KJ
Kamlesh Jangid
Central University of Rajasthan, Rajasthan Technical University, Indian Institute of Technology Roorkee
About
Dr. Kamlesh Jangid is an Indian mathematician, researcher, and academician working in fracture mechanics, smart materials, and advanced mathematical modelling. He is currently serving as an Assistant Professor in the Department of Mathematics at Central University of Rajasthan. His research contributions span fracture mechanics, piezoelectric and magneto-electro-elastic materials, functionally graded materials, and strain-gradient elasticity theory.
Employment
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Central University of Rajasthan Assistant Professor2022 - Present
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Rajasthan Technical University Assistant Professor2014 - 2022
Education
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Indian Institute of Technology Roorkee PhD2010 - 2014
Projects & Funding
Projects & funding information is unavailable.
Publications (55)
- Fracture analysis of unequal arbitrarily orientated cracks in bi-directional functionally graded materials via strain gradient elasticity theory Save
- Study of strain and electric field gradients effects on two unequal oriented semi-permeable mode-III cracks in piezoelectric media Save
- Numerical solution technique for calculating interior crack condition parameters in the moving DBY‐EMPS model for semi‐permeable cracked magneto‐electro‐elastic materials Save
- Strain gradient elasticity analysis of mode-I crack in bi-directional functionally graded material using machine learning Save
- The effects of strain and electric field gradients on an arbitrarily oriented semi-permeable crack in a polarized piezoelectric layer Save
- A study of strain and electric field gradient effects on two collinear cracks in an arbitrary polarized piezoelectric layer Save
- A strain gradient elasticity analysis of exponentially graded FGM containing multiple cracks under anti‐plane shear load Save
- The influence of bi-directional material gradation on a mode-III crack in functionally graded material via strain gradient elasticity theory Save
- The influence of material gradation parallel to two unequal mode-III cracks in functionally graded materials via strain gradient elasticity theory Save
- Numerical solution for the interior electric displacement of the moving DBY‐PS model for semi‐permeable cracked piezoelectric material Save