2015
DOI: 10.1016/j.jsv.2015.05.011
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Nonlinear dynamic behavior of an impact damaged composite skin–stiffener structure

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Cited by 15 publications
(16 citation statements)
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References 20 publications
(29 reference statements)
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“…Although the theoretical model provides an understanding of the relevant aspect involved, it is still difficult to find a physical explanation for the modulation behaviour. It was demonstrated in earlier research [16] that the skin-stiffener damage can open and close under a low frequency excitation. Nonlinear behaviour, as was also shown, can also occur when the skin and the stiffener are approaching each other.…”
Section: Resultsmentioning
confidence: 92%
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“…Although the theoretical model provides an understanding of the relevant aspect involved, it is still difficult to find a physical explanation for the modulation behaviour. It was demonstrated in earlier research [16] that the skin-stiffener damage can open and close under a low frequency excitation. Nonlinear behaviour, as was also shown, can also occur when the skin and the stiffener are approaching each other.…”
Section: Resultsmentioning
confidence: 92%
“…The same vibro-acoustic measurement is performed at multiple locations, all directly underneath the stiffener. The local changes in amplitude and phase of the low frequency part of the response, shown in figure 4a, are caused by the damaged skin-stiffener interface as discussed in [16]. The velocity distribution obtained after applying the f c ± 10 kHz bandpass filter is depicted in figure 4b.…”
Section: Resultsmentioning
confidence: 94%
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“…The above procedure is called the fractional energy method (Worden et al, 2008). Several studies have shown the applicability of the fractional energy method using the linear modal strain energy to locate conventional damage with sizable damage due to axial and torsional loads (Duffey et al, 2001), as well as impact (Ooijevaar et al, 2015). Typically, a fractional energy factor, F i , is calculated, which is the ratio of the change in the strain energy in segment i , as follows…”
Section: Structural Statesmentioning
confidence: 99%