three-dimensional piezothermoelastic stress of a finite functionally graded cylindrical shell with piezoelectric layer

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ID: 237509
2013
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Abstract
Three-dimensional piezothermoelastic solutions for a finite functionally graded cylindrical shell with piezoelectric layer are carried out in this paper. The cylindrical shell is simply supported at four end edges and is subjected to axisymmetric thermomechanical loads. The piezoelectric layers are polarized along radial direction as a sensor. The material properties are assumed to be temperature independent and radially dependent but are assumed to be homogeneous in each layer; the variables are expanded in Fourier series to satisfy the boundary conditions and multilayer approach is used. Numerical results of mullite/molybdenum functionally graded cylindrical shell are presented; the temperature change, stresses, electric potential, and electric displacement distributions are given and briefly discussed.
Reference Key
kang2013mathematicalthree-dimensional Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;Yong-gang Kang;Zhong-qi Wang;Gongnan Xie
Journal journal of power sources
Year 2013
DOI
10.1155/2013/947693
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