Improved bounds on elastic and transport properties of fiber-reinforced composites: Effect of polydispersivity in fiber radius
- 15 February 1991
- journal article
- research article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 69 (4), 1948-1955
- https://doi.org/10.1063/1.348766
Abstract
Improved rigorous bounds on the effective elastic and transport properties of a transversely isotropic fiber‐reinforced material composed of oriented, infinitely long, multisized circular cylinders distributed throughout a matrix are computed. Specifically, we evaluate such bounds on the effective axial shear modulus (which includes, by mathematical analogy, the transverse conductivity), effective transverse bulk modulus, and the effective transverse shear modulus. These are generally demonstrated to provide significant improvement over the Hill–Hashin bounds which incorporate only volume‐fraction information. Although the upper bounds diverge from the lower bounds when the cylinders are much stiffer than the matrix, the improved lower bounds still yield relatively accurate estimates of the effective properties. Generally, increasing the degree of polydispersivity in cylinder size increases the effective transverse conductivity (or axial shear modulus) and effective transverse bulk modulus, and decreases (slightly) the effective transverse shear modulus for cases in which the fibers are more conducting or stiffer than the matrix.Keywords
This publication has 22 references indexed in Scilit:
- Random Heterogeneous Media: Microstructure and Improved Bounds on Effective PropertiesApplied Mechanics Reviews, 1991
- Bounds on the conductivity of a random array of cylindersProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1988
- Thermal Conductivity of Disordered Heterogeneous Media from the MicrostructureReviews in Chemical Engineering, 1987
- Effective properties of fiber-reinforced materials: II—Bounds on the effective elastic moduli of dispersions of fully penetrable cylindersInternational Journal of Engineering Science, 1986
- Effective properties of fiber-reinforced materials: I—Bounds on the effective thermal conductivity of dispersions of fully penetrable cylindersInternational Journal of Engineering Science, 1986
- Bounds on the properties of fiber-reinforced compositesJournal of Applied Physics, 1986
- Bounds on the elastic and transport properties of two-component compositesJournal of the Mechanics and Physics of Solids, 1982
- Bounds on the transport and optical properties of a two-component composite materialJournal of Applied Physics, 1981
- On elastic behaviour of fibre reinforced materials of arbitrary transverse phase geometryJournal of the Mechanics and Physics of Solids, 1965
- Theory of mechanical properties of fibre-strengthened materials: I. Elastic behaviourJournal of the Mechanics and Physics of Solids, 1964