BEM-based algorithm for composite materials with Gurtin-Murdoch interfaces: Error analysis and effective parameters
The effective parameters of the composite materials with Gurtin-Murdoch ((G-M) interfaces are analyzed by standard boundary element method (BEM)-based equivalent inhomogeneity technique (EIT). The physical quantities all over the domain are first compared with the analytical and semi-analytical resu...
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| Published in | Mechanics of advanced materials and structures Vol. 29; no. 16; pp. 2358 - 2370 |
|---|---|
| Main Authors | , , , |
| Format | Journal Article |
| Language | English |
| Published |
Abingdon
Taylor & Francis
13.06.2022
Taylor & Francis Ltd |
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| Online Access | Get full text |
| ISSN | 1537-6494 1537-6532 |
| DOI | 10.1080/15376494.2020.1861668 |
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| Abstract | The effective parameters of the composite materials with Gurtin-Murdoch ((G-M) interfaces are analyzed by standard boundary element method (BEM)-based equivalent inhomogeneity technique (EIT). The physical quantities all over the domain are first compared with the analytical and semi-analytical results to validate accuracy. The effective parameters are then obtained by the present numerical EIT. Since interactions have been considered, we believe our results are more accurate than traditional estimations, such as the generalized self-consistent model (GSCM). Due to the numerical treatment is performed to the present method is more flexible to simulate the effective parameters of clusters with complex geometries. |
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| AbstractList | The effective parameters of the composite materials with Gurtin–Murdoch ((G-M) interfaces are analyzed by standard boundary element method (BEM)-based equivalent inhomogeneity technique (EIT). The physical quantities all over the domain are first compared with the analytical and semi-analytical results to validate accuracy. The effective parameters are then obtained by the present numerical EIT. Since interactions have been considered, we believe our results are more accurate than traditional estimations, such as the generalized self-consistent model (GSCM). Due to the numerical treatment is performed to the present method is more flexible to simulate the effective parameters of clusters with complex geometries. |
| Author | Liang, Yongcheng Gu, Yankai Zheng, Xingwei Han, Zhilin |
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| SubjectTerms | Algorithms Boundary element method Composite materials convergence analysis effective parameters equivalent inhomogeneity Error analysis Gurtin-Murdoch interfaces Inhomogeneity Parameters |
| Title | BEM-based algorithm for composite materials with Gurtin-Murdoch interfaces: Error analysis and effective parameters |
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