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Dr Prasenjit Khanikar

vidwan id: 128418
Male

Assistant Professor, Department of Mechanical Engineering
Indian Institute of Technology Guwahati

Expertise

  • Mechanical Engineering

Publications

Total Articles 20
Books 0
Proceedings 0

Publications

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Scopus

Citations 250
h-index 8

CrossRef

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Citations 110
h-index 6
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Professional Recognition

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Bio

Microstructural Materials Modeling, Micro-mechanics, Dislocation Density Based Crystal Plasticity, Dynamic Behavior of Materials, High Entropy Alloys, Mechanical Metamaterials

Personal Details

  • Male
  • Assistant Professor , Indian Institute of Technology Guwahati
  • Indian Institute of Technology Guwahati
PhD
Other Institute 2013
MTECH
Indian Institute of Technology Delhi 2008
Assistant Professor Apr 2015 – Present
Indian Institute of Technology Guwahati | Department of Mechanical Engineering

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Scholarly Work

Study of Deformation and Failure Mechanisms of Aluminum Alloys Under Different Strain Rate Conditions

Funding Agency: Indian Institute of Technology Guwahati

Principal Investigator

5 Lakhs

2015 - 2017

Completed
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Scholarly Publications

Composite strut-plate lattice: A high-stiffness design of cellular metamaterial having excellent strength and energy absorption ability

Open Access
Article
Authors: Baishya M.J.;Sahariah B.J.;Muthu N.;Khanikar P.

Tetrahedral and strut-reinforced tetrahedral microlattices: Selectively laser melted high-strength and high-stiffness cellular metamaterials

Open Access
Article
Authors: Namdeo A.;Bhandare V.;Sahariah B.J.;Khanikar P.

Composite-inspired multilattice metamaterial structure: An auxetic lattice design with improved strength and energy absorption

Open Access
Article

Effect of Precipitates on Plastic Deformation Behavior of High Entropy Alloy Al0.3CoCrFeNi under High Strain Rate Loading

Open Access
Article
Authors: Das P.K.;Kumar V.;Khanikar P.

Effect of Grain Orientation on High Strain-rate Plastic Deformation

Open Access
Conference Paper

Dynamic Fracture of Aluminum-Bonded Composites

Open Access
Article

Predictions of high strain rate failure modes in layered aluminum composites

Open Access
Conference Paper

High strain-rate interfacial behavior of layered metallic composites

Open Access
Article