Dynamic analysis of a tapered composite thin-walled rotating shaft using the generalized differential quadrature method (Q779478)
From MaRDI portal
| This is the item page for this Wikibase entity, intended for internal use and editing purposes. Please use this page instead for the normal view: Dynamic analysis of a tapered composite thin-walled rotating shaft using the generalized differential quadrature method |
scientific article; zbMATH DE number 7219913
| Language | Label | Description | Also known as |
|---|---|---|---|
| English | Dynamic analysis of a tapered composite thin-walled rotating shaft using the generalized differential quadrature method |
scientific article; zbMATH DE number 7219913 |
Statements
Dynamic analysis of a tapered composite thin-walled rotating shaft using the generalized differential quadrature method (English)
0 references
13 July 2020
0 references
Summary: A dynamic model of a tapered composite thin-walled rotating shaft is presented. In this model, the transverse shear deformation, rotary inertia, and gyroscopic effects have been incorporated. The equations of motion are derived based on a refined variational asymptotic method (VAM) and Hamilton's principle. The partial differential equations of motion are reduced to the ordinary differential equations of motion by using the generalized differential quadrature method (GDQM). The validity of the dynamic model is proved by comparing the numerical results with those obtained in the literature and by using ANSYS. The effects of taper ratio, boundary conditions, ply angle, length to mean radius ratios, and mean radius to thickness ratios on the natural frequencies and critical rotating speeds are investigated.
0 references
0 references