A peridynamic failure analysis of fiber-reinforced composite laminates using finite element discontinuous Galerkin approximations

被引:1
作者
Bo Ren
C. T. Wu
Pablo Seleson
Danielle Zeng
Dandan Lyu
机构
[1] Livermore Software Technology Corporation,Computer Science and Mathematics Division
[2] Oak Ridge National Laboratory,Department of Civil and Environmental Engineering
[3] Ford Motor Company,undefined
[4] Ford Research and Innovation Center,undefined
[5] The University of California,undefined
来源
International Journal of Fracture | 2018年 / 214卷
关键词
Peridynamic theory; Finite element method; Failure analysis; Discontinuous Galerkin method; Fiber-reinforced composites;
D O I
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中图分类号
学科分类号
摘要
This paper presents a discontinuous Galerkin weak form for bond-based peridynamic models to predict the damage of fiber-reinforced composite laminates. To represent the anisotropy of a laminate in a peridynamic model, a lamina is simplified as a transversely isotropic medium under a plane stress condition. The laminated structure is modeled by stacking the surface mesh layers along the thickness direction according to the laminate sequence. To avoid a mesh dependence on either the fiber orientation or the discretization, the spherical harmonic expansion theory is employed to construct a function for the micro-elastic modulus in terms of the bond-fiber angle. The laminate material is decomposed into an isotropic matrix material part and a transversely isotropic material part. The bond stiffness can be evaluated using the engineering material constants, based on the equivalence between the elastic energy density in the peridynamic theory and the elastic energy density in the classic continuum mechanics theory. Benchmark tests are conducted to verify the proposed model. Numerical results illustrate that the convergence of simulations with different horizon sizes and meshes can be achieved. In terms of damage analysis, the proposed model can capture the dynamic process of the complex coupling of the inner-layer and delamination damage modes.
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页码:49 / 68
页数:19
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