1996WORLD SCIENTIFIC eBooksRequires access

Proceedings of the 5th International Conference on Electro-Rheological Fluids, Magneto-Rheological Suspensions, and Associated Technology : Sheffield, UK, 10-14 July 1995

William A. Bullough

Open publisher page 8 citations

Abstract

Magnetorheological finishing, W. Kordonsky Fundamental observations on ER fluids, J.E. Stangroom Spontaneous rotation of dielectric bodies (SRDB) in electro-rheological suspensions (ERS), Z.P. Shulman Materials for ER fluids, R. Bloodworth The conduction model of ER effect revisted, P. Atten Towards understanding ER fluids using Sals/rheometry, T.C.B. McLeish Rheological synergistic effects of electric and magnetic field in iron particle suspension, K. Koyama A nonlinear model for dynamic response of electro-rheological fluid in flow mode, R. Firoozian properties of electro-rheological fluids containing sulfonated poly (styrene-Co-divinylbenzene) particles, Y. Asako Contact interactions of ERF particles under an electric field, A. Matsepuro The development of electrorheological fluids for an automotive semi-active suspension, T.R. Weyenberg Electrically controllable vibration dampers with ER suspensions and homogenous ER fluids, B. Rech Dielectric properties of ER fluids in low temperature, L. Zhou conductivity and force between particles in a model electrorheological fluid I: conductivity, H. Conrad. (Part contents).

About this research paper

What this paper is about

Magnetorheological finishing, W. Kordonsky Fundamental observations on ER fluids, J.E. Stangroom Spontaneous rotation of dielectric bodies (SRDB) in electro-rheological suspensions (ERS), Z.P. Shulman Materials for ER fluids, R. Bloodworth The conduction model of ER effect revisted, P. Atten Towards understanding ER fluids using Sals/rheometry, T.C.B. McLeish Rheological synergistic effects of electric and magnetic field in iron particle suspension, K. Koyama A nonlinear model for dynamic response of electro-rheological fluid in flow mode, R. Firoozian properties of electro-rheological fluids containing sulfonated poly (styrene-Co-divinylbenzene) particles, Y. Asako Contact interactions of ERF particles under an electric field, A. Matsepuro The development of electrorheological fluids for an automotive semi-active suspension, T.R. Weyenberg Electrically controllable vibration dampers with ER suspensions and homogenous ER fluids, B. Rech Dielectric properties of ER fluids in low temperature, L. Zhou conductivity and force between particles in a model electrorheological fluid I: conductivity, H. Conrad. (Part contents).

Why it matters

OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Magnetorheological finishing, W. Kordonsky Fundamental observations on ER fluids, J.E. Stangroom Spontaneous rotation of dielectric bodies (SRDB) in electro-rheological suspensions (ERS), Z.P. Shulman Materials for ER fluids, R. Bloodworth The conduction model of ER effect revisted, P. Atten Towards understanding ER fluids using Sals/rheometry, T.C.B. McLeish Rheological synergistic effects of electric and magnetic field in iron particle suspension, K. Koyama A nonlinear model for dynamic response of electro-rheological fluid in flow mode, R. Firoozian properties of electro-rheological fluids containing sulfonated poly (styrene-Co-divinylbenzene) particles, Y. Asako Contact interactions of ERF particles under an electric field, A. Matsepuro The development of electrorheological fluids for an automotive semi-active suspension, T.R. Weyenberg Electrically controllable vibration dampers with ER suspensions and homogenous ER fluids, B. Rech Dielectric properties of ER fluids in low temperature, L. Zhou conductivity and force between particles in a model electrorheological fluid I: conductivity, H. Conrad. (Part contents).

Key concepts: Electrorheological fluid, Magnetorheological fluid, Rheology, Materials science, Suspension (topology), Rheometry, Viscosity, Composite material

Related papers

Back to paper searchBrowse research topicsOriginal source
Proceedings of the 5th International Conference on Electro-Rheological Fluids, Magneto-Rheological Suspensions, and Associated Technology : Sheffield, UK, 10-14 July 1995 — Research Paper | ScholarLens