4.6 Article

Effect of thermo-magneto-electro-mechanical fields on the bending behaviors of a three-layered nanoplate based on sinusoidal shear-deformation plate theory

期刊

JOURNAL OF SANDWICH STRUCTURES & MATERIALS
卷 21, 期 2, 页码 639-669

出版社

SAGE PUBLICATIONS LTD
DOI: 10.1177/1099636217697497

关键词

Thermo-magneto-electro-mechanical; three-layered nanoplate; applied electric and magnetic potentials; piezo-magnetic face-sheets; sinusoidal shear-deformation plate theory

资金

  1. University of Kashan [574613/5]
  2. Iranian Nanotechnology Development Committee

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The nonlocal thermo-magneto-electro-mechanical bending behaviors of a three-layered nanoplate are presented in this study. The three-layered nanoplate includes a nano-sheet and two piezo-magnetic face-sheets at the top and the bottom. Temperature distribution is assumed linear along the thickness of the plate. The piezo-magnetic face-sheets are subjected to three-dimensional electric and magnetic potentials. The applied electric and magnetic potentials are applied at top of the face-sheets. The constitutive thermo-electro-magneto relations are derived based on the sinusoidal shear-deformation plate theory and nonlocal electro-magneto-elasticity. Using the principle of virtual work seven equations of the equilibrium are derived. The numerical results of this research indicate that some parameters have considerable effect on the bending behavior of three-layered nanoplate. Nonlocal parameter, applied electric and magnetic potentials, and temperature distribution are important parameters in this analysis.

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