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31 October 2007Love waves in a graded half-space with a homogeneous layer
The dispersion problem of Love waves is investigated in a functionally graded half-space covered with an isotropic
homogeneous layer. In the functionally graded half-space, the governing equation of the antiplane shear wave is solved,
the analytical solutions of displacement and stress are obtained, and the corresponding general form of Love wave
dispersion equation is deduced. Two cases of the functionally graded materials with exponentially and paraboliclly
varying shearing modulus and mass density along the depth are evaluated, and the dispersion curves are presented. It
shows that the cut-off frequency arises in the dispersion curve of the lowest order vibration model. This work can
provide theoretical basis for functionally graded materials optimization design, performance evaluation, nondestructive
testing, and inverse problem analysis.
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Hong Zhu, Jiecai Han, Yumin Zhang, Ligang Zhang, Bingzheng Gai, "Love waves in a graded half-space with a homogeneous layer," Proc. SPIE 6423, International Conference on Smart Materials and Nanotechnology in Engineering, 642341 (31 October 2007); https://doi.org/10.1117/12.779649