Fracture analysis of cracked magneto-electro-elastic functionally graded materials using scaled boundary finite element method

THEORETICAL AND APPLIED FRACTURE MECHANICS(2022)

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摘要
This paper develops the scaled boundary finite element method to analyse fracture of functionally graded magneto-electro-elastic materials. Polygon meshes are employed to discretize the domain. No asymptotic solution, local mesh refinement or other special treatments around a crack tip are required to calculate the intensity factors. When the material gradients of the coefficients in the constitutive matrix are expressed as a series of power functions of the scaled boundary coordinates, the stiffness matrices can be integrated analytically. The formulation enables the generalized intensity factors of stress, electric displacement and magnetic induction fields along the radial direction to be represented analytically. This permits the calculation of the generalized intensity factors directly from the scaled boundary finite element solution of the singular stress, electric displacement and magnetic induction fields by following the standard stress recovery procedures in the finite element method. Several numerical benchmarks are presented to validate the proposed technique with the results reported in the literature.
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关键词
Functionally graded magneto-electro-elastic, Scaled boundary finite element, Stress intensity factors, Electric displacement intensity factor, Magnetic induction intensity factor, Fracture, Crack
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