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Title: | Vibration of thin pre-twisted helical beams | Author(s): | Leung, Andrew Yee Tak | Issue Date: | 2010 | Publisher: | Elsevier | Journal: | International Journal of Solids and Structures | Volume: | 47 | Issue: | 9 | Start page: | 1177 | End page: | 1195 | Abstract: | A helical beam has non-zero curvature and tortuosity. When there is a pre-twist, the Frenet triad is not necessary coincident with the principal triad. When an initially straight rod undergoing a large deformation, it will be curved and twisted during each deformation sequence. The purpose of the paper is to establish the governing equations and the associated natural boundary conditions for a pre-twisted helical beam by variational principles and differential geometry. Although circular helix is taken as example, the formulation is valid for inhomogeneous and non-uniform parameters along the centerline that variable curvature and tortuosity can be treated without difficulties. The method can be used to treat helical anisotropy. If the pre-twist rate of a ring is 0.5, we show a thick Möbius ring for the first time. The solution of the natural vibration problem is through Chebyshev discretization and Clenshaw–Curtis integration by means of the Galerkin formulation. |
URI: | https://repository.cihe.edu.hk/jspui/handle/cihe/2477 | DOI: | 10.1016/j.ijsolstr.2010.01.005 | CIHE Affiliated Publication: | No |
Appears in Collections: | CIS Publication |
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