Constraint-based Rheology of Sense Suspensions and Granular Materials I
FOCUS · T25 · ID: 46181
Presentations
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How nanoscale surface physics affects emergent material properties in colloidal suspensions
ORAL · Invited
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Publication: Yu-FanLee, YiminLuo, TianyiBai, C. Velez, S.C. Brown, and N.J. Wagner, "Microstructure and rheology of shear-thickening colloidal suspensions with varying interparticle friction: Comparison of experiment with theory and simulation models," Physics of Fluids 33, 033316 (2021).<br>Lee, Y.F., Y.M. Luo, S.C. Brown, and N.J. Wagner, "Experimental test of a frictional contact model for shear thickening in concentrated colloidal suspensions," Journal of Rheology 64, 267-282 (2020).
Presenters
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Norman J Wagner
University of Delaware
Authors
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Norman J Wagner
University of Delaware
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Yu-Fan Lee
University of Delaware
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Scott C Brown
Chemours
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Disruption of structural order in sheared dense suspensions due to frictional constraints
ORAL
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Publication: • A. Goyal, S. Jones, E. Del Gado, N. Martys. Co-existence of ordered domains in sheared dense suspensions. In preparation.<br>• A. Goyal, S. Jones, E. Del Gado, N. Martys. Friction-induced changes in microstructure and stress localization in dense suspensions. In preparation
Presenters
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Abhay Goyal
NIST, Georgetown University
Authors
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Abhay Goyal
NIST, Georgetown University
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Emanuela del Gado
Georgetown University
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Scott Jones
NIST
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Nicos Martys
NIST
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Scaling in shear thickening suspensions with multidirectional flows
ORAL
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Presenters
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Itai Cohen
Cornell University, Cornell University, Physics, Ithaca, NY, Physics, Cornell University
Authors
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Meera Ramaswamy
Cornell University
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Itay Griniasty
Cornell University
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Danilo B Liarte
Cornell University
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Emanuela del Gado
Georgetown University
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Eleni Katifori
University of Pennsylvania
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James P Sethna
Cornell University
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Bulbul Chakraborty
Brandeis University
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Itai Cohen
Cornell University, Cornell University, Physics, Ithaca, NY, Physics, Cornell University
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Universal scaling in shear thickening suspensions
ORAL
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Publication: arXiv preprint arXiv:2107.13338 (2021)
Presenters
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Meera Ramaswamy
Cornell University
Authors
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Meera Ramaswamy
Cornell University
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Itay Griniasty
Cornell University
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Danilo B Liarte
Cornell University
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Abhishek Shetty
Anton Paar, USA
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Eleni Katifori
University of Pennsylvania
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Emanuela del Gado
Georgetown University
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James P Sethna
Cornell University
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Bulbul Chakraborty
Brandeis University
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Itai Cohen
Cornell University, Cornell University, Physics, Ithaca, NY, Physics, Cornell University
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Leveraging polymer glass transition to access thermally-switchable shear jamming suspensions
ORAL
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Publication: Chen C., van de Naald M., Singh A., Dolinski N.D., Jackson G. L., Jureller J., Jaeger H. M., Rowan S. J., de Pablo J. J. Leveraging polymer glass transition to access thermally-switchable shear jamming suspensions (In preparation)
Presenters
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Chuqiao Chen
University of Chicago
Authors
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Chuqiao Chen
University of Chicago
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Michael van de Naald
University of Chicago
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Abhinendra Singh
University of Chicago
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Neil D Dolinski
The University of Chicago, University of Chicago
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Grayson L Jackson
University of Chicago
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Justin Jureller
University of Chicago
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Heinrich M Jaeger
University of Chicago
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Stuart J Rowan
University of Chicago
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Juan De Pablo
University of Chicago, Pritzker School of Molecular Engineering, University of Chicago
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Role of solvent on the rheological properties of non-Brownian suspensions
ORAL
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Publication: The unexpected Solvent role on the Rheological properties of polymeric bead suspensions<br>(Manuscript in progress)
Presenters
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Adrien Izzet
ESPCI
Authors
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Adrien Izzet
ESPCI
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Anh Vu Nguyen Le
ESPCI
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Guillaume Ovarlez
CNRS, Laboratory of the Future, Bordeaux Univ.
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Annie Colin
ESPCI, ESPCI Paris
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Intrusion into granular-fluid mixtures: testing added-mass and Darcy-Reynolds theories
ORAL
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Publication: [1] Brassard, M. A., Causley, N., Krizou, N., Dijksman, J. A., & Clark, A. H. (2021). Viscous-like forces control the impact response of shear-thickening dense suspensions. Journal of Fluid Mechanics, 923.<br>[2] Strader, J., Causley, N., Dijksman, J. A., & Clark, A. H. (2021). Darcy-Reynolds forces during intrusion into granular-fluid beds. arXiv preprint arXiv:2107.12584.
Presenters
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Abe Clark
The Naval Postgraduate School
Authors
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Abe Clark
The Naval Postgraduate School
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Joshua A Dijksman
Wageningen University
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Marc Brassard
The Naval Postgraduate School
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Neil Causley
The Naval Postgraduate School
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Joshua Strader
The Naval Postgraduate School
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Nasser F Krizou
The Naval Postgraduate School
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Microstructure and Rheology of Semi-Dense and Dense Suspensions in Confined Flows
ORAL
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Publication: Barcelos et al., Mesoscale Modeling of Particle-Wall Interactions in Confined Flows of Particulate Systems, Phys. Fluids, submitted.<br>Barcelos et al., Microstructure and Rheology of Semi-Dense and Dense Suspensions in Confined Flows, Soft Matter, in preparation.
Presenters
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Joao M Maia
Case Western Reserve University
Authors
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Joao M Maia
Case Western Reserve University
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Shaghayegh Khani
Case Western Reserve University
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Erika Barcelos
Case Western Reserve University
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Monica Naccache
Pontifical Catholic University-Rio
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Arman Boromand
Yale University
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Fellipe Carvalho
COPPE, Federal University of Rio de Janeiro
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The Elastic Response of Wire Frame Glasses.
ORAL
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Publication: "Elastic Response of Wire Frame Glasses I: Two dimensional model" J. Chem. Phys. 154, 244904 (2021) https://doi.org/10.1063/5.0046524<br>"Elastic Response of Wire Frame Glasses II: Three dimensional systems" J. Chem. Phys. 154, 244905 (2021) https://doi.org/10.1063/5.0046525
Presenters
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David A King
University of Pennsylvania
Authors
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David A King
University of Pennsylvania
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Granular piles traversing the glass transition: A grain-scale characterization via the internal energy
ORAL
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Publication: Gago, Paula A., and Boettcher, Stefan. "Universal features of annealing and aging in compaction of granular piles." PNAS 117.52 (2020): 33072-33076. (https://doi.org/10.1073/pnas.2012757117)<br><br>Gago, Paula A., and Boettcher, Stefan. "Density fluctuations in granular piles traversing the glass transition: A grain-scale characterization of the transition via the internal energy." (https://arxiv.org/abs/2107.07764)
Presenters
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Paula A Gago
Department of Earth Science and Engineering, Imperial College, London
Authors
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Stefan Boettcher
Emory University
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Paula A Gago
Department of Earth Science and Engineering, Imperial College, London
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Compressing and Fracturing 2D Crystals
ORAL
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Presenters
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Pablo E Illing
Emory University
Authors
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Pablo E Illing
Emory University
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Jean-Christophe Ono-dit-Biot
McMaster Univ
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Kari Dalnoki-Veress
McMaster Univ
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Eric R Weeks
Emory University
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Rheology of dense, bidispersed particles suspended in a perturbed shear-flow
ORAL
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Presenters
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Alessandro Monti
Okinawa Institute of Science and Technology
Authors
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Alessandro Monti
Okinawa Institute of Science and Technology
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Marco Edoardo Rosti
Okinawa Institute of Science & Technology
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