Title of article
Free Vibration and Damping of Rotating Composite Shaft with a Constrained Layer Damping
Author/Authors
Ren , Yongsheng College of Mechanical and Electronic Engineering - Shandong University of Science and Technology, China , Zhang, Yuhuan College of Mechanical and Electronic Engineering - Shandong University of Science and Technology, China
Pages
21
From page
1
To page
21
Abstract
The free vibration and damping characteristics of rotating shaft with passive constrained layer damping (CLD) are studied. The shaft is made of fiber reinforced composite materials. A composite beam theory taking into account transverse shear deformation is employed to model the composite shaft and constraining layer. The equations of motion of composite rotating shaft with CLD are derived by using Hamilton’s principle. The general Galerkin method is applied to obtain the approximate solution of the rotating CLD composite shaft. Numerical results for the rotating CLD composite shaft with simply supported boundary condition are presented; the effects of thickness of constraining layer and viscoelastic damping layers, lamination angle, and rotating speed on the natural frequencies and modal dampings are discussed.
Keywords
Constrained Layer Damping , Free Vibration , Damping , Rotating Composite Shaft
Journal title
Shock and Vibration
Serial Year
2016
Full Text URL
Record number
2616493
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