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国家自然科学基金(11102036)

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Computational multiscale methods for granular materials
2013年
The fine-scale heterogeneity of granular material is characterized by its polydisperse microstructure with randomness and no periodicity. To predict the mechanical response of the material as the microstructure evolves, it is demonstrated to develop computational multiscale methods using discrete particle assembly-Cosserat continuum modeling in micro- and macro- scales,respectively. The computational homogenization method and the bridge scale method along the concurrent scale linking approach are briefly introduced. Based on the weak form of the Hu-Washizu variational principle, the mixed finite element procedure of gradient Cosserat continuum in the frame of the second-order homogenization scheme is developed. The meso-mechanically informed anisotropic damage of effective Cosserat continuum is characterized and identified and the microscopic mechanisms of macroscopic damage phenomenon are revealed. c 2013 The Chinese Society of Theoretical and Applied Mechanics. [doi: 10.1063/2.1301101]
Xikui LiYuanbo LiangYouyao DuKe WanQinglin Duan
脆性断裂相场模型的自适应一致性无单元Galerkin方法
材料和结构的脆性断裂广泛存在于土木、机械、航空航天、船舶、汽车等国民经济的各行各业中,其发生具有突然性,无明显的先兆变形,严重威胁着工程结构和工业装备的安全运行。对脆性断裂作深入研究对于揭示裂纹产生、扩展和融合等复杂断裂...
邵玉龙
关键词:脆性断裂相场模型收敛性
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