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Non-Equilibrium and Transient Mechanics of Granular and Soft Materials II

FOCUS · S01 · ID: 1067686






Presentations

  • When sandcastles collapse: the effect of interparticle cohesion on collapsing granular columns

    ORAL

    Publication: The effect of interparticle cohesion on collapsing granular columns (in preparation)

    Presenters

    • Ram Sudhir Sharma

      Dept of Mechanical Engineering, UC Santa Barbara

    Authors

    • Ram Sudhir Sharma

      Dept of Mechanical Engineering, UC Santa Barbara

    • Wladimir Sarlin

      FAST Laboratory (CNRS/Université Paris-Saclay)

    • Langqi Xing

      Dept of Mechanical Engineering, UC Santa Barbara

    • Cyprien Morize

      FAST Laboratory (CNRS/Université Paris-Saclay), Paris-Saclay University

    • Philippe Gondret

      FAST Laboratory (CNRS/Université Paris-Saclay), Paris-Saclay University

    • Alban Sauret

      Dept of Mechanical Engineering, UC Santa Barbara, UC Santa Barbara

    View abstract →

  • Latent heat at the glass transition in a tapped granular pile

    ORAL

    Publication: [1] E. R. Nowak et al., Reversibility and irreversibility in the packing of vibrated granular material. Pow. Tech., 94(1):79–83 (1997).<br>[2] Paula A. Gago and Stefan Boettcher, Universal features of annealing and aging in compaction of granular piles. PNAS, 117(52), 33072 (2020). (https://www.pnas.org/content/117/52/33072.short)<br>[3] Paula A. Gago and Stefan Boettcher, Density fluctuations in granular piles traversing the glass transition: A grain-scale characterization of the transition via the internal energy. Sci. Adv. 8, eabl6304 (2022). (https://www.science.org/doi/full/10.1126/sciadv.abl6304)

    Presenters

    • Paula A Gago

      Imperial College, Department of Earth Science and Engineering

    Authors

    • Stefan Boettcher

      Emory University

    • Paula A Gago

      Imperial College, Department of Earth Science and Engineering

    View abstract →

  • Velocity and Shear Stress Profiles of a Sheared Athermal System with Pins

    ORAL

    Presenters

    • AKM Sadman Mahmud

      Bucknell University

    Authors

    • AKM Sadman Mahmud

      Bucknell University

    • Michael J Bolish

      Bucknell University

    • Amin Danesh

      Bucknell University

    • Jean Luc Ishimwe

      Swarthmore College

    • Xiang Li

      Swarthmore College

    • Cacey S Bester

      Swarthmore College

    • Brian Utter

      University of California, Merced

    • Amy L Graves

      Swarthmore College

    • Katharina Vollmayr-Lee

      Bucknell University

    View abstract →

  • Stress Analysis of a Sheared Athermal System with Pins

    ORAL

    Presenters

    • Michael J Bolish

      Bucknell University

    Authors

    • Michael J Bolish

      Bucknell University

    • AKM Sadman Mahmud

      Bucknell University

    • Amin Danesh

      Bucknell University

    • Jean Luc Ishimwe

      Swarthmore College

    • Xiang Li

      Swarthmore College

    • Cacey S Bester

      Swarthmore College

    • Brian Utter

      University of California, Merced

    • Amy L Graves

      Swarthmore College

    • Katharina Vollmayr-Lee

      Bucknell University

    View abstract →

  • Propagating irreversibility fronts in cyclically sheared suspensions

    ORAL

    Publication: Propagating irreversibility fronts in cyclically sheared suspensions. J Wang, JM Schwarz, & JD Paulsen, Physical Review Research 4, 013025 (2022). https://doi.org/10.1103/PhysRevResearch.4.013025

    Presenters

    • Joseph D Paulsen

      Syracuse University

    Authors

    • Joseph D Paulsen

      Syracuse University

    • J. M Schwarz

      Syracuse University, Department of Physics and BioInspired Institute, Syracuse University, Syracuse, NY 13244, USA

    • Jikai Wang

      Syracuse University

    View abstract →

  • Non-equilibrium capillary self-assembly

    ORAL

    Presenters

    • Stuart J Thomson

      University of Bristol

    Authors

    • Stuart J Thomson

      University of Bristol

    • Jack-William Barotta

      Brown University

    • Daniel M Harris

      Brown University

    View abstract →