VIBRATION AND STABILITY OF A CANTILEVER COLUMN SUBJECT TO A FOLLOWER FORCE PASSING THROUGH A FIXED POINT

The paper describes the stability and natural vibration of column loaded by a force passing through a fixed point. It is proved that the system is conservative and its loss of stability occurs via divergence. On the other hand a change in modes occurring along the fundamental eigencurve, which modif...

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Published inJournal of sound and vibration Vol. 214; no. 1; pp. 67 - 81
Main Authors Tomski, L., Przybylski, J., Gołebiowska-Rozanow, M., Szmidla, J.
Format Journal Article
LanguageEnglish
Published London Elsevier Ltd 02.07.1998
Elsevier
Subjects
Online AccessGet full text
ISSN0022-460X
1095-8568
DOI10.1006/jsvi.1998.1528

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Abstract The paper describes the stability and natural vibration of column loaded by a force passing through a fixed point. It is proved that the system is conservative and its loss of stability occurs via divergence. On the other hand a change in modes occurring along the fundamental eigencurve, which modifies its slope from positive to negative with the increasing load, is found theoretically and confirmed by the modal analysis. For that reason the system is proposed to be called the divergence–pseudo-flutter system. Experimental results concerning the natural vibration frequency agreed well with the numerical ones.
AbstractList The problem of the vibration and stability of a cantilever column loaded by a follower force passing through a fixed point is investigated analytically and experimentally. An analysis of the total energy of the column demonstrates that the system is conservative. In the range of the conditions considered, experimental results are found to be in good agreement with theoretical and computational data. (AIAA)
The paper describes the stability and natural vibration of column loaded by a force passing through a fixed point. It is proved that the system is conservative and its loss of stability occurs via divergence. On the other hand a change in modes occurring along the fundamental eigencurve, which modifies its slope from positive to negative with the increasing load, is found theoretically and confirmed by the modal analysis. For that reason the system is proposed to be called the divergence–pseudo-flutter system. Experimental results concerning the natural vibration frequency agreed well with the numerical ones.
Author Przybylski, J.
Tomski, L.
Szmidla, J.
Gołebiowska-Rozanow, M.
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Issue 1
Keywords Divergence
Fix point
Vibrations (mechanical)
Column
Numerical methods
Dynamic stability
Testing equipment
Flutter
Follower force
Cantilever
Experimental study
Conservative system
Language English
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Snippet The paper describes the stability and natural vibration of column loaded by a force passing through a fixed point. It is proved that the system is conservative...
The problem of the vibration and stability of a cantilever column loaded by a follower force passing through a fixed point is investigated analytically and...
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StartPage 67
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 VIBRATION AND STABILITY OF A CANTILEVER COLUMN SUBJECT TO A FOLLOWER FORCE PASSING THROUGH A FIXED POINT
URI https://dx.doi.org/10.1006/jsvi.1998.1528
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Volume 214
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