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Documents dont l'auteur est "Cantor, David"

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Nombre de documents: 24

2024

Quiroz-Rojo, P., Cantor, D., Renouf, M., Émilien, A., & Ovalle, C. (septembre 2024). Experimental study of granular mateirals composed of platonic polypods : exploring geometric cohesion and solid fraction [Communication écrite]. 2024 International Symposium on Geomechanics from Micro to Macro, Grenoble, France. Non disponible

Cantor, D., Ovalle, C., & Émilien, A. (septembre 2024). Exploring the validity of a DEM inspired effective stress approach in wet polydisperse granular materials [Communication écrite]. 2024 International Symposium on Geomechanics from Micro to Macro, Grenoble, France. Non disponible

Cantor, D., Azéma, E., & Ovalle, C. (2024). Failure of an effective stress approach in polydisperse wet granular materials. Physical Review Research, 6(2), 022008 (8 pages). Lien externe

Quiroz-Rojo, P., Cantor, D., Renouf, M., Émilien, A., & Ovalle, C. (septembre 2024). Micro- and macro-mechanical analyses of rev in sheared granular samples [Communication écrite]. 2024 International Symposium on Geomechanics from Micro to Macro, Grenoble, France. Non disponible

Cantor, D., & Ovalle, C. (février 2024). Multi-Scale Study of Specimen Size Effect on Shear Strength of Polydisperse Granular Materials Using DEM [Communication écrite]. Geo-Congress 2024, Vancouver, British Columbia, Canada. Lien externe

2023

Carrasco, S., Cantor, D., Ovalle, C., & Quiroz-Rojo, P. (2023). Shear strength of angular granular materials with size and shape polydispersity. Open Geomechanics, 4, 1-14. Disponible

Cantor, D., & Ovalle, C. (septembre 2023). Micromechanical effects of sample scale in size polydisperse granular materials under simple shear [Résumé]. 9th International Conference on Discrete Element Methods (DEM 2023), Erlangen, Germany. Non disponible

Cantor, D., & Ovalle, C. (2023). Sample size effects on the critical state shear strength of granular materials with varied gradation and the role of column-like local structures. Géotechnique, 42 pages. Lien externe

2022

Cantor, D., Ovalle, C., & Azéma, É. (2022). Microstructural origins of crushing strength for inherently anisotropic brittle materials. International Journal of Solids and Structures, 238, 111399 (12 pages). Disponible

Cantor, D., & Ovalle, C. (2022). Packing properties and steady strength of cemented loose granular materials. Computers and Geotechnics, 141, 104550 (9 pages). Disponible

Cantor, D., Cárdenas-Barrantes, M., & Orozco, L. (2022). Bespoke particle shapes in granular matter. Papers in Physics, 14, 140007 (8 pages). Lien externe

Cantor, D., & Wojtacki, K. (2022). Effects of friction and spacing on the collaborative behavior of domino toppling. Physical Review Applied, 17(6), 064021 (6 pages). Lien externe

Carrasco, S., Cantor, D., & Ovalle, C. (2022). Effects of particle size-shape correlations on steady shear strength of granular materials: The case of particle elongation. International Journal for Numerical and Analytical Methods in Geomechanics, 46(5), 979-1000. Lien externe

Carrasco, S., Quiroz-Rojo, P., Cantor, D., & Ovalle, C. (août 2022). Effets de la corrélation entre les tailles et les formes des grains sur la résistance au cisaillement des matériaux granulaires [Communication écrite]. 25ème Congrès Français de Mécanique, Nantes, France. Lien externe

Barés, J., Cárdenas-Barrantes, M., Cantor, D., Renouf, M., & Azéma, É. (2022). Softer than soft: Diving into squishy granular matter. Papers in Physics, 14, 140009 (11 pages). Lien externe

Cárdenas-Barrantes, M., Cantor, D., Barés, J., Renouf, M., & Azéma, É. (2022). Three-dimensional compaction of soft granular packings. Soft Matter, 18(2), 312-321. Lien externe

2021

Cantor, D., Cárdenas-Barrantes, M., Preechawuttipong, I., Renouf, M., & Azéma, E. (juillet 2021). Bulk modulus of soft particle assemblies under compression [Communication écrite]. 9th International Conference on Micromechanics on Granular Media (Powders & Grains 2021) (4 pages). Publié dans EPJ Web of Conferences, 249. Disponible

Vuilloz, T., Cantor, D., & Ovalle, C. (juillet 2021). DEM modeling of segregation and stratification in pouring heaps of bidispersed mixtures of rounded particles [Communication écrite]. 9th International Conference on Micromechanics on Granular Media (Powders & Grains 2021). Publié dans EPJ Web of Conferences, 249. Lien externe

Barés, J., Cárdenas-Barrantes, M., Cantor, D., Azéma, É., & Renouf, M. (juillet 2021). Highly strained mixtures of bidimensional soft and rigid grains: an experimental approach from the local scale [Communication écrite]. Powders & Grains 2021 - 9th International Conference on Micromechanics on Granular Media (4 pages). Publié dans EPJ Web of Conferences, 249. Lien externe

Azéma, É., Cantor, D., & Preechawuttipong, I. (juillet 2021). Independence of shear strength with particle size dispersity still valid in polyhedral particle assemblies [Communication écrite]. 9th International Conference on Micromechanics on Granular Media Powders & Grains (4 pages). Publié dans EPJ Web of Conferences, 249. Lien externe

Cárdenas-Barrantes, M., Cantor, D., Barés, J., Renouf, M., & Azéma, É. (juillet 2021). A micro-mechanical compaction model for granular mix of soft and rigid particles [Communication écrite]. 9th International Conference on Micromechanics on Granular Media Powders & Grains (4 pages). Publié dans EPJ Web of Conferences, 249. Lien externe

Cárdenas-Barrantes, M., Cantor, D., Barés, J., Renouf, M., & Azéma, É. (2021). Micromechanical description of the compaction of soft pentagon assemblies. Physical Review E, 103(6), 10 pages. Lien externe

Cantor, D., Ovalle, C., & Azéma, É. (juillet 2021). Strength and energy consumption of inherently anisotropic rocks at failure [Communication écrite]. 9th International Conference on Micromechanics on Granular Media (Powders & Grains 2021). Publié dans EPJ Web of Conferences, 249. Lien externe

2020

Cárdenas-Barrantes, M., Cantor, D., Barés, J., Renouf, M., & Azéma, É. (2020). Compaction of mixtures of rigid and highly deformable particles: A micromechanical model. Physical Review E, 102(3), 10 pages. Lien externe

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