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Control of stress response in a rotating infinite hollow multilayered piezoelectric cylinder. (English) Zbl 1161.74448

Summary: The theoretical study of the control of stress is developed for a rotating infinite hollow multilayered radially polarized piezoelectric cylinder. The exact solution is obtained by means of the state-space method. As an illustrative example, the distribution of the radial and tangential stresses in a rotating hollow internally pressurized five-layered piezoelectric cylinder subjected to different electric potential at the internal and external surfaces are performed. Numerical results show that the distribution of the stress can be controlled by applying appropriate electric potentials at the correct surfaces.

MSC:

74M05 Control, switches and devices (“smart materials”) in solid mechanics
74F15 Electromagnetic effects in solid mechanics
Full Text: DOI

References:

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