Theoretical and experimental study of coupled vibrations of channel beams

Studies of the free vibrational behavior of channel beams, which are partly constrained along one end or one flange, are of prime importance for structural engineers. In this paper, studies of thin-walled channel beams with different cross-sectional areas and lengths were conducted using theoretical...

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Published in:Journal of sound and vibration Vol. 183; no. 2; pp. 239 - 252
Main Authors: Klausbruckner, M.J., Pryputniewicz, R.J.
Format: Journal Article
Language:English
Published: London Elsevier Ltd 01-06-1995
Elsevier
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Abstract Studies of the free vibrational behavior of channel beams, which are partly constrained along one end or one flange, are of prime importance for structural engineers. In this paper, studies of thin-walled channel beams with different cross-sectional areas and lengths were conducted using theoretical and experimental approaches. The theoretical approach was based on analytical and finite element methods. The experimental approach utilized the methods of laser hologram interferometry. In the studies reported herein, emphasis was placed on dependence of the natural frequencies and the mode shapes on the cross-sectional area, and on determination of the prediction capability of the Timoshenko model considered in the analytical analysis. The results show that lower modes of slender channel beams are characterized by global beam motions and a non-deforming cross-section. More pronounced C-shapes are increasingly influenced by plate deformations in the web and flanges. The Timoshenko theory compares well with experimental data on natural frequencies, but only for slender beams. The results of the finite element analysis generally compare well with experimental data.
AbstractList Studies of the free vibrational behavior of channel beams, which are partly constrained along one end or one flange, are of prime importance for structural engineers. In this paper, studies of thin-walled channel beams with different cross-sectional areas and lengths were conducted using theoretical and experimental approaches. The theoretical approach was based on analytical and finite element methods. The experimental approach utilized the methods of laser hologram interferometry. In the studies reported herein, emphasis was placed on dependence of the natural frequencies and the mode shapes on the cross-sectional area, and on determination of the prediction capability of the Timoshenko model considered in the analytical analysis. The results show that lower modes of slender channel beams are characterized by global beam motions and a non-deforming cross-section. More pronounced C-shapes are increasingly influenced by plate deformations in the web and flanges. The Timoshenko theory compares well with experimental data on natural frequencies, but only for slender beams. The results of the finite element analysis generally compare well with experimental data.
Studies of thin-walled channel beams with different cross-sectional areas and lengths are conducted using theoretical and experimental approaches. The theoretical approach is based on analytical and finite element methods. The experimental approach utilizes the methods of laser hologram interferometry. In the studies reported herein, emphasis is placed on dependence of the natural frequencies and the mode shapes on the cross-sectional area, and on determination of the prediction capability of the Timoshenko model considered in the analytical analysis.
Author Pryputniewicz, R.J.
Klausbruckner, M.J.
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Keywords Finite element method
Laser interferometer
Vibration
Numerical method
Eigenfrequency
Experimental study
Thin wall
Beam(mechanics)
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Studies of thin-walled channel beams with different cross-sectional areas and lengths are conducted using theoretical and experimental approaches. The...
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SubjectTerms Exact sciences and technology
Fundamental areas of phenomenology (including applications)
Physics
Solid mechanics
Structural and continuum mechanics
Vibration, mechanical wave, dynamic stability (aeroelasticity, vibration control...)
Vibrations and mechanical waves
Title Theoretical and experimental study of coupled vibrations of channel beams
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Volume 183
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