Abstraet--A model is presented for predicting the anisotropic effective elastic moduli of a microcrack damaged material. The generalized self-consistent method is employed and the solution for a crack in an elliptical inclusion is used to estimate the energy dissipation due to crack opening. The ana
Anisotropic effective moduli of microcracked materials under antiplane loading
โ Scribed by Xu Wang; Michael H. Santare; George A. Gazonas
- Publisher
- Elsevier Science
- Year
- 2009
- Tongue
- English
- Weight
- 520 KB
- Volume
- 76
- Category
- Article
- ISSN
- 0013-7944
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โฆ Synopsis
This study focuses on the prediction of the anisotropic effective elastic moduli of a solid containing microcracks with an arbitrary degree of alignment by using the generalized self-consistent method (GSCM). The effective elastic moduli pertaining to anti-plane shear deformation are discussed in detail. The undamaged solid can be isotropic as well as anisotropic. When the undamaged solid is isotropic, the GSCM can be realized exactly. When the undamaged solid is anisotropic it is difficult to provide an analytical solution for the crack opening displacement to be used in the GSCM, thus an approximation of the GSCM is pursued in this case. The explicit expressions of coupled nonlinear equations for the unknown effective moduli are obtained. The coupled nonlinear equations are easily solved through iteration.
๐ SIMILAR VOLUMES
The asymptotic stress field around a notch tip in an anisotropic power taw material subject to antiplane shear is investigated. An anisotropic yield criterion and a flow rule are used to derive the anisotropic constitutive relation for such materials. Two problems of different notch surface boundary
Damage weakens the mechanical characteristics of materials[ But this weakening can disappear if the cracks close again] this is called the unilateral e}ect of damage[ We propose a model of this phenomenon using damage mechanics in the case of a di}use network of identical microcracks[ The microcrack