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New analysis of yield stress on giant electrorheological fluids
Authors:Sesha Hari Vemuri  Myung S. Jhon  Ke Zhang  Hyoung Jin Choi
Affiliation:(1) Department of Chemical Engineering, Carnegie Mellon University, Pittsburgh, PA 15213, USA;(2) Department of Polymer Science and Engineering, Inha University, Incheon, 402-751, South Korea;
Abstract:
A new universal yield stress scaling equation is proposed to accurately model experimental data for giant electrorheological (GER) fluids. This new equation expressed in modified Bessel function predicts both regions of polarization effect predominant in the low electric field strength applied and polar molecule-dominating GER behavior, as well as collapses the experimental data of yield stress in a single line for a broad range of electric field strengths.
Keywords:
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