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Results: 1-10 |
Results: 10

Authors: Gioia, G Wang, Y Cuitino, AM
Citation: G. Gioia et al., The energetics of heterogeneous deformation in open-cell solid foams, P ROY SOC A, 457(2009), 2001, pp. 1079-1096

Authors: Wang, YU Jin, YM Cuitino, AM Khachaturyan, AG
Citation: Yu. Wang et al., Nanoscale phase field microelasticity theory of dislocations: Model and 3Dsimulations, ACT MATER, 49(10), 2001, pp. 1847-1857

Authors: Wang, YU Jin, YM Cuitino, AM Khachaturyan, AG
Citation: Yu. Wang et al., Application of phase field microelasticity theory of phase transformationsto dislocation dynamics: model and three-dimensional simulations in a single crystal, PHIL MAG L, 81(6), 2001, pp. 385-393

Authors: Ortiz, M Cuitino, AM Knap, J Koslowski, M
Citation: M. Ortiz et al., Mixed atomistic continuum models of material behavior: The art of transcending atomistics and informing continua, MRS BULL, 26(3), 2001, pp. 216-221

Authors: Cuitino, AM Alvarez, MC Roddy, MJ Lordi, NG
Citation: Am. Cuitino et al., Experimental characterization of the behavior of granular visco-plastic and visco-elastic solids during compaction, J MATER SCI, 36(22), 2001, pp. 5487-5495

Authors: Wang, YU Jin, YM Cuitino, AM Khachaturyan, AG
Citation: Yu. Wang et al., Phase field microelasticity theory and modeling of multiple dislocation dynamics, APPL PHYS L, 78(16), 2001, pp. 2324-2326

Authors: Wang, Y Gioia, G Cuitino, AM
Citation: Y. Wang et al., The deformation habits of compressed open-cell solid foams, J ENG MATER, 122(4), 2000, pp. 376-378

Authors: Wang, Y Cuitino, AM
Citation: Y. Wang et Am. Cuitino, Three-dimensional nonlinear open-cell foams with large deformations, J MECH PHYS, 48(5), 2000, pp. 961-988

Authors: Overaker, DW Cuitino, AM Langrana, NA
Citation: Dw. Overaker et al., Effects of morphology and orientation on the behavior of two-dimensional hexagonal foams and application in a re-entrant foam anchor model (vol 29, pg 43, 1998), MECH MATER, 31(4), 1999, pp. 295-295

Authors: Overaker, DW Langrana, NA Cuitino, AM
Citation: Dw. Overaker et al., Finite element analysis of vertebral body mechanics with a nonlinear microstructural model for the trabecular core, J BIOMECH E, 121(5), 1999, pp. 542-550
Risultati: 1-10 |