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Electrical Resistivity of Composites

Journal of the American Ceramic Society · 1990 · Vol. 73(8) · pp. 2187–2203
D.S. McLachlanMichael BlaszkiewiczRobert E. Newnham

Abstract

Percolation and Bruggeman's effective media theories, as they apply to the electrical conductivity of composites, are reviewed, and a general effective media (GEM) equation, which combines most aspects of both percolation and effective media theories, is introduced. It is then shown that the GEM equation quantitatively fits electrical resistivity (conductivity) as a function of the volume fraction data for binary composites. The parameters used to fit the experimental data are the electrical resistivities of the two phases, the percolation threshold for the lower resistivity phase (ô c ), and an exponent t. Preliminary work, showing how the GEM equation can be used to model the piezoresistivity of composites by postulating that ô c is a function of the independent variable, is also presented.

High voltage insulation and dielectric phenomenaSmart Materials for ConstructionUltrasonics and Acoustic Wave PropagationElectrical resistivity and conductivityPercolation thresholdPercolation (cognitive psychology)Materials scienceVolume fractionComposite materialPercolation theoryWork (physics)ExponentPhase (matter)
Citations
1,414
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References
Advances in electrochemistry and electrochemical engineering
Electrochimica Acta · 1962 · 954 citations
Connectivity and piezoelectric-pyroelectric composites
Materials Research Bulletin · 1978 · 1,869 citations
The Electrical Resistance of Binary Metallic Mixtures
Journal of Applied Physics · 1952 · 1,889 citations
Electrical conductivity in inhomogeneous media
AIP conference proceedings · 1978 · 631 citations
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