Interface tension-induced stress field around periodic nano-inclusions of arbitrary shape
From MaRDI portal
Publication:5132376
DOI10.1177/1081286518820084OpenAlexW2907426124MaRDI QIDQ5132376
Publication date: 12 November 2020
Published in: Mathematics and Mechanics of Solids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1177/1081286518820084
arbitrary shapecomplex variable methodsinterface tensionseries expansion methodsperiodic nano-inclusions
Related Items (1)
Cites Work
- Unnamed Item
- Prediction of the stress field and effective shear modulus of composites containing periodic inclusions incorporating interface effects in anti-plane shear
- Determination of effective thermal expansion coefficients of unidirectional fibrous nanocomposites
- Surface tension-induced interfacial stresses around a nanoscale inclusion of arbitrary shape
- Multiple interacting circular nano-inhomogeneities with surface/interface effects
- Elastic field of an isotropic matrix with a nanoscale elliptical inhomogeneity
- Equivalent inhomogeneity method for evaluating the effective elastic properties of unidirectional multi-phase composites with surface/interface effects
- On the anti-plane shear of an elliptic nano inhomogeneity
- A continuum theory of elastic material surfaces
- Surface stress in solids
- A unified periodical boundary conditions for representative volume elements of composites and applications.
- Faber series method for two-dimensional problems of an arbitrarily shaped inclusion in piezoelectric materials
- Analytic solution for a circular nano-inhomogeneity with interface stretching and bending resistance in plane strain deformations
- Two circular inclusions with arbitrarily varied surface effects
- Integral-type stress boundary condition in the complete Gurtin-Murdoch surface model with accompanying complex variable representation
- The determination of the elastic field of an ellipsoidal inclusion, and related problems
- The elastic field outside an ellipsoidal inclusion
- Size-Dependent Elastic State of Ellipsoidal Nano-Inclusions Incorporating Surface∕Interface Tension
- Analytical Solution for Size-Dependent Elastic Field of a Nanoscale Circular Inhomogeneity
- Stress field in a porous material containing periodic arbitrarily-shaped holes with surface tension
This page was built for publication: Interface tension-induced stress field around periodic nano-inclusions of arbitrary shape