RN
Rajesh Nayak
Manipal Institute of Technology, Canara Engineering College, National Institute of Technology Karnataka, National Institute of Engineering
Employment
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Manipal Institute of Technology Associate Professor2006 - Present
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Canara Engineering College Assistant Professor2002 - 2006
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National Institute of Technology Karnataka Assistant Lecturer1997 - 2000
Education
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Manipal Institute of Technology PhD2018 - Present
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National Institute of Technology Karnataka MTech2000 - 2002
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National Institute of Engineering BE1992 - 1996
Projects & Funding
Projects & funding information is unavailable.
Publications (15)
- Multi-scale wear analysis of HRS/CNT hybrid polymer composites using predictive statistical modelling techniques Save
- Statistical Multi-Response Optimization and Prediction of Abrasive Water Jet Machining Process Parameters for HRS Fiber/CNT/Epoxy Hybrid Composites Save
- Integrating soft computing approach to optimize and predict powder mixed wire electric discharge machinability characteristics of PBLF-Ti-6Al-4V alloy Save
- A synergistic approach for thermal characteristic analysis of hibiscus rosa-sinensis/carbon nano-tubes/epoxy based hybrid composites using soft computing techniques Save
- Delamination and Its Morphological Study on Hibiscus Rosa-Sinensis/Carbon Nano-Tubes/Epoxy Based-Hybrid Composites During Abrasive Water-Jet Machining Using Statistical Optimization Techniques Save
- Machinability characteristics study on hibiscus rosa-sinensis reinforced polymer composites using soft computing techniques Save
- Optimizing the Die-Sink EDM Machinability of AISI 316L Using Ti-6Al-4V-SiCp Electrodes: A Computational Approach Save
- Quantitative and deep learning based fourier transform infrared radiation and tensile characteristics study on chemically treated hibiscus rosa-sinensis plant fibers Save
- Design of experiments integrated with neural networks for optimization and predictive modelling of electrode wear of novel Ti-6Al-4V-SiCp composites during die sinking electric discharge machining Save
- Comprehensive Investigation of Hardness, Wear and Frictional Force in Powder Metallurgy Engineered Ti-6Al-4V-SiCp Metal Matrix Composites Save