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Narendra Kumar

ResearcherPublications, citations & collaboration network

Narendra Kumar is a researcher indexed in ScholarIQ from OpenAlex & ORCID. ScholarIQ records 37 works, 780 citations, an h-index of 15 and an i10-index of 18.

37
Works
780
Citations
15
h-index
18
i10-index

How has Narendra Kumar's publication output changed over time?

ScholarIQpublication output · 2015–2024

Output declined50% over the shown period — from 2 works in 2015 to 1 in 2024.

2
7
1
1
2015201620212024

What are the most-cited papers on Narendra Kumar?

ScholarIQmost cited works
In-situ development of ZrB2 particles and their effect on microstructure and mechanical properties of AA5052 metal-matrix composites
Narendra Kumar, Rakesh Kumar Gautam, Sunil Mohan
Materials & Design (1980-2015). 2015146 Citations
Wear, friction and profilometer studies of insitu AA5052/ZrB2 composites
Narendra Kumar, Gaurav Gautam, Rakesh Kumar Gautam, S. Mohan, Sunil Mohan
Tribology International. 2016116 Citations
Synthesis and Characterization of TiB2 Reinforced Aluminium Matrix Composites: A Review
Narendra Kumar, Gaurav Gautam, Rakesh Kumar Gautam, S. Mohan, Sunil Mohan
Journal of The Institution of Engineers (India) Series D. 201583 Citations
A Study on Mechanical Properties and Strengthening Mechanisms of AA5052/ZrB2 In Situ Composites
Narendra Kumar, Gaurav Gautam, Rakesh Kumar Gautam, S. Mohan, Sunil Mohan
S77627976. 201652 Citations
Tribology and surface topography of tri-aluminide reinforced composites
Gaurav Gautam, Narendra Kumar, S. Mohan, Rakesh Kumar Gautam, Sunil Mohan
Tribology International. 201635 Citations

Related on ScholarIQ

Indian Institute of Technology Roorkee
Institution
In-situ development of ZrB2 particles and their effect on microstructure and mechanical properties of AA5052 metal-matrix composites
Paper
Wear, friction and profilometer studies of insitu AA5052/ZrB2 composites
Paper
Synthesis and Characterization of TiB2 Reinforced Aluminium Matrix Composites: A Review
Paper
A Study on Mechanical Properties and Strengthening Mechanisms of AA5052/ZrB2 In Situ Composites
Paper
Tribology and surface topography of tri-aluminide reinforced composites
Paper
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