General imperfect interface model for spherical-circular inclusion composites
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Publication:6544689
DOI10.1007/S00707-023-03820-YzbMATH Open1543.74085MaRDI QIDQ6544689
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Publication date: 27 May 2024
Published in: Acta Mechanica (Search for Journal in Brave)
minimum energy principleeffective conductivityanisotropic coatingimperfectly-bonded inclusionthree-point correlation approximation
Effective constitutive equations in solid mechanics (74Q15) Composite and mixture properties (74E30)
Cites Work
- Bounds on the effective conductivity of statistically isotropic multicomponent materials and random cell polycrystals
- The microscopic conduction fields in the multi-coated sphere composites under the imposed macroscopic gradient and flux fields
- Conduction in 2-D and 3-D dimensional spherically-symmetric anisotropic-coating inclusion composites
- Thermal Green's functions in plane anisotropic bimaterials with spring-type and Kapitza-type imperfect interface
- Corrigendum to ``A general interface model for a three-dimensional curved thin anisotropic interphase between two anisotropic media
- The effective conductivity of composites with imperfect thermal contact at constituent interfaces
- Variational methods, bounds, and size effects for composites with highly conducting interface
- Effective thermal conductivity of micro-inhomogeneous media containing imperfectly bonded ellipsoidal inclusions
- Effective conductivity of composite with imperfect contact between elliptic fibers and matrix: Maxwell's homogenization scheme
- Solutions for the conductivity of multi-coated spheres and spherically symmetric inclusion problems
- A general interface model for a three-dimensional curved thin anisotropic interphase between two anisotropic media
- Bounds for the effective conductivity of a composite with an imperfect interface
- Asymptotic study of imperfect interfaces in conduction through a granular composite material
- On the effective conductivity of composites with ellipsoidal inhomogeneities and highly conducting interfaces
- Thermal-elastic field around an elliptical nano-inclusion with interface conduction and interface stress effects
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