THERMOELASTIC PROPERTIES OF COMPOSITES CONTAINING ELLIPSOIDAL INHOMOGENEITIES

This article studies the thermal stresses and the effective thermoelastic properties of composites containing ellipsoidal inhomogeneities. The cluster scheme developed recently by A. Molinari and M. El Mouden in The Problem of Elastic Inclusions at Finite Concentration, Int. J. Solids Struct, vol. 3...

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Published inJournal of thermal stresses Vol. 23; no. 3; pp. 233 - 255
Main Authors EL MOUDEN, M, MOLINARI, A
Format Journal Article
LanguageEnglish
Published Washington, DC Informa UK Ltd 01.04.2000
Taylor & Francis
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Abstract This article studies the thermal stresses and the effective thermoelastic properties of composites containing ellipsoidal inhomogeneities. The cluster scheme developed recently by A. Molinari and M. El Mouden in The Problem of Elastic Inclusions at Finite Concentration, Int. J. Solids Struct, vol. 33, pp. 3131 - 3150, 1996, for the case of elastic inclusions embedded in an isotropic elastic matrix, is generalized to the case of ellipsoidal thermoelastic inclusions embedded in an anisotropic thermoelastic matrix. The shape, spatial distribution, and orientation of the inhomogeneities are taken into account in our scheme. The theoretical results for a composite of S i O 2 particles in a Kerimid matrix are in good agreement with experimental measurements.
AbstractList This article studies the thermal stresses and the effective thermoelastic properties of composites containing ellipsoidal inhomogeneities. The cluster scheme developed recently by A. Molinari and M. El Mouden in The Problem of Elastic Inclusions at Finite Concentration, Int. J. Solids Struct, vol. 33, pp. 3131 - 3150, 1996, for the case of elastic inclusions embedded in an isotropic elastic matrix, is generalized to the case of ellipsoidal thermoelastic inclusions embedded in an anisotropic thermoelastic matrix. The shape, spatial distribution, and orientation of the inhomogeneities are taken into account in our scheme. The theoretical results for a composite of S i O 2 particles in a Kerimid matrix are in good agreement with experimental measurements.
Author M. El Mouden, A. Molinari
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Issue 3
Keywords Thermal stress
Geometrical shape
Solid inclusion
Anisotropic material
Thermomechanical properties
Dispersion reinforced material
Experimental study
Orientation
Composite material
Heterogeneity
Spatial distribution
Silicon oxides
Thermoelasticity
Integral equation
Measurement method
Effective medium model
Ellipsoid
Isotropic material
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PublicationTitle Journal of thermal stresses
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Publisher Informa UK Ltd
Taylor & Francis
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Snippet This article studies the thermal stresses and the effective thermoelastic properties of composites containing ellipsoidal inhomogeneities. The cluster scheme...
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SubjectTerms Condensed matter: structure, mechanical and thermal properties
Exact sciences and technology
Fundamental areas of phenomenology (including applications)
Physics
Solid mechanics
Static elasticity (thermoelasticity...)
Structural and continuum mechanics
Thermal expansion; thermomechanical effects and density
Thermal properties of condensed matter
Thermal properties of crystalline solids
Title THERMOELASTIC PROPERTIES OF COMPOSITES CONTAINING ELLIPSOIDAL INHOMOGENEITIES
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Volume 23
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