Revista: | Brazilian journal of physics |
Base de datos: | PERIÓDICA |
Número de sistema: | 000390700 |
ISSN: | 0103-9733 |
Autors: | Liu, Yunfang1 Zeng, Qingfeng1 Feng, Zhiqiang2 Cheng, Laifei1 Li, Liangjun1 Zhang, Litong1 |
Institucions: | 1Northwestern Polytechnical University, School of Materials Science and Engineering, Xi’an, Shaanxi. China 2Southwest Jiaotong University, School of Mechanics and Engineering, Chengdu, Sichuan. China |
Any: | 2016 |
Període: | Feb |
Volum: | 46 |
Número: | 1 |
Paginació: | 87-96 |
País: | Brasil |
Idioma: | Inglés |
Tipo de documento: | Artículo |
Enfoque: | Experimental, aplicado |
Resumen en inglés | A numerical approach combining the Monte Carlo (MC) and the finite element method (FEM) is developed and applied to investigate the mechanical performance of layered composites. We consider a simplified twodimensional layered composite model and mainly focus on the stress response with the effects of the grain orientation, grain boundary properties, and the laminated topological structure. The stress distribution in the materials is heterogeneous in each individual layer because of grain orientation. The stress level in the hard layers is higher than that in the soft layers from the point of view of global stress distribution. The average stress changes with the inner layer thickness and the number of layers. The average stress increases almost linearly with the modulus ratio for the homogeneous materials, whereas it is nonlinear for the heterogeneous polycrystalline layered materials |
Disciplines | Ingeniería |
Paraules clau: | Ingeniería de materiales, Materiales compuestos, Materiales laminados, Microestructura policristalina, Análisis de esfuerzos |
Keyword: | Engineering, Materials engineering, Composite materials, Layered materials, Polycrystalline microstructure, Stress analysis |
Text complet: | Texto completo (Ver PDF) |