.
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  23. Mamilla, V.R., M.V. Mallikarjun and G.L.N. Rao, 2013. Performance analysis of IC engines with bio-diesel jatropha methyl ester (JME) blends. J. Petroleum Technol. Alter. Fuels, 4: 90-93.
  24. Mamilla, V.R., M.V. Mallikarjun and G.L.N. Rao, 2013. Investigations on the performance and exhaust emissions of blends of sunflower methyl esters with diesel in a single cylinder 4-stroke direct injection diesel engine. Int. J. Syst. Algorithms Applic., 3: 13-15.
  25. Mamilla, V.R., M.V. Mallikarjun and G.L.N. Rao, 2013. Effect of injection pressure on performance, emission and combustion characteristics of di diesel engine running on blends of jatropha methyl esters and diesel fuel. CIIT Int. J. Artificial Intell. Syst. Mach. Learn., 5: 88-94.
  26. Mamilla, V.R., M.V. Mallikarjun and G.L.N. Rao, 2013. Effect of combustion chamber design on a DI diesel engine fuelled with jatropha methyl esters blends with diesel. Procedia Eng., 64: 479-490.
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  27. Mallikarjun, M.V., V.R. Mamilla and G.L.N. Rao, 2013. NOx emission control techniques when CI engine is fuelled with blends of mahua methyle esters and diesel. Int. J. Eng. Sci. Emerg. Technol., 4: 96-104.
  28. Devarapalli, P.R., V.R. Mamilla and V.R. Mamilla, 2013. Design and analysis of a storage container used in missile. MIT Int. J. Mech. Eng., 3: 75-79.
  29. Bhaskar, A.S. and V.R. Mamilla, 2013. A reliability based approach for predicting optimal tool replacement time. Int. J. Sci. Res. Knowl., 1: 413-421.
  30. Raheman, H. and A.G. Phadatare, 2012. Emissions and performance of diesel engine from blends of Karanja methyl ester (Biodiesel) and diesel. Int. J. Recent Sci. Res., 3: 25-28.
  31. Mamilla, V.R., M.V. Mallikarjun, G.L.N. Rao and K. Purushothaman, 2012. Performance and emissions characteristics of single cylinder 4 stroke water cooled diesel engine from Jatropha methyl ester and diesel blends. Int. J. Recent Sci. Res., 3: 20-24.
  32. Mamilla, V.R., M.V. Mallikarjun and G.L.N. Rao, 2012. Biodiesel: The use of vegetable oils and methyl esters as alternative diesel fuels. Indian Streams Res. J., 2: 74-83.
  33. Mamilla, V.R., M.V. Mallikarjun and G.L.N. Rao, 2012. Biodiesel production from palm oil by transesterification method. Int. J. Curr. Res., 4: 83-88.
  34. Mallikarjun, V.R. Mamilla, G.L.N. Rao and K. Purushothaman, 2012. Experimental investigation of compressed ignition engine fuelled with blends of diesel and mahua oil and also by varying fuel injection pressures. Int. J. Recent Sci. Res., 3: 80-85.
  35. Mallikarjun, M.V., V.R. Mamilla, G.L.N. Rao and K. Purushothaman, 2012. Experimental exploration of CI engine fuelled with mahua oil and diesel with low heat rejection technique and by varying injection pressure. Int. J. Recent Sci. Res., 3: 45-49.
  36. Junju, V., M.V. Mallikarjun and V.R. Mamilla, 2012. Thermo mechanical analysis of diesel engine piston using ceramic crown. Int. J. Emerging Trends Eng. Dev., 5: 22-29.
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  37. Babu, P.S. and V.R. Mamilla, 2012. Significance of biodiesel use as I.C. engine fuels. Int. J. Adv. Eng. Res. Stud., 1: 40-43.
  38. Babu, P.S. and V.R. Mamilla, 2012. Methanolysis of castor oil for production of biodiesel. Int. J. Adv. Eng. Technol., 3: 146-148.
  39. Ashok, D., M.V. Mallikarjun and V.R. Mamilla, 2012. Design and structural analysis of composite multi leaf spring. Int. J. Emerging Trends Eng. Dev., 5: 30-37.
  40. Sreenivas, P., V.R. Mamilla and K.C. Sekhar, 2011. Development of biodiesel from castor oil. Int. J. Energy Sci., 1: 192-197.
  41. Nynala, V.R. and V.R. Mamilla, 2011. Study on robot anatomy and its applications. Int. J. Eng. Res. Ind. Applic., 4: 335-346.
  42. Mamilla, V.R., V. Gopinath, C.S. Rao and G.L.N. Rao, 2011. Performance and emission characteristics of 4 stroke petrol engine fuelled with Biogas/LPG blends. Int. J. Adv. Eng. Technol., 2: 209-213.
  43. Mallikarjun, M.V., V.R. Mamilla and G.L.N. Rao, 2011. Investigations on the performance an exhaust emissions of a diesel engine using preheated madhuca indica oil as fuel. Int. J. Mech. Prod. Eng. Res. Dev., 1: 1-15.
  44. Gollamudi, E.B., V.R. Mamilla and T.B.S. Rao, 2011. Introduction to the development and design of a mechatronic system. Int. J. Eng. Res. Applic., 1: 542-545.
  45. Rao, P.L., V.R. Mamilla, K.R. Babu and G.L.N. Rao, 2010. Modeling and optimization of weight and stress reduction of dump for automotive vehicles. Int. J. Mech. Automobile Eng., 11: 60-66.
  46. Paleti, K.K., T. Seshaiah, V.R. Mamilla, M.V. Mallikarjun and S.M. Babu, 2010. Six sigma DMAIC-methodology to improve the quality of cylinder liners by reducing the black dot. Int. J. Applied Eng. Res., 5: 523-536.
  47. Mamilla, V.R., M.C. Sekhar, M.V. Mallikarjun and G.L.N. Rao, 2010. A mechatronic system for power control. Int. J. Applied Eng. Res., 5: 779-784.
  48. Sekhar, M.C., V.R. Mamilla, M.V. Mallikarjun and K.V.K. Reddy, 2009. Production of biodiesel from neem oil. Int. J. Eng. Stud., 1: 295-302.
  49. Mamilla, V.R., M.V. Mallikarjun and G.L.N. Rao, 2009. Performance and emission characteristics of CI engine fuelled with Jatropha methyl ester/diesel blends. Int. J. Mech. Automobile Eng., 5: 1-5.
  50. Mamilla, V.R., K.C. Sekhar, M.V. Mallikarjun, G. Lakshmi and N. Rao, 2009. The effect of EGR on the performance and emission characteristics of four-stroke single cylinder diesel engine. Int. J. Mech. Automobile Eng., 4: 64-68.
  51. Mamilla, V.R., K.C. Sekhar, M.V. Mallikarjun, G. Lakshmi and N. Rao, 2009. Design & fabrication of biodiesel plant for the synthesis of biofuels from vegetable oils. Int. J. Mech. Automobile Eng., 5: 86-90.
  52. Mamilla, V.R. and M.V. Mallikarjun, 2009. Control of electro-mechanical brake with electronic control unit. Int. J. Electr. Eng. Res., 1: 195-200.
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  53. Mallikarjun, M.V. and V.R. Mamilla, 2009. Experimental study of exhaust emissions & performance analysis of multi cylinder SI engine when methanol used as an additive. Int. J. Mech. Automobile Eng., 1: 201-212.
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