Dr Sivanaga MalleswaraRao
Mechanical Engineering Research and Applications Mechanical Engineering

Bio

Dr. Ch. V S Parameswara Rao is affiliated with Jawaharlal Nehru Technological University Anantapur, India. He has contributed to research in mechanical engineering focusing on machining processes such as surface grinding and minimum quantity lubrication techniques. Dr. Rao holds qualifications including a Ph.D., M.Tech in Tool Design & Manufacturing, and a B.Tech in Mechanical Engineering.

Experience

Jawaharlal Nehru Technological University Anantapur

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Editors Role

Reviewer

GJRE

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Research

Experimental Investigation of Surface Roughness and Temperature on Surface Grinding of HC-Hcr Steel Using Dry and MQL Techniques

Article January 22, 2018

In machining of metals, application of cutting fluids improves machinability and tool life due to their cooling and lubrication characteristics. The traditional methods of cutting fluid applications may create problems for the operator and not Eco-friendly. Minimum quantity lubrication (MQL) Technique can minimize these problems to a considerable extent. The use of nano-material and nanotechnology can improve the performance of cutting fluids. In the present work, an attempt has been made with MQL to investigate the performance of vegetable oil along with different volume proportions of Al2O3 nanoparticles on surface grinding of HCHCr workpiece. The influence of oil is evaluated regarding surface finish and Temperature of the workpiece. According to central composite design, sixteen experiments are conducted in dry and MQL with nanoparticles. Experimental results of surface roughness and temperature are evaluated using response surface methodology (RSM) and analysis of variance to identify significant parameters. A multi-response optimization technique is used to optimize processes parameters for minimum surface roughness and temperature. The optimal values of % of Nanoparticles, cutting speed, table feed and depth of cut are found to be 0.3636%, 9.166 m/s, 7.12m/min and 10μm respectively.