A hybrid multiscale finite element/peridynamics method

被引:5
|
作者
Wildman, Raymond A. [1 ]
O'Grady, James T. [1 ]
Gazonas, George A. [1 ]
机构
[1] US Army Res Lab, Attn RDRL WMM B, Aberdeen Proving Ground, MD 21005 USA
关键词
Fracture; Material flaw; Representative volume element; HETEROGENEOUS VISCOELASTIC SOLIDS; DYNAMIC FRACTURE-ANALYSIS; PERIDYNAMIC FORMULATION; CONTINUUM-MECHANICS; MODEL; DISCONTINUITIES; MICROCRACKS; ELASTICITY; SIMULATION; MEDIA;
D O I
10.1007/s10704-017-0218-y
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A hybrid method is presented that uses a representative volume element-based multiscale finite element technique combined with a peridynamics method for modeling fracture surfaces. The hybrid method dynamically switches from finite element computations to peridynamics based on a damage criterion defined on the peridynamics grid, which is coincident with the nodes of the finite element mesh. Nodal forces are either computed by the finite element method or peridynamics, as appropriate. The multiscale finite element method used here is a representative volume element-based approach so that inhomogeneous local scale material properties can be derived using homogenization. In addition, automatic cohesive zone insertion is used at the local scale to model fracture initiation. Results demonstrate that local scale flaw distributions can alter fracture patterns and initiation times, and the use of cohesive zone insertion can improve accuracy of crack paths.
引用
收藏
页码:41 / 53
页数:13
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