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Articles

Vibration analysis of nonuniform hyperboloidal and barrel helices made of functionally graded material

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Pages 3781-3795 | Received 17 May 2020, Accepted 07 Sep 2020, Published online: 22 Sep 2020
 

Abstract

This study is in investigation of free vibration behavior of functionally graded hyperboloidal and barrel helices with variable cross section. Material and geometric variations of noncylindrical helices are assumed to be along the rod axis. Governing differential equations of motion, including rotatory inertia, axial and shear deformations are derived by the Timoshenko beam theory. Then, transfer matrix and stiffness matrix methods are employed for the numerical solution of obtained ordinary differential equations. Effects of material gradient index (βmat), diameter variation parameter (βsec), and ratio of helix radius at end section and middle section R2/R1 on the natural frequencies are investigated through a parametric study considering barrel and hyperboloidal geometries. Comparisons with available literature studies and ANSYS solutions are made regarding obtained results.

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