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International Journal of Solids and Structures, ISSN 0020-7683, 12/2015, Volume 75-76, pp. 321 - 335
A mechanics based multiscale computational model is presented to predict the deformation, damage and failure response of hybrid 3D textile composites (H3DTCs)... 
Micromechanics | Smeared crack approach | Hybrid 3D textile composite | Mesoscale | Kink banding | Multiscale modeling | IMPACT BEHAVIOR | WOVEN | KINK BANDS | COMPRESSIVE FAILURE | MECHANICS | EVOLUTION | FIBER COMPOSITES | Models | Computer-generated environments | Architecture | Computer simulation
Journal Article
Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, ISSN 1364-5021, 02/2019, Volume 475, Issue 2222, p. 20180755
Independent derivations are given for the failure criteria of the purely dilatational stress state involving voids nucleation failure as well as for the purely... 
Materials failure theory | Ideal strength | Shear bands | Voids nucleation | materials failure theory | MULTIDISCIPLINARY SCIENCES | shear bands | GROWTH | FCC METALS | voids nucleation | MODEL | ideal strength | DUCTILE FRACTURE
Journal Article
Composite Structures, ISSN 0263-8223, 06/2017, Volume 169, pp. 105 - 115
The fact that complex simulation can be carried out at present days allows to go further to answer new questions in the compressive failure of polymer... 
Compressive failure | Fiber kinking | Micro modelling | MATRIX | INITIATION | BEHAVIOR | MATERIALS SCIENCE, COMPOSITES | STRENGTH | UNIDIRECTIONAL COMPOSITES | PREDICTION | LAMINATED COMPOSITES | AXIAL PROPAGATION | BANDS | Polymeric composites | Polymer industry | Polymers | Analysis | Engineering Sciences
Journal Article
Journal Article
Neuromuscular Disorders, ISSN 0960-8966, 03/2018, Volume 28, Issue 3, pp. 268 - 276
Journal Article
Acta Materialia, ISSN 1359-6454, 02/2017, Volume 125, Issue C, pp. 210 - 218
Journal Article
Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, ISSN 1364-5021, 11/2018, Volume 474, Issue 2219, p. 20180361
The Christensen ductile/brittle failure theory can be interpreted in terms of the associated failure modes, those of shear bands and voids nucleation. Their... 
Failure modes transition | Metallic glasses | Failure theory | Voids growth | Shear bands | DUCTILE TRANSITION | CRACK-TIP | failure theory | failure modes transition | MULTIDISCIPLINARY SCIENCES | shear bands | NANOCRYSTALLINE | VOID NUCLEATION | DISLOCATION NUCLEATION | FRACTURE | GROWTH | voids growth | metallic glasses | BRITTLE BEHAVIOR | MICROSTRUCTURE | PLASTICITY
Journal Article
Composites Science and Technology, ISSN 0266-3538, 09/2019, Volume 181, p. 107663
Journal Article
Mechanics of Materials, ISSN 0167-6636, 11/2017, Volume 114, pp. 147 - 160
Journal Article