OUT-OF-PLANE VIBRATION OF A UNIFORM EULER-BERNOULLI BEAM ATTACHED TO THE INSIDE OF A ROTATING RIM

Authors
Citation
S. Naguleswaran, OUT-OF-PLANE VIBRATION OF A UNIFORM EULER-BERNOULLI BEAM ATTACHED TO THE INSIDE OF A ROTATING RIM, Journal of sound and vibration, 200(1), 1997, pp. 63-81
Citations number
20
Categorie Soggetti
Acoustics
ISSN journal
0022460X
Volume
200
Issue
1
Year of publication
1997
Pages
63 - 81
Database
ISI
SICI code
0022-460X(1997)200:1<63:OVOAUE>2.0.ZU;2-4
Abstract
This paper describes the out-of-plane vibration of a uniform Euler-Ber noulli beam one end of which is radially restrained (clamped or pinned ) on the inside of a rotating rigid rim and the other end is radially unrestrained (clamped, pinned or free). Depending on the root offset p arameter, the centrifugal axial force distribution may be wholly tensi le or partly compressive and partly tensile or wholly compressive. The general solution of the mode shape differential equation is expressed as the superposition of four converging polynomial functions. Six com binations of clamped, pinned and free boundary conditions are consider ed, and the corresponding frequency equation is expressed in closed fo rm, the roots of which give the natural frequencies. The first three o ut-of-plane dimensionless natural frequencies for typical combinations of the root offset parameter and rotational speed are presented in ta bular form. Beyond a value of the root offset parameter, the frequenci es increase and then decrease with increase in rotational speed. This aspect is discussed for the six combinations of the boundary condition s. It is possible for the rotational speed and a natural frequency to be equal (a ''tuned'' state) and for the beam to buckle at a critical rotational speed. These aspects are addressed and some representative results tabulated. (C) 1997 Academic Press Limited.