441 - 451 |
Temperature-dependent instabilities in the capillary flow of a metallocene linear low-density polyethylene melt Perez-Gonzalez J, de Vargas L, Pavlinek V, Hausnerova B, Saha P |
453 - 471 |
Simple shearing flow of dry soap foams with tetrahedrally close-packed structure Reinelt DA, Kraynik AM |
473 - 498 |
The rheology of systems containing rigid spheres suspended in both viscous and viscoelastic media, studied by Stokesian dynamics simulations Schaink HM, Slot JJM, Jongschaap RJJ, Mellema J |
499 - 526 |
Predictive model of the turbulent flow of dilute gas-particulate suspension in a vertical pipe Sergeev YA, Swailes DC |
527 - 547 |
Bulk polymerization of epsilon-caprolactone: Rheological predictive laws Gimenez J, Cassagnau P, Michel A |
549 - 567 |
Surface mobility and slip of polybutadiene melts in shear flow Wise GM, Denn MM, Bell AT |
569 - 583 |
Investigating the morphology/rheology interrelationships in immiscible polymer blends Martin P, Carreau PJ, Favis BD, Jerome R |
585 - 594 |
Dynamical mechanical properties of gelling colloidal disks Cocard S, Tassin JF, Nicolai T |
595 - 616 |
Validation and application of a novel elongational device for polymer solutions Stelter M, Brenn G |
617 - 628 |
Viscosity of polymer/solvent systems: Quantitative description on the basis of molecular surfaces Schnell M, Wolf BA |
629 - 651 |
Brownian Dynamics simulation of hard-sphere colloidal dispersions Foss DR, Brady JF |
653 - 670 |
How to extract the Newtonian viscosity from capillary breakup measurements in a filament rheometer McKinley GH, Tripathi A |
671 - 671 |
The characterization of the total stress of concentrated suspensions of noncolloidal spheres in Newtonian fluids (vol 44, pg 185, 2000) Zarraga IE, Hill DA, Leighton DT |