Deformation of Soft Solid Surfaces Driven by Surface Stress

FOCUS · G35 · ID: 2154251






Presentations

  • ORAL · Invited

    Presenters

    • Katharine E Jensen

      • Williams College

    Authors

    • Katharine E Jensen

      • Williams College
    • Joseph Headley

      • Williams College
    • Edgar W Lyons

      • Williams College
    • Mathew Q Giso

      • Tufts University
    • Emily P Kuwaye

      • Williams College
    • Caroline D Tally

      • Williams College
    • Aidan J Duncan

      • Williams College
    • Chaitanya Joshi

      • Tufts University
    • Timothy J Atherton

      • Tufts University

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  • ORAL

    Presenters

    • Abigail Plummer

      • Princeton University

    Authors

    • Abigail Plummer

      • Princeton University
    • Lebo Molefe

      • Ecole Polytechnique Federale de Lausanne
    • John M Kolinski

      • Ecole Polytechnique Federale de Lausanne
      • EMSI - IGM - STI - EPFL
    • Andrej Kosmrlj

      • Princeton University

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  • ORAL

    Publication: Liu, M., Huang, H., 2019. Poroelastic response of spherical indentation into a half space with a drained surface via step displacement. International Journal of Solids and Structures 165, 34–49.
    Liu, M., Huang, H., 2021. Finite element modeling of spherical indentation in a poro-elasto-plastic medium via step displacement loading. International Journal of Numerical and Analytical Methods in Geomechanics.
    Liu, M., Huang, H., 2021. Poroelastic response of spherical indentation into a half space with an impermeable surface via step displacement. Journal of the Mechanics and Physics of Solids 155,104546.
    Liu, M., H. Huang, 2023. Master Curves for Poroelastic Spherical Indentation with Step Displacement Loading, International Journal of Engineering Science (submitted).

    Presenters

    • Haiying Huang

      • Georgia Institute of Technology

    Authors

    • Haiying Huang

      • Georgia Institute of Technology
    • Ming Liu

      • Georgia Institute of Technology

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