Frequency content in an axially impacted bar subject to boundary conditions

We analyze the frequency contents of strain waves in an axially excited bar, where one end of the bar is subject to a free end boundary condition. The analysis is treated in the context of identification of viscoelastic materials. The free end boundary condition leads to very particular constraints...

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Published inIFAC Proceedings Volumes Vol. 41; no. 2; pp. 15393 - 15398
Main Authors Rensfelt, A., Söderström, T.
Format Journal Article
LanguageEnglish
Published 2008
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ISSN1474-6670
DOI10.3182/20080706-5-KR-1001.02603

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Abstract We analyze the frequency contents of strain waves in an axially excited bar, where one end of the bar is subject to a free end boundary condition. The analysis is treated in the context of identification of viscoelastic materials. The free end boundary condition leads to very particular constraints on the wave propagation in the bar and it is shown how this influences the identification. Wave propagation in both elastic and viscoelastic materials is treated, and the validity of the analysis confirmed through simulated and (in the case of viscoelastic materials) experimental data. The analysis is then used in order to interpret the large frequency variations in previous studies concerning the accuracy of the estimate and optimal input signal, respectively.
AbstractList We analyze the frequency contents of strain waves in an axially excited bar, where one end of the bar is subject to a free end boundary condition. The analysis is treated in the context of identification of viscoelastic materials. The free end boundary condition leads to very particular constraints on the wave propagation in the bar and it is shown how this influences the identification. Wave propagation in both elastic and viscoelastic materials is treated, and the validity of the analysis confirmed through simulated and (in the case of viscoelastic materials) experimental data. The analysis is then used in order to interpret the large frequency variations in previous studies concerning the accuracy of the estimate and optimal input signal, respectively.
Author Söderström, T.
Rensfelt, A.
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Cites_doi 10.1006/jsvi.1999.2649
10.1109/TCST.2003.819589
10.1016/S0005-1098(00)00188-6
10.1299/jsme1958.29.2410
10.1115/1.2900870
10.1016/S0888-3270(03)00045-1
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Keywords nonparametric identification
Wave propagation
viscoelastic materials
frequency content
Language English
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Snippet We analyze the frequency contents of strain waves in an axially excited bar, where one end of the bar is subject to a free end boundary condition. The analysis...
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StartPage 15393
SubjectTerms frequency content
nonparametric identification
viscoelastic materials
Wave propagation
Title Frequency content in an axially impacted bar subject to boundary conditions
URI https://dx.doi.org/10.3182/20080706-5-KR-1001.02603
Volume 41
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