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Dr Christopher James

vidwan id: 262321
Male

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

Expertise

  • Metallurgy and Metallurgical Engineering

Publications

Total Articles 46
Books 0
Proceedings 0

Publications

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Scopus

Citations 438
h-index 13

CrossRef

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Citations 404
h-index 12
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Bio

Deformation and Damage Modelling

Personal Details

  • Male
  • Scientific Officer F , Indira Gandhi Centre for Atomic Research (IGCAR), Kalpakkam
  • Indira Gandhi Centre for Atomic Research, Kalpakkam
Ph.D
Homi Bhabha National Institute, Mumbai 2019
Scientific Officer F Aug 2009 – Present
Indira Gandhi Centre for Atomic Research (IGCAR), Kalpakkam | Metallurgy and Materials Group

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Co-Authors (11)

M D

Dr M D Mathew

Saintgits College of Engineering

Vasudevan

Dr Vasudevan M

Indira Gandhi Centre for Atomic Research (IGCAR), Kalpakkam

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Dr Isaac Samuel Edwin

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Karthik

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Mr Ran Vijay Kumar

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Indira Gandhi Centre for Atomic Research (IGCAR), Kalpakkam

Scholarly Work

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Scholarly Publications

Comparative Evaluation of Creep-Rupture Behavior of P9 Steel Plate and Thick Section Tubeplate Forging

Open Access
Article

On the onset of necking instability in tempered martensitic 9% Cr steels

Open Access
Article

Modeling Creep Deformation and Damage Behavior of Tempered Martensitic Steel in the Framework of Additive Creep Rate Formulation

Open Access
Article
Authors: Christopher J.;Choudhary B.

Applicability of improved Dyson–McLean approach to creep deformation behaviour of tempered martensitic P9 steel

Open Access
Article

Constitutive modelling of stress-relaxation behaviour of tempered martensitic P91 steel using sine hyperbolic rate law

Open Access
Article

Critical Assessment of Short-Term Stress-Relaxation Studies for the Prediction of Creep Properties of P91 Steel

Open Access
Article

Sine Hyperbolic Models and Their Applicability Towards Creep Deformation Behaviour of 9% Chromium Steels

Open Access
Article

On the assessment of tensile work hardening behaviour of type 316L(N) austenitic stainless steel in the framework of θσ<inf>d</inf> vs. σ<inf>d</inf> using flow stress contribution from dislocations

Open Access
Article