Bulletin of the American Physical Society
APS March Meeting 2020
Volume 65, Number 1
Monday–Friday, March 2–6, 2020; Denver, Colorado
Session L30: Soft Mechanics via Geometry I
8:00 AM–11:00 AM,
Wednesday, March 4, 2020
Room: 502
Sponsoring
Units:
DSOFT DPOLY
Chair: D. Zeb Rocklin, Georgia Inst of Tech
Abstract: L30.00004 : Emergence of rigidity, microscopic rearrangements and viscoelastic response in soft particle gels
Presenter:
Emanuela Del Gado
(Georgetown University)
Authors:
Emanuela Del Gado
(Georgetown University)
Bavand Keshavarz
(Mechanical Engineering, MIT)
Minaspi Bantawa
(Georgetown University)
Michela Geri
(Mechanical Engineering, MIT)
Mehdi Bouzid
(LPTMS, Universite Paris Sud)
Thibaut Divoux
(CNRS, MIT)
Gareth H McKinley
(Mechanical Engineering, MIT)
We have investigated the connection between the structural and mechanical heterogeneities of soft particulate gels and their viscoelastic spectrum in a 3-D microscopic numerical model, using large scale simulations with Optimally Windowed Chirp (OWCh) signals. In the model, particles spontaneously self-assemble into disordered, stable porous networks (even at low volume fractions) that feature extended relaxation spectra, microscopic dynamics, and mechanics consistent with several observations in colloidal and protein gels. To recapitulate the basic features of the particle contacts in those systems, the main ingredients of the model are short-range attractive interactions and bending stiffness for the inter-particle bonds. We have analyzed the emergence of rigidity, the shape of the frequency-dependent dynamic modulus G*(ω) and its dependence on the gel connectivity, and the distribution of microscopic non-affine rearrangements the network experiences under small-amplitude oscillatory deformation. We show how the viscoelastic response of different gels can be captured in a unique master curve through a fractional constitutive model and discuss how the underlying microscopic dynamical processes determine the rheological response.
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