Fracture toughness of hierarchical self-similar honeycombs

Michael Ryvkin, Raz Shraga

International Journal of Solids and Structures(2018)

引用 17|浏览4
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摘要
The influence of self-similar hierarchy on the brittle fracture behavior of a two-dimensional honeycomb is investigated. The honeycomb walls are modeled as Bernoulli-Euler beam elements rigidly connected at the nodal points, and zero, first and second order hierarchies are addressed. The stress state in the vicinity of a semi-infinite crack is determined, and the fracture toughness is calculated in terms of tensile strength of parent material. The growth of hierarchical order leads to increase in the number of nodal degrees of freedom to be taken into account, and the computational cost of the calculations is reduced by employing a novel analysis method based on the discrete Fourier transform.
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关键词
Self-similar hierarchy,Periodic honeycomb,Brittle fracture,Discrete Fourier transform
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