MK
Dr. Manoj Kumar Sinha
National Institute of Technology Kurukshetra, National Institute of Technology Hamirpur
About
Dr. Manoj Kumar Sinha is working as Assistant Professor in the Department of Mechanical Engineering, National Institute of Technology Kurukshetra, Haryana . Earlier I was associated with National Institute of Technology Hamirpur, H.P., India. Dr. Sinha has completed his Ph.D. and MTech. from IIT Delhi and IIT Guwahati respectively. His area of research includes Sustainable Machining/Grinding of Difficult-to-Machine Materials and Metal forming.
Employment
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National Institute of Technology Kurukshetra Assistant Professor (Grade-I)2022 - Present
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National Institute of Technology Hamirpur Assistant Professor2018 - 2022
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (38)
- Steel Machining Chips as a Sustainable Feedstock for Additive Manufacturing and Powder Metallurgy Save
- A hybrid MCDM framework: Entropy, GRA, and ANN for green grinding of Inconel 718 Save
- An insight into tribological behavior of in-situ Synthesised AA6061/ZrB2 nanocomposites using a hybrid RSM-ANN technique Save
- Surface Morphology Analysis of Inconel 625 through Multi-walled Carbon Nanotubes-Based Electric Discharge Machining Save
- Correction: Investigation on Grindability Improvement of Inconel 625 using Multi-walled Carbon Nanotubes Nanofluids-Assisted Minimum Quantity Lubrication Surface Grinding Save
- Investigation on Grindability Improvement of Inconel 625 using Multi-walled Carbon Nanotubes Nanofluids-Assisted Minimum Quantity Lubrication Surface Grinding Save
- Surface integrity evaluation in ecological nanofluids assisted grinding of Inconel 718 superalloy Save
- Surface Morphology Investigations during Multi-walled Carbon Nanotubes and Nanographene Mixed Electrical Discharge Machining of Inconel 825 Save
- Hybrid approach for modelling and optimizing MQL grinding of Inconel 625 with machine learning and MCDM techniques Save
- A comprehensive investigation on eco-benign grindability improvement of Inconel 625 using nano-MQL Save