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Elisha Rejovitzky
Elisha Rejovitzky
Verified email at mit.edu
Title
Cited by
Cited by
Year
A Cahn–Hilliard-type phase-field theory for species diffusion coupled with large elastic deformations: application to phase-separating Li-ion electrode materials
CV Di Leo, E Rejovitzky, L Anand
Journal of the Mechanics and Physics of Solids 70, 1-29, 2014
1872014
Diffusion–deformation theory for amorphous silicon anodes: the role of plastic deformation on electrochemical performance
CV Di Leo, E Rejovitzky, L Anand
International Journal of Solids and Structures 67, 283-296, 2015
1222015
A theory and a simulation capability for the growth of a solid electrolyte interphase layer at an anode particle in a Li-ion battery
E Rejovitzky, CV Di Leo, L Anand
Journal of the Mechanics and Physics of Solids 78, 210-230, 2015
562015
Interplay of phase boundary anisotropy and electro-auto-catalytic surface reactions on the lithium intercalation dynamics in plateletlike nanoparticles
N Nadkarni, E Rejovitsky, D Fraggedakis, CV Di Leo, RB Smith, P Bai, ...
Physical Review Materials 2 (8), 085406, 2018
402018
On single damage variable models for fatigue
E Rejovitzky, E Altus
International Journal of Damage Mechanics 22 (2), 268-284, 2013
222013
Non-commutative fatigue damage evolution by material heterogeneity
E Rejovitzky, E Altus
International journal of fatigue 37, 54-59, 2012
102012
A micromechanical fatigue model with damage morphology
E Rejovitzky, E Altus
International journal of fatigue 33 (9), 1235-1243, 2011
62011
Modeling the response of Steven test
E Rejovitzky, Y Partom, T Shacham, A Malka-Markovitz
AIP Conference Proceedings 2272 (1), 2020
12020
A mesoscopic model for compression of granular materials
E Rejovitzky
EPJ Web of Conferences 183, 01054, 2018
12018
Fatigue Modeling with Microdamage Morphology
E Rejovitzky
Technion-Israel Institute of Technology, Faculty of Mechanical Engineering …, 2012
2012
From generic towards a micromechanical fatigue model
E Altus, E Rejovitzky
Procedia Engineering 10, 1121-1126, 2011
2011
CHEMO-MECHANICS THEORY FOR AMORPHOUS SILICON ELECTRODES
CV Di Leo, E Rejovitzky, L Anand
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Articles 1–12