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Axial, torsional, and flexural wave modes are included.
It is well known that an infinite periodic beam can support flexural wave band gaps.
The multi-layered piezoelectric actuators excite the flexural wave traveling in the circumference direction.
Such a concentric PZT structure possesses the electrical and mechanical coupling characteristics in flexural wave.
A vibration neutraliser will generally suppress a flexural wave significantly over a narrow frequency band.
The flexural wave speeds, bending stiffness and their loss factors were measured.
The subject of scattering flexural wave in a thin plate with multiple circular inclusions under the incident flexural wave is studied in this paper.
Finally, the influence of the geometric parameters on the flexural wave focalization characteristics in ABH indentations is discussed in detail.
The band structure and enhancement of flexural wave stop bands in a 2D periodic plate are investigated.
The control of flexural wave motion on a beam using a vibration neutraliser is the subject of this paper.
Such a termination attenuates the flexural wave reflection at the end of the waveguide, turning standing waves into travelling waves.
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