531 - 540 |
Particle tracking microrheology of protein solutions Josephson LL, Furst EM, Galush WJ |
541 - 548 |
Universal aspects of hydrogel gelation kinetics, percolation and viscoelasticity from PA-hydrogel rheology Adibnia V, Hill RJ |
549 - 557 |
On the inseparability of slip and gap-error Vleminckx G, Clasen C |
559 - 574 |
Yielding in a strongly aggregated colloidal gel. Part I: 2D simulations Roy S, Tirumkudulu MS |
575 - 586 |
Yielding in a strongly aggregated colloidal gel. Part II: Theory Roy S, Tirumkudulu MS |
587 - 601 |
Sedimentation of a sphere in wormlike micellar fluids Mohammadigoushki H, Muller SJ |
603 - 623 |
Start-up shear of concentrated colloidal hard spheres: Stresses, dynamics, and structure Koumakis N, Laurati M, Jacob AR, Mutch KJ, Abdellali A, Schofield AB, Egelhaaf SU, Brady JF, Petekidis G |
625 - 636 |
A hierarchical multimode molecular stress function model for linear polymer melts in extensional flows Narimissa E, Wagner MH |
637 - 648 |
Coalescence in PLA-PBAT blends under shear flow: Effects of blend preparation and PLA molecular weight Nofar M, Heuzey MC, Carreau PJ, Kamal MR, Randall J |
649 - 660 |
i-Rheo: Measuring the materials' linear viscoelastic properties "in a step"! Tassieri M, Laurati M, Curtis DJ, Auhl DW, Coppola S, Scalfati A, Hawkins K, Williams PR, Cooper JM |
661 - 671 |
Normal stress differences in non-Brownian fiber suspensions Bounoua S, Kuzhir P, Lemaire E |
673 - 685 |
Nonequilibrium molecular dynamics study of ring polymer melts under shear and elongation flows: A comparison with their linear analogs Yoon J, Kim J, Baig C |
687 - 694 |
A rheological evaluation of steady shear magnetorheological flow behavior using three-parameter viscoplastic models Cvek M, Mrlik M, Pavlinek V |
695 - 704 |
In situ measurement of the rheological properties and agglomeration on cementitious pastes Kim JH, Yim HJ, Ferron RD |
705 - 714 |
Constitutive issues associated with LAOS experimental techniques Garinei A, Pucci E |
715 - 732 |
Rheology of non-Brownian suspensions of rough frictional particles under shear reversal: A numerical study Peters F, Ghigliotti G, Gallier S, Blanc F, Lemaire E, Lobry L |
733 - 753 |
Active microrheology of colloidal suspensions: Simulation and microstructural theory Nazockdast E, Morris JF |
755 - 781 |
Active microrheology of hydrodynamically interacting colloids: Normal stresses and entropic energy density Chu HCW, Zia RN |
783 - 807 |
Delayed yield in colloidal gels: Creep, flow, and re-entrant solid regimes Landrum BJ, Russel WB, Zia RN |
809 - 818 |
Particle roughness and rheology in noncolloidal suspensions Tanner RI, Dai SC |