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Extensional behavior of rod suspension in dilute polymer solution

Authors
Han, HyejinKim, Chongyoup
Issue Date
8월-2015
Publisher
KOREAN SOC RHEOLOGY
Keywords
capillary thinning; extensional viscosity; Batchelor theory; polymer conformation; relaxation time
Citation
KOREA-AUSTRALIA RHEOLOGY JOURNAL, v.27, no.3, pp.197 - 206
Indexed
SCIE
SCOPUS
KCI
Journal Title
KOREA-AUSTRALIA RHEOLOGY JOURNAL
Volume
27
Number
3
Start Page
197
End Page
206
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/92875
DOI
10.1007/s13367-015-0020-1
ISSN
1226-119X
Abstract
Extensional viscosity of rod particle suspensions in polymer solutions is studied experimentally. Rod particle suspensions were prepared by dispersing FeOOH rods in polyacrylamide (molecular weight of 5-6 M) solutions in a glycerin-water mixture. The diameter of rod particles was 100 nm and the aspect ratio was 4.3, 8.7 and 15.6. Particle volume fraction was 0.005-0.02. The extensional viscosity was measured by the capillary thinning method using the commercially available CaBER. Under the experimental condition both the polymer solution and particle suspensions are dilute. Particle-particle interaction is neglected in the solutions which are stretched by the extensional flow at the bulk. The result shows that extensional viscosity of the rod suspension in polymer solution decreases with the increase in particle volume fraction. The decrease is ascribed to the change in polymer conformation from the stretched state in the bulk flow to the less stretched state in shear flow developed near the particle to match the no-slip condition at the particle surface.
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