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   hybrid integral transform and p-version fem for thermo-mechanical analysis of a functionally graded piezoelectric hollow cylinder subjected to asymmetric loads  
   
نویسنده dehghan m. ,moosaie a. ,nejad m.z.
منبع scientia iranica - 2021 - دوره : 28 - شماره : 4-B - صفحه:2229 -2249
چکیده    The value of this ingenious study is to be a pioneer in providing a combination of fast fourier transform (fft) and p-version of finite element method for the electro-thermo-elastic analysis of a thick hollow cylinder under asymmetric thermal loadings. in shells of revolution, the proposed fft-pfe method is accompanied by a significant decrease in computational costs. due to the problem periodicity of these types of structures, the fft technique is used to discretize the governing equations into a set of harmonics. each harmonic is then partitioned using higher-order finite elements. hierarchical finite elements based on legendre polynomial interpolation functions are utilized to discretize 2d governingequations of a functionally graded piezoelectric (fgp) cylinder. 3d governing equations of an fgp hollow cylinder are then discretized by using the higher-order lagrangian finite elements. the effects of fft grid-size and the order of the interpolation functions onthe convergence behavior of the proposed mixed fft-pfe method are investigated. the material properties, except the poisson's ratio, are considered to vary along the radius of the cylinder. the governing equations are derived using the principle of virtual displacements. for a 3d fgp hollow cylinder, the influence of axially and circumferentially non-symmetricthermal loadings is presented in contour plots.
کلیدواژه fft; higher-order finite elements; piezoelectric cylinder; asymmetric thermal loads
آدرس yasouj university, department of mechanical engineering, iran, yasouj university, department of mechanical engineering, iran, yasouj university, department of mechanical engineering, iran
پست الکترونیکی m.zamani.n@gmail.com
 
     
   
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