Mason numbers for magnetorheology
The electric field strength and shear rate dependence of the apparent shear viscosity of electrorheological (ER) suspensions can often be represented by a function of only the Mason number. A Mason number defined for magnetorheological (MR) suspensions by direct substitution of magnetostatic variabl...
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Published in | Journal of rheology (New York : 1978) Vol. 51; no. 5; pp. 883 - 893 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Melville, NY
The Society of Rheology
01.09.2007
Society of Rheology |
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Abstract | The electric field strength and shear rate dependence of the apparent shear viscosity of electrorheological (ER) suspensions can often be represented by a function of only the Mason number. A Mason number defined for magnetorheological (MR) suspensions by direct substitution of magnetostatic variables for electrostatic variables does not produce a similar collapse of shear viscosity data for MR suspensions. We show that a Mason number defined in terms of the suspension magnetization can be employed to produce a collapse of experimental data at various magnetic field strengths and shear rates. As for ER suspensions, this Mason number can be calculated from experimentally measured quantities. |
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AbstractList | The electric field strength and shear rate dependence of the apparent shear viscosity of electrorheological (ER) suspensions can often be represented by a function of only the Mason number. A Mason number defined for magnetorheological (MR) suspensions by direct substitution of magnetostatic variables for electrostatic variables does not produce a similar collapse of shear viscosity data for MR suspensions. We show that a Mason number defined in terms of the suspension magnetization can be employed to produce a collapse of experimental data at various magnetic field strengths and shear rates. As for ER suspensions, this Mason number can be calculated from experimentally measured quantities. |
Author | Golden, Mark A. Klingenberg, Daniel J. Ulicny, John C. |
Author_xml | – sequence: 1 givenname: Daniel J. surname: Klingenberg fullname: Klingenberg, Daniel J. organization: Department of Chemical and Biological Engineering, University of Wisconsin, Madison, Wisconsin 53706-1691 – sequence: 2 givenname: John C. surname: Ulicny fullname: Ulicny, John C. organization: General Motors R&D and Planning, Warren, Michigan 48090-9055 – sequence: 3 givenname: Mark A. surname: Golden fullname: Golden, Mark A. organization: General Motors R&D and Planning, Warren, Michigan 48090-9055 |
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Issue | 5 |
Keywords | Shear viscosity Suspensions Magnetorheology Rheology Magnetorheological fluid |
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SubjectTerms | Cross-disciplinary physics: materials science; rheology Electro- and magnetorheological fluids Exact sciences and technology Magnetorheology Material types Physics Rheology Shear viscosity Suspensions |
Title | Mason numbers for magnetorheology |
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