HK
Himanshu Kumar
Czech Academy of Sciences, Institute of Physics, Indian Institute of Technology Jammu, National Cheng Kung University, Vel Tech Dr. RR & Dr. SR Technical University
About
Dr. Himanshu Kumar is a MSCA COFUND P4F Post Doctoral Fellow at HiLASE Centre, at Institute of Physics at the Czech academy of Sciences. His broad area of research is Laser metal deposition (LMD), Laser shock peening (LSP), Joining of Structural steel, High entropy alloys, Thermal spray coatings, Mechanical behaviour of materials, Characterisation of materials, and Additive Manufacturing.
Employment
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Czech Academy of Sciences, Institute of Physics Postdoctoral Researcher2025 - Present
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Indian Institute of Technology Jammu Post Doctoral Fellow2023 - 2024
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Vel Tech Dr. RR & Dr. SR Technical University Assistant Professor2017 - 2018
Education
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Indian Institute of Technology Jammu Ph.D2018 - 2033
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National Cheng Kung University M.S2015 - 2017
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Vel Tech Rangarajan Dr. Sagunthala R&D Institute of Science and Technology B.Tech2010 - 2014
Projects & Funding
Projects & funding information is unavailable.
Publications (22)
- Laser power density driven residual stress and surface quality of AA7075 alloy under laser shock peening Save
- Thermally-sprayed high-entropy alloy coating: mechanisms, properties and applications Save
- Laser power density driven residual stress and surface quality of AA7075 alloy under laser shock peening Save
- Microstructure and mechanical properties of micro alloyed high strength low carbon structural steels Save
- Types and Fabrication Approaches of High-Entropy Alloy Coatings Save
- Effect of flux on the microstructural and tensile properties of IS 2062-E450 structural steel by submerged arc welding Save
- Processing-Structure–Property Relationships in Wire Arc-Directed Energy Deposition Fabricated 410 Stainless Steel: Mechanistic Insights into Delta Ferrite Reduction Through Cyclic Heat Treatment Save
- Investigating the High Temperature Tribological Efficacy of AlCoCrFeNiTi High Entropy Alloy Coating Save
- High temperature tribological behavior of atmospheric plasma-sprayed CoCrFeNiW0.3 + 5 at% C high-entropy alloy coating Save
- Synthesis of nanomaterial coatings for various applications Save