Published November 2014 | Version v1
Journal article

Origin of shear thickening in semidilute wormlike micellar solutions and evidence of elastic turbulence

  • 1. Escuela Superior de Ingeniería Química e Industrias Extractivas, Instituto Politécnico Nacional, U.P.A.L.M. C.P. 07738, Col. S. P. Zacatenco, Del. Gustavo A. Madero, Mexico D.F. (Mexico)
  • 2. Laboratorio de Reología y Física de la Matería Blanda, Escuela Superior de Física y Matemáticas, Instituto Politécnico Nacional, U.P.A.L.M. C.P. 07730, Col. S. P. Zacatenco, Del. Gustavo A. Madero, Mexico D.F. (Mexico)
  • 3. Departamento de Biotecnología, Centro de Desarrollo de Productos Bióticos, Instituto Politécnico Nacional, C.P. 62731, Col. San Isidro, Yautepec, Morelos (Mexico)

Description

The origin of shear thickening in an equimolar semidilute wormlike micellar solution of cetylpyridinium chloride and sodium salicylate was investigated in this work by using Couette rheometry, flow visualization, and capillary Rheo-particle image velocimetry. The use of the combined methods allowed the discovery of gradient shear banding flow occurring from a critical shear stress and consisting of two main bands, one isotropic (transparent) of high viscosity and one structured (turbid) of low viscosity. Mechanical rheometry indicated macroscopic shear thinning behavior in the shear banding regime. However, local velocimetry showed that the turbid band increased its viscosity along with the shear stress, even though barely reached the value of the viscosity of the isotropic phase. This shear band is the precursor of shear induced structures that subsequently give rise to the average increase in viscosity or apparent shear thickening of the solution. Further increase in the shear stress promoted the growing of the turbid band across the flow region and led to destabilization of the shear banding flow independently of the type of rheometer used, as well as to vorticity banding in Couette flow. At last, vorticity banding disappeared and the flow developed elastic turbulence with chaotic dynamics

Additional details

Identifiers

Publishing Information

Journal Title
Journal of Rheology
Journal Volume
58
Journal Issue
6
Journal Page Range
p. 1917-1917.17
ISSN
0148-6055
CODEN
JORHD2

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
46065425
Subject category
S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
Descriptors DEI
CHAOS THEORY; CHLORIDES; COUETTE FLOW; FLOW VISUALIZATION; MATHEMATICAL SOLUTIONS; ORIGIN; PARTICLES; PRECURSOR; SHEAR; STRESSES; TURBULENCE; VISCOSITY
Descriptors DEC
CHLORINE COMPOUNDS; FLUID FLOW; HALIDES; HALOGEN COMPOUNDS; MATHEMATICS; VISCOUS FLOW

Optional Information

Notes
(c) 2014 The Society of Rheology