591 - 609 |
Physical gelation under shear for gelatin gels de Carvalho W, Djabourov M |
610 - 617 |
Dynamic study of gelatin gels by creep measurements Normand V, Ravey JC |
618 - 627 |
Rheo-NMR study of a non-flow-aligning sidechain liquid crystal polymer in nematic solution Siebert H, Grabowski DA, Schmidt C |
628 - 631 |
Viscosity of a liquid crystalline polymer solution with a polydomain or a band texture Tsakalos VT, Peuvrel-Disdier E, Navard P |
632 - 638 |
Branched viscoelastic surfactant solutions and their response to elongational flow Fischer P, Fuller GG, Lin ZC |
639 - 645 |
Formation of the shear-induced state in dilute cationic surfactant solutions Koch S |
646 - 656 |
Elongational flow opto-rheometry for polymer melts - 1. Construction of an elongational flow opto-rheometer and some preliminary results Kotaka T, Kojima A, Okamoto M |
657 - 666 |
Investigation of the linear flow regime of commercial polymers by numerical conversion of MVM creep measurements Ringhofer M, Brabec CJ, Sobczak R, Mead D, Driscoll J |
667 - 676 |
Investigation of relaxation properties of polymer melts by comparison of relaxation time spectra calculated with different algorithms Brabec CJ, Rogl H, Schausberger A |
677 - 685 |
Inlet instabilities in the capillary flow of polyethylene melts Perez-Gonzalez J, Perez-Trejo L, de Vargas L, Manero O |
686 - 693 |
Imperfect lubricated squeezing flow viscometry for foods Hoffner B, Gerhards C, Peleg M |