DB
Deepak Kumar Biswal
Also known as: Deepak K Biswal
Vellore Institute of Technology, Ghanashyam Hemalata Institute of Technology and Management, National Institute of Technology Rourkela, Goverment Junior College, Panposh, Rourkela
Employment
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Vellore Institute of Technology Assistant Professor (Senior)2019 - Present
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Ghanashyam Hemalata Institute of Technology and Management Assistant Professor2009 - 2013
Education
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National Institute of Technology Rourkela Doctor of Philosophy2013 - 2019
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Biju Patnaik University of Technology Orissa School of Mining Engineering Bachelor of Technology2005 - 2009
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Goverment Junior College, Panposh, Rourkela Intermediate Science (Higher Secondary Examination)2002 - 2004
Projects & Funding
Projects & funding information is unavailable.
Publications (10)
- Study of internal resonator support member geometry on the low-frequency bandgap performance of 3D locally resonant metamaterials Save
- Advances in functional metamaterials: bridging mechanical, acoustic innovations with multifunctionality and adaptive responses Save
- Buckling and Free Vibration Analysis of Doubly Curved Skewed Sandwich Shell Structures with FGM Constraining Layer Save
- Thermal Buckling, Vibration and Damping Behavior of Viscoelastic-FGM Sandwich Doubly Curved Panels Save
- Free Vibration Analysis of Multilayer Skew Sandwich Spherical Shell Panels with Viscoelastic Material Cores and Isotropic Constraining Layers Save
- Vibration and damping analysis of doubly curved viscoelastic-FGM sandwich shell structures using FOSDT Save
- On the static and dynamic stability of spherical sandwich shell panels with viscoelastic material core and laminated composite face sheets under uniaxial and biaxial harmonic excitations Save
- Free vibration study of multilayer sandwich spherical shell panels with viscoelastic core and isotropic/laminated face layers Save
- Free vibration and damping characteristics study of doubly curved sandwich shell panels with viscoelastic core and isotropic/laminated constraining layer Save
- Free vibration and buckling study of doubly curved laminated shell panels using higher order shear deformation theory based on Sander's approximation Save