The inverse micromechanics problem given the dielectric constants for isotropic composites with spherical inclusions

In this article, convex optimization is introduced as a promising tool to study Eshelby based inverse micromechanics problems. The focus is on inverse micromechanics using the Eshelby-Mori-Tanaka model given the dielectric constants of the composite material and of all of its components. The model is exactly the same for the conductivity properties as well. This choice of model is made since the model is fairly simple and has a closed form analytical solution for the case of spheroidal inclusions as well. The forward or direct micromechanics problem deals with the determination of effective properties of a composite material given the properties of its components and microstructural information. The focus is on isotropic composites and the distribution of inclusions is assumed to be such that this holds. The inverse micromechanics problem considered in this paper deals with the determination of microstructural information given the properties of the composite material and all of its components. Since in this paper, isotropy of the composite and only spherical inclusions are considered, the goal is to determine just volume fractions of the components of the composite material. The inverse problem is formulated as a Linear Programming problem and is solved. Before this, the inverse problem and certain important variants of it are examined through the lens of convex optimization. Lastly, promising results regarding the relationship between dispersive materials, noise in measurements, and quality of obtained volumetric splits are showcased. The scope of the use of convex optimization in inverse micromechanics is discussed.

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Publication Details

Journal
International Journal of Engineering Science
Published
2026-09-18
DOI
https://doi.org/10.1016/j.ijengsci.2026.104665
Primary Topic
Composite Material Mechanics
Type
article
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The inverse micromechanics problem given the dielectric constants for isotropic composites with spherical inclusions

Björn Birgisson, Athindra Pavan, Swaroop Darbha
International Journal of Engineering Science
Composite Material Mechanics
article

The inverse micromechanics problem given the dielectric constants for isotropic composites with spherical inclusions

Björn Birgisson, Athindra Pavan, Swaroop Darbha
article en

Abstract

In this article, convex optimization is introduced as a promising tool to study Eshelby based inverse micromechanics problems. The focus is on inverse micromechanics using the Eshelby-Mori-Tanaka model given the dielectric constants of the composite material and of all of its components. The model is exactly the same for the conductivity properties as well. This choice of model is made since the model is fairly simple and has a closed form analytical solution for the case of spheroidal inclusions as well. The forward or direct micromechanics problem deals with the determination of effective properties of a composite material given the properties of its components and microstructural information. The focus is on isotropic composites and the distribution of inclusions is assumed to be such that this holds. The inverse micromechanics problem considered in this paper deals with the determination of microstructural information given the properties of the composite material and all of its components. Since in this paper, isotropy of the composite and only spherical inclusions are considered, the goal is to determine just volume fractions of the components of the composite material. The inverse problem is formulated as a Linear Programming problem and is solved. Before this, the inverse problem and certain important variants of it are examined through the lens of convex optimization. Lastly, promising results regarding the relationship between dispersive materials, noise in measurements, and quality of obtained volumetric splits are showcased. The scope of the use of convex optimization in inverse micromechanics is discussed.

International Journal of Engineering ScienceVol. 230
Openalex Percentile: Top 87%
Composite Material Mechanics
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The inverse micromechanics problem given the dielectric constants for isotropic composites with spherical inclusions — Björn Birgisson, Athindra Pavan, et al. · International Journal of Engineering Science (2026) | TGRS Research Map | TGRS