Effective conductivity of composites containing spheroidal inclusions: Comparison of simulations with theory

نویسنده

  • In Chan Kim
چکیده

We determine, by first-passage-time simulations, the effective conductivity tensor ve of anisotropic suspensions of aligned spheroidal inclusions with aspect ratio b/a. This is a versatile model of composite media, containing the special limiting cases of aligned disks (b/a=O), spheres (b/a = I), and aligned needles (b/a = CO ) , and may be employed to model aligned, longand short-fiber composites, anisotropic sandstones, certain laminates, and cracked media. Data for a, are obtained for prolate cases (b/a=2, 5, and 10) and oblate cases (b/a=O. 1, 0.2, and 0.5) over a wide range of inclusion volume fractions and selected phase conductivities (including superconducting inclusions and perfectly insulating “voids”). The data always lie within second-order rigorous bounds on o, due to Willis [J. Mech. Phys. Solids 25, 185 ( 1977)] for this model. We comnare our data for nrolate and oblate spheroids to our previously obtained data for spheres [J. Appl. Phys. 69, 2280 ( 1991)].

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تاریخ انتشار 1999