Structural Relaxation in Permanent Crosslinked Polymer Networks
FOCUS · M15 · ID: 1067116
Presentations
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Nonlinear Network Deformation and Loop Effect
ORAL
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Presenters
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Yuan Tian
University of North Carolina at Chapel Hill
Authors
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Yuan Tian
University of North Carolina at Chapel Hill
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Michael S Jacobs
Oak Ridge National Laboratory
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Andrey V Dobrynin
University of North Carolina at Chapel Hill, University of North Carolina, University of North Carolina Chapel Hill
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Effect of Penetrant Volume on Diffusion in Dense Crosslinked Networks
ORAL
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Presenters
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Tsai-Wei Lin
University of Illinois at Urbana-Champaign
Authors
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Tsai-Wei Lin
University of Illinois at Urbana-Champaign
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Charles E Sing
University of Illinois at Urbana-Champaign
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Effect of Crosslink Homogeneity on the Mechanochemical Activation of Elastic Polymer Networks
ORAL
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Presenters
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Victoria Kong
University of Pittsburgh
Authors
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Victoria Kong
University of Pittsburgh
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Jennifer E Laaser
University of Pittsburgh
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Bond Compression upon Chain Extension
ORAL
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Presenters
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Liel Sapir
Duke University
Authors
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Liel Sapir
Duke University
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James Brock
University of North Carolina, Chapel Hill
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Danyang Chen
Duke University
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Qi Liao
Chinese Academy of Sciences
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Sergey Panyukov
Russian Academy of Sciences, P.N. Lebedev Physics Institute
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Michael Rubinstein
Duke University
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Competition Between Phase Separation and Photopolymerization Kinetics During Polymeric Network Development
ORAL
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Publication: Planning to produce a paper on this work--title not yet developed
Presenters
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Lauren A Zakrzewski
Rensselaer Polytechnic Institute
Authors
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Lauren A Zakrzewski
Rensselaer Polytechnic Institute
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Yeongsik Kim
Rensselaer Polytechnic Institute
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Younghan Song
Rensselaer Polytechnic Institute
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Chang Y Ryu
Rensselaer Polytechnic Institute
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Chulsung Bae
Rensselaer Polytechnic Institute
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Network Structure Influences Bulk Modulus of Nearly Incompressible Rubbery Polymers
ORAL
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Publication: Barney, C. W., Helgeson, M. E., & Valentine, M. T. (2022). Network structure influences bulk modulus of nearly incompressible filled silicone elastomers. Extreme Mechanics Letters, 52(April), 101616. https://doi.org/10.1016/j.eml.2022.101616
Presenters
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Megan T Valentine
University of California, Santa Barbara
Authors
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Christopher W Barney
University of California Santa Barbara
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Olivia G Long
University of California Santa Barbara, University of California, Santa Barbara
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Matthew E Helgeson
University of California, Santa Barbara
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Megan T Valentine
University of California, Santa Barbara
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Theory of structural relaxation and vitrification in permanent and associating polymer networks
ORAL · Invited
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Publication: 1) B. Mei, T.-W. Lin, G. S. Sheridan, C. M. Evans, C. E. Sing, and K. S. Schweizer, Macromolecules, 55, 4159 (2022).
2) A.Ghosh, S. Samanta, S. Ge, A.P.Sokolov and K. S. Schweizer, Macromolecules, 55, 2345 (2022).
Presenters
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Ken S Schweizer
University of Illinois at Urbana Champaign, University of Illinois at Urbana-Champai, University of Illinois at Urbana-Champaign
Authors
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Ken S Schweizer
University of Illinois at Urbana Champaign, University of Illinois at Urbana-Champai, University of Illinois at Urbana-Champaign
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Effective Medium Theory for Mechanical Phase Transition of Fiber Networks
ORAL
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Presenters
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Sihan Chen
Rice University
Authors
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Sihan Chen
Rice University
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Tomer Markovich
Tel Aviv University
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Frederick C MacKintosh
Rice University
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Role of terminal groups of cis-1,4-polyisoprene in the formation of physical cross-linking in NR --- All-atom simulation study ---
ORAL
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Presenters
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Takashi Taniguchi
National Institute for Materials Science, Kyoto University
Authors
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Takashi Taniguchi
National Institute for Materials Science, Kyoto University
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Mayank Dixit
Kyoto University
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Discrete polymer network models for stimuli-responsive, biological, and curing networks via free energy minimization over rotations
ORAL
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Publication: Matthew Grasinger. Discrete polymer network modelling for soft multifunctional and biological materials via free energy minimization over rotations. (in preparation)
Matthew Grasinger, Carmel Majidi, and Kaushik Dayal. Nonlinear statistical mechanics drives intrinsic electrostriction and volumetric torque in polymer networks. Physical Review E 103.4 (2021): 042504.Presenters
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Matthew J Grasinger
Air Force Research Lab - WPAFB
Authors
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Matthew J Grasinger
Air Force Research Lab - WPAFB
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