Electrorheology of suspension of sulfonated styrene-co-divinylbenzene particles - Approach based on the dielectric properties of the suspension
Citation
F. Ikazaki et al., Electrorheology of suspension of sulfonated styrene-co-divinylbenzene particles - Approach based on the dielectric properties of the suspension, INT J MOD B, 13(14-16), 1999, pp. 1845-1851
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science
Journal title
INTERNATIONAL JOURNAL OF MODERN PHYSICS B
SICI code
0217-9792(19990630)13:14-16<1845:EOSOSS>2.0.ZU;2-S
Abstract
Effects of particle concentration, water content and temperature on the ele
ctrorheology of suspensions of highly sulfonated styrene-co-divinylbenzene
(SSD) particles in a silicone oil were investigated. The induced shear stre
ss was measured with a modified rotary rheometer. The electrorheology of th
e suspension was largely affected by the particle concentration, the water
content and the measurement temperature. The induced shear stress for the p
article concentration of 40 wt % was about twice as large as that of 20 wt
%. The induced shear stress for the water content of 4 wt % was about twice
as large as that of 2 wt %. The induced shear stress for the temperature o
f 80 degrees C was about 15 times as large as that of 20 degrees C.
Dielectric properties were measured to elucidate the mechanism of electrorh
eology. In order for an ER fluid to have a large ER effect, relaxation freq
uency of the ER fluid should be between 100 and 10(5) Hz and the difference
of the dielectric constant below and above the relaxation frequency (Delta
epsilon') must be large, which we refer to as the dielectric property mech
anism. The relation between measured ER effect and dielectric property mech
anism was discussed.