A.Kumar
Maharishi Markandeshwar University, Thapar University, Sant Longowal Institute of Engineering and Technology
About
is working as an Associate Professor in the Department of Mechanical Engineering at M.M.
University Mullana-Ambala (Haryana), India. He has received a BE in Manufacturing Engineering from Sant Longowal
Institute of Engineering and Technology (Deemed to be University and an ME in Industrial Engineering from
Thapar University, Patiala). He has received PhD in Mechanical Engineering from Thapar University, Patiala. He is a Life Member of ISTE. He has contributed 22 research papers in journals,
conferences and workshops at national and international level.. He has also supervised 17 (M.E.) thesis in the area
of conventional, industrial engineering and Non-traditional machining methods. His areas of research include
industrial engineering, non-traditional machining, quality engineering and manufacturing engineering.
Employment
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Maharishi Markandeshwar University Associate Prof.2001 - Present
Education
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Thapar University PhD2010 - 2014
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Thapar University M.E2000 - 2003
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Sant Longowal Institute of Engineering and Technology B.E1997 - 2000
Projects & Funding
Projects & funding information is unavailable.
Publications (41)
- Investigation of biocompatible implant material through WEDM process using RSM modeling hybrid with the machine learning algorithm Save
- Experimental investigation of WEDM process through integrated desirability and machine learning technique on implant material Save
- Preliminary Investigation of Wire Cut EDM on Polycrystalline Silicon Ingot Save
- Modeling and Optimization of Turning Process Using White Coconut Oil as Metalworking Fluid Through Desirability Function Save
- Investigation and Optimization of Parameters in Micro-Finishing of Hybrid Al/SiC/B4C MMCs by Novel MAFM Process through RSM Save
- Multi-objective optimization and Surface Morphology of M-42 AISI Steel Using Normal and Cryo-treated Brass Wire in Wire Cut EDM Save
- Investigation of crack density, white layer thickness, and material characterization of biocompatible material commercially pure titanium (grade-2) through a wire electric discharge machining process using a response surface methodology Save
- A novel approach of GEF and GA for the optimization of multi-objective wire EDM process during the machining of DC53 super alloy Save
- Mathematical Modeling and Optimization of Wire Electric Discharge Machining Parameters on Inconel 825 Using Desirability Method Save
- Multi-response optimization of magnetic field assisted EDM through desirability function using response surface methodology Save