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Dr Sainath G

vidwan id: 262289
Male

Scientific Officer E, Metallurgy and Materials Group
Indira Gandhi Centre for Atomic Research (IGCAR), Kalpakkam

Expertise

  • Metallurgy and Metallurgical Engineering

Publications

Total Articles 32
Books 0
Proceedings 0

Publications

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Scopus

Citations 518
h-index 12

CrossRef

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Citations 500
h-index 12
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Professional Recognition

2019

DAE Young Scientist Award

Govt. of India

Community & Membership

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Indian Institute of Metals

2011
Life Member

Bio

Computational Materials Science, Atomistic Simulations, Deformation Mechanisms at nanoscale, Dislocation Dynamics

Personal Details

  • Male
  • Scientific Officer E , Indira Gandhi Centre for Atomic Research (IGCAR), Kalpakkam
  • Indira Gandhi Centre for Atomic Research, Kalpakkam
Ph.D
Homi Bhabha National Institute, Mumbai 2018
M.Sc
University of Hyderabad 2010
Scientific Officer E Sep 2010 – Present
Indira Gandhi Centre for Atomic Research (IGCAR), Kalpakkam | Metallurgy and Materials Group

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Co-Authors (7)

M D

Dr M D Mathew

Saintgits College of Engineering

Isaac Samuel

Dr Isaac Samuel Edwin

Scientific Officer

Christopher

Dr Christopher James

Indira Gandhi Centre for Atomic Research (IGCAR), Kalpakkam

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Mr Veerababu J

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Scholarly Work

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A Study on Deformation Mechanisms in Perfect and Twinned Cu Nanowires by Atomistic Simulations

University Homi Bhabha National Institute
Year 2020
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Scholarly Publications

Effect of size, temperature and strain rate on dislocation density and deformation mechanisms in Cu nanowires

Open Access
Article
Authors: Rohith P.;Sainath G.;Srinivasan V.S.

Effect of orientation and mode of loading on deformation behaviour of Cu nanowires

Open Access
Article

Twinning to slip transition in ultrathin BCC Fe nanowires

Open Access
Article

Molecular dynamics simulation studies on the influence of aspect ratio on tensile deformation and failure behaviour of 〈1 0 0〉 copper nanowires

Open Access
Article

Atomistic simulations on ductile-brittle transition in {111} BCC Fe nanowires

Open Access
Article

Size dependent deformation behaviour and dislocation mechanisms in 〈1 0 0〉 Cu nanowires

Open Access
Article

Double reorientation in 〈1 1 0〉 Cu nanowires

Open Access
Article

Dependence of equilibrium stacking fault width on thickness of Cu thin films: A molecular dynamics study

Open Access
Conference Paper