Finite element simulations of martensitic phase transitions and microstructures based on a strain softening model AV Idesman, VI Levitas, DL Preston, JY Cho Journal of the Mechanics and Physics of Solids 53 (3), 495-523, 2005 | 120 | 2005 |
Continuum modeling of strain-induced martensitic transformation at shear-band intersections VI Levitas, AV Idesman, GB Olson Acta materialia 47 (1), 219-233, 1998 | 113 | 1998 |
Microscale simulation of martensitic microstructure evolution VI Levitas, AV Idesman, DL Preston Physical review letters 93 (10), 105701, 2004 | 105 | 2004 |
Numerical modelling of martensitic growth in an elastoplastic material VI Levitas, AV Idesman, GB Olson, E Stein Philosophical Magazine A 82 (3), 429-462, 2002 | 90 | 2002 |
Finite element modeling of dynamics of martensitic phase transitions AV Idesman, JY Cho, VI Levitas Applied Physics Letters 93 (4), 2008 | 75 | 2008 |
Accurate finite element modeling of linear elastodynamics problems with the reduced dispersion error AV Idesman, M Schmidt, JR Foley Computational Mechanics 47, 555-572, 2011 | 74 | 2011 |
Finite element simulation of martensitic phase transitions in elastoplastic materials VI Levitas, AV Idesman, E Stein International Journal of Solids and Structures 35 (9-10), 855-887, 1998 | 74 | 1998 |
Structural changes in elastoplastic material: a unified finite-element approach to phase transformation, twinning and fracture AV Idesman, VI Levitas, E Stein International Journal of Plasticity 16 (7-8), 893-949, 2000 | 69 | 2000 |
Elastoplastic materials with martensitic phase transition and twinning at finite strains: numerical solution with the finite element method AV Idesman, VI Levitas, E Stein Computer Methods in Applied Mechanics and Engineering 173 (1-2), 71-98, 1999 | 69 | 1999 |
Benchmark problems for wave propagation in elastic materials A Idesman, H Samajder, E Aulisa, P Seshaiyer Computational Mechanics 43, 797-814, 2009 | 67 | 2009 |
A new high-order accurate continuous Galerkin method for linear elastodynamics problems AV Idesman Computational Mechanics 40 (2), 261-279, 2007 | 65 | 2007 |
Finite element simulations of dynamics of multivariant martensitic phase transitions based on Ginzburg–Landau theory JY Cho, AV Idesman, VI Levitas, T Park International Journal of Solids and Structures 49 (14), 1973-1992, 2012 | 63 | 2012 |
Finite element modeling of linear elastodynamics problems with explicit time-integration methods and linear elements with the reduced dispersion error A Idesman, D Pham Computer Methods in Applied Mechanics and Engineering 271, 86-108, 2014 | 56 | 2014 |
Solution of linear elastodynamics problems with space–time finite elements on structured and unstructured meshes AV Idesman Computer methods in applied mechanics and engineering 196 (9-12), 1787-1815, 2007 | 51 | 2007 |
Finite elements in space and time for generalized viscoelastic maxwell model A Idesman, R Niekamp, E Stein Computational Mechanics 27 (1), 49-60, 2001 | 45 | 2001 |
A new explicit predictor–multicorrector high-order accurate method for linear elastodynamics AV Idesman, M Schmidt, RL Sierakowski Journal of Sound and Vibration 310 (1-2), 217-229, 2008 | 42 | 2008 |
Finite element procedure for solving contact thermoelastoplastic problems at large strains, normal and high pressures AV Idesman, VI Levitas Computer methods in applied mechanics and engineering 126 (1-2), 39-66, 1995 | 39 | 1995 |
Accurate time integration of linear elastodynamics problems A Idesman Computer Modeling in Engineering and Sciences 71 (2), 111, 2011 | 36 | 2011 |
Continuous and discontinuous Galerkin methods with finite elements in space and time for parallel computing of viscoelastic deformation A Idesman, R Niekamp, E Stein Computer methods in applied mechanics and engineering 190 (8-10), 1049-1063, 2000 | 33 | 2000 |
Optimal reduction of numerical dispersion for wave propagation problems. Part 2: Application to 2-D isogeometric elements A Idesman, B Dey Computer Methods in Applied Mechanics and Engineering 321, 235-268, 2017 | 32 | 2017 |