4.5 Article

Surface energy effect on free vibration of nano-sized piezoelectric double-shell structures

Journal

PHYSICA B-CONDENSED MATTER
Volume 529, Issue -, Pages 41-56

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.physb.2017.10.038

Keywords

Nano-sized piezoelectric double-shells; Annular nano-plates; Surface/interface energy; Vibration frequency

Funding

  1. National Natural Science Foundation of China [11472182]
  2. projects of Hundreds of Outstanding Innovative Talents in Hebei, China [SLRC2017055]
  3. project for innovative graduates in Hebei Province of China [CXZZSS2017082]

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Combining Goldenveizer-Novozhilov shell theory, thin plate theory and electro-elastic surface theory, the size-dependent vibration of nano-sized piezoelectric double-shell structures under simply supported boundary condition is presented, and the surface energy effect on the natural frequencies is discussed. The displacement components of the cylindrical nano-shells and annular nano-plates are expanded as the superposition of standard Fourier series based on Hamilton's principle. The total stresses with consideration of surface energy effect are derived, and the total energy function is obtained by using Rayleigh-Ritz energy method. The free vibration equation is solved, and the natural frequency is analyzed. In numerical examples, it is found that the surface elastic constant, piezoelectric constant and surface residual stress show different effects on the natural frequencies. The effect of surface piezoelectric constant is the maximum. The effect of dimensions of the double-shell under different surface material properties is also examined.

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