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Narasimhan Swaminathan
Narasimhan Swaminathan
Associate Professor, Indian Institute of Technology
Email verificata su iitm.ac.in
Titolo
Citata da
Citata da
Anno
An electrochemomechanical theory of defects in ionic solids. I. Theory
N Swaminathan, J Qu, Y Sun
Philosophical Magazine 87 (11), 1705-1721, 2007
1032007
Effects of grain size and grain boundaries on defect production in nanocrystalline 3C–SiC
N Swaminathan, PJ Kamenski, D Morgan, I Szlufarska
Acta Materialia 58 (8), 2843-2853, 2010
1022010
Diffusion of Ag along Σ 3 grain boundaries in 3C-SiC
S Khalil, N Swaminathan, D Shrader, AJ Heim, DD Morgan, I Szlufarska
Physical Review B 84 (21), 214104, 2011
662011
Effect of grain boundary stresses on sink strength
C Jiang, N Swaminathan, J Deng, D Morgan, I Szlufarska
Materials Research Letters 2 (2), 100-106, 2014
622014
Energy barriers for point-defect reactions in 3 C-SiC
MJ Zheng, N Swaminathan, D Morgan, I Szlufarska
Physical Review B 88 (5), 054105, 2013
612013
Ab initio based rate theory model of radiation induced amorphization in β-SiC
N Swaminathan, D Morgan, I Szlufarska
Journal of nuclear materials 414 (3), 431-439, 2011
562011
An electrochemomechanical theory of defects in ionic solids. Part II. Examples
N Swaminathan, J Qu, Y Sun
Philosophical Magazine 87 (11), 1723-1742, 2007
412007
Role of recombination kinetics and grain size in radiation-induced amorphization
N Swaminathan, D Morgan, I Szlufarska
Physical Review B 86 (21), 214110, 2012
332012
Evaluation of thermomechanical properties of non-stoichiometric gadolinium doped ceria using atomistic simulations
N Swaminathan, J Qu
Modelling and Simulation in Materials Science and Engineering 17 (4), 045006, 2009
332009
Interactions Between Non‐Stoichiometric Stresses and Defect Transport in a Tubular Electrolyte
N Swaminathan, J Qu
Fuel Cells 7 (6), 453-462, 2007
312007
Radiation interaction with tilt grain boundaries in β-SiC
N Swaminathan, M Wojdyr, DD Morgan, I Szlufarska
Journal of Applied Physics 111 (5), 2012
302012
Elasticity and size effects on the electrochemical response of a graphite, li-ion battery electrode particle
N Swaminathan, S Balakrishnan, K George
Journal of The Electrochemical Society 163 (3), A488, 2015
282015
A phase-field model for crack growth in electro-mechanically coupled functionally graded piezo ceramics
S Mohanty, PY Kumbhar, N Swaminathan, R Annabattula
Smart Materials and Structures 29 (4), 045005, 2020
242020
Development of user element routine (UEL) for cell-based smoothed finite element method (CSFEM) in Abaqus
PY Kumbhar, A Francis, N Swaminathan, RK Annabattula, S Natarajan
International Journal of Computational Methods 17 (02), 1850128, 2020
232020
Insights into traction-separation phenomena of graphene-cis-1, 4-polyisoprene interface using molecular dynamics
J Jose, B Varkey, N Swaminathan
Polymer 122, 280-295, 2017
192017
Role of pre-existing point defects on primary damage production and amorphization in silicon carbide (β-SiC)
DR Sahoo, I Szlufarska, D Morgan, N Swaminathan
Nuclear Instruments and Methods in Physics Research Section B: Beam …, 2018
182018
Contribution of failure mechanisms to crush energy absorption in a composite tube
N Swaminathan, RC Averill
Mechanics of Advanced Materials and Structures 13 (1), 51-59, 2006
172006
A molecular dynamics study of displacement cascades and radiation induced amorphization in Li2TiO3
DR Sahoo, P Chaudhuri, N Swaminathan
Computational Materials Science 200, 110783, 2021
132021
Investigation of mechanical properties and dispersion in silica/Styrene Butadiene Rubber (SBR) nanocomposites: A ReaxFF molecular dynamics study
E Joseph, N Swaminathan
Computational Materials Science 200, 110751, 2021
92021
Role of stress concentrations on the electrochemical response of a Li-ion battery anode particle
MA Ansari, PY Kumbhar, N Swaminathan
Journal of The Electrochemical Society 166 (12), A2574, 2019
92019
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
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