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A HIGHLY ACTIVE ELECTRORHEOLOGICAL MATERIAL, NANO-SIZED BOEHMITE: INFLUENCE OF HYDROXYL ON ITS ELECTRORHEOLOGICAL PROPERTY

Authors :
Olivia Zhang
Fuhui Liao
Shao-Hua Zhang
Ming-Yuan Xu
Jun-Ran Li
Li Huo
Source :
Chemical Engineering Communications. 197:684-691
Publication Year :
2010
Publisher :
Informa UK Limited, 2010.

Abstract

A highly active electrorheological (ER) material, nano-sized boehmite, AlO(OH), has been obtained. The relative shear stress (τr = τE/τ0, τ0 and τE are the shear stresses at the electric field strength of 0 kV/mm and 4.2 kV/mm, respectively) of the suspension (25 wt.%) in silicone oil reached 212 at a shear rate of 14.5 s−1 and a DC electric field. The dielectric property, conductivity, surface energy, microstructure, and composition of boehmite [AlO(OH)] and alkaline alumina containing both AlO(OH) and Al2O3 have been studied. The results showed that the hydroxyl group plays a critical role in influencing the ER activity of the material by changing the dielectric property and conductivity of the material.

Details

ISSN :
15635201 and 00986445
Volume :
197
Database :
OpenAIRE
Journal :
Chemical Engineering Communications
Accession number :
edsair.doi...........50315c165c966ec2b5db93f7c0e81a3e
Full Text :
https://doi.org/10.1080/00986440903287809