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Anup Basak
Anup Basak
Indian Institute of Technology Tirupati
Verified email at iittp.ac.in
Title
Cited by
Cited by
Year
Nanoscale multiphase phase field approach for stress- and temperature-induced martensitic phase transformations with interfacial stresses at finite strains
A Basak, VI Levitas
Journal of the Mechanics and Physics of Solids, 2018
432018
Geometry and thickness dependant anomalous mechanical behavior of fabricated SU-8 thin film micro-cantilevers
AK Basu, A Basak, S Bhattacharya
Journal of Micromanufacturing 3 (2), 113-120, 2020
312020
Finite element procedure and simulations for a multiphase phase field approach to martensitic phase transformations at large strains and with interfacial stresses
A Basak, V Levitas
Computer Methods in Applied Mechanics and Engineering, 2018
302018
Interfacial stresses within boundary between martensitic variants: Analytical and numerical finite strain solutions for three phase field models
A Basak, VI Levitas
Acta Materialia 139, 174-187, 2017
282017
Phase field study of surface-induced melting and solidification from a nanovoid: Effect of dimensionless width of void surface and void size
A Basak, VI Levitas
Applied Physics Letters 112 (20), 2018
242018
A two-dimensional study of coupled grain boundary motion using the level set method
A Basak, A Gupta
Modelling and Simulation in Materials Science and Engineering 22 (5), 055022, 2014
202014
Matrix-precipitate interface-induced martensitic transformation within nanoscale phase field approach: Effect of energy and dimensionless interface width
A Basak, VI Levitas
Acta Materialia 189, 255-265, 2020
142020
Algorithmic aspects and finite element solutions for advanced phase field approach to martensitic phase transformation under large strains
H Babaei, A Basak, VI Levitas
Computational mechanics 64, 1177-1197, 2019
142019
Simultaneous grain boundary motion, grain rotation, and sliding in a tricrystal
A Basak, A Gupta
Mechanics of Materials 90, 229-242, 2015
142015
A three-dimensional study of coupled grain boundary motion with junctions
A Basak, A Gupta
Proceedings of the Royal Society A: Mathematical, Physical and Engineering …, 2015
122015
Plasticity in multi-phase solids with incoherent interfaces and junctions
A Basak, A Gupta
Continuum Mechanics and Thermodynamics 28, 423-442, 2016
102016
Decoupled three-dimensional finite element computation of thermoelastic damping using Zener’s approximation
A Basak, K Nandakumar, A Chatterjee
Meccanica 46, 371-381, 2011
102011
Equilibrium shape of misfitting precipitates with anisotropic elasticity and anisotropic interfacial energy
T Joshi, R Arora, A Basak, A Gupta
Modelling and Simulation in Materials Science and Engineering 28 (7), 075009, 2020
92020
Grain boundary-induced premelting and solid↔ melt phase transformations: effect of interfacial widths and energies and triple junctions at the nanoscale
A Basak
Physical Chemistry Chemical Physics 23 (33), 17953-17972, 2021
62021
An exact formulation for exponential-logarithmic transformation stretches in a multiphase phase field approach to martensitic transformations
A Basak, VI Levitas
Mathematics and Mechanics of Solids 25 (6), 1219-1246, 2020
42020
Influence of a mobile incoherent interface on the strain-gradient plasticity of a thin slab
A Basak, A Gupta
International Journal of Solids and Structures 108, 126-138, 2017
32017
A multiphase phase-field study of three-dimensional martensitic twinned microstructures at large strains
A Basak, VI Levitas
Continuum Mechanics and Thermodynamics 35 (4), 1595-1624, 2023
22023
Grain Boundary-and Triple Junction-Induced Martensitic Transformations: A Phase-Field Study of Effects of Grain Boundary Width and Energy
A Basak
International Journal of Solids and Structures, 2023
12023
Nanoscale phase field modeling and simulations of martensitic phase transformations and twinning at finite strains
A Basak, VI Levitas
Proceedings of the International Conference on Martensitic Transformations …, 2018
12018
Simultaneous Grain Boundary Motion, Grain Rotation, and Sliding in Bicrystalline and Tricrystalline Materials
A Basak, A Gupta
arXiv preprint arXiv:1410.3002, 2014
12014
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