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Investigation on a rotating FGPM circular disk under a coupled hygrothermal field. (English) Zbl 1443.74038

Summary: In this paper, the distributions of the temperature, moisture, displacement and stress of a functionally graded piezoelectric material (FGPM) circular disk rotating around its axis at a constant angular velocity under a coupled hygrothermal field are presented by a numerical method. The material properties of the FGPM circular disk are assumed to vary along the radial coordinate exponentially. First, the coupled hygrothermal field along the radius of a rotating circular disk is achieved by solving the coupled hygrothermal equations, and then the dynamic equilibrium is solved by utilizing the finite difference method. Finally, numerical results show the effects of functionally graded index, inner radius, angular speed and hygrothermal index on the hygrothermal behaviors of the FGPM circular disk. The results can be useful for the optimal design of rotating FGPM circular disks under a coupled hygrothermal field.

MSC:

74-10 Mathematical modeling or simulation for problems pertaining to mechanics of deformable solids
74F15 Electromagnetic effects in solid mechanics
Full Text: DOI

References:

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