1995Unpublished venueRequires access

Progress in electrorheology : science and technology of electrorheological materials

Kathleen O. Havelka, F. E. Filisko

Open publisher page 17 citations

Abstract

The Evolution of ER from Discovery to Application (A Special Historical Note) (W. Winslow). Overview of ER Technology (F.E. Filisko). General Considerations: Recent Developments of ER Fluids (H. Block, P. Rattray). Novel Materials for ER Fluids (K.O. Havelka). Conduction Processes in ER Fluids (D.A. Brooks). Materials: Surfaceactivated Electrorheological Suspensions (Y.D. Kim, D.J. Klingenberg). Anhydrous Electrorheological Fluids Using Carbonaceous Particulate as Dispersed Phase (Y. Ishino et al.). ERfluids Based on Polyurethane Dispersions: Structure and Properties (R. Bloodworth, E. Wendt). Mechanisms: The Impact of Crystalline Phase Morphology on the Waterpromoted Electrorheological Effect on Polysaccharides (A.J. Stipanovic, J.O. Schoonmaker). High Field Concentration of Liquids in Contact with Polymeric Materials with Reference to Electrorheological Fluids (P. Atten et al.). Mechanics: ER Effect on the Normal Stress and Induced Network Structure of Liquid Crystal Polymer (K. Minagawa et al.). Transient Stresses in Electrorheological Fluids: Role of Particle Polarization Dynamics (J.M. Ginder et al.). Models: Structure Formation in ER Fluids (R. Tao, Q. Jiang). Asymmetrical Polarization of Spherical Colloidal Particle Double Layer in Electric Fields (Y. Hu et al.). 15 additional articles. Index.

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What this paper is about

The Evolution of ER from Discovery to Application (A Special Historical Note) (W. Winslow). Overview of ER Technology (F.E. Filisko). General Considerations: Recent Developments of ER Fluids (H. Block, P. Rattray). Novel Materials for ER Fluids (K.O. Havelka). Conduction Processes in ER Fluids (D.A. Brooks). Materials: Surfaceactivated Electrorheological Suspensions (Y.D. Kim, D.J. Klingenberg). Anhydrous Electrorheological Fluids Using Carbonaceous Particulate as Dispersed Phase (Y. Ishino et al.). ERfluids Based on Polyurethane Dispersions: Structure and Properties (R. Bloodworth, E. Wendt). Mechanisms: The Impact of Crystalline Phase Morphology on the Waterpromoted Electrorheological Effect on Polysaccharides (A.J. Stipanovic, J.O. Schoonmaker). High Field Concentration of Liquids in Contact with Polymeric Materials with Reference to Electrorheological Fluids (P. Atten et al.). Mechanics: ER Effect on the Normal Stress and Induced Network Structure of Liquid Crystal Polymer (K. Minagawa et al.). Transient Stresses in Electrorheological Fluids: Role of Particle Polarization Dynamics (J.M. Ginder et al.). Models: Structure Formation in ER Fluids (R. Tao, Q. Jiang). Asymmetrical Polarization of Spherical Colloidal Particle Double Layer in Electric Fields (Y. Hu et al.). 15 additional articles. Index.

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Available abstract

The Evolution of ER from Discovery to Application (A Special Historical Note) (W. Winslow). Overview of ER Technology (F.E. Filisko). General Considerations: Recent Developments of ER Fluids (H. Block, P. Rattray). Novel Materials for ER Fluids (K.O. Havelka). Conduction Processes in ER Fluids (D.A. Brooks). Materials: Surfaceactivated Electrorheological Suspensions (Y.D. Kim, D.J. Klingenberg). Anhydrous Electrorheological Fluids Using Carbonaceous Particulate as Dispersed Phase (Y. Ishino et al.). ERfluids Based on Polyurethane Dispersions: Structure and Properties (R. Bloodworth, E. Wendt). Mechanisms: The Impact of Crystalline Phase Morphology on the Waterpromoted Electrorheological Effect on Polysaccharides (A.J. Stipanovic, J.O. Schoonmaker). High Field Concentration of Liquids in Contact with Polymeric Materials with Reference to Electrorheological Fluids (P. Atten et al.). Mechanics: ER Effect on the Normal Stress and Induced Network Structure of Liquid Crystal Polymer (K. Minagawa et al.). Transient Stresses in Electrorheological Fluids: Role of Particle Polarization Dynamics (J.M. Ginder et al.). Models: Structure Formation in ER Fluids (R. Tao, Q. Jiang). Asymmetrical Polarization of Spherical Colloidal Particle Double Layer in Electric Fields (Y. Hu et al.). 15 additional articles. Index.

Key concepts: Electrorheological fluid, Rheology, Viscoelasticity, Polarization (electrochemistry), Electrohydrodynamics, Materials science, Electric field, Polymer

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