Abstract detail

73 / 2021-03-29 20:15:21
Status monitoring of fatigue cracks using nonlinear vibration responses
status monitoring; fatigue crack; nonlinear vibration respense; Doppler laser measurement
Special Sessions > Vibration-based structural damage detection
Draft Paper Accepted
Qitian Lu / Hohai University
Wei Xu / Hohai University
Fatigue cracks can occur in structural components under long-term cyclic loads. Such fatigue cracks can open and close like “breathing” under harmonic excitations. Fatigue cracks can develop and jeopardize safety of structures. Therefore, there is a great need to monitor fatigue cracks especially in their early stages. However, in many scenarios the effects of fatigue cracks on linear vibration responses of structures are unobvious. With this concern, this study proposes a novel method for real-time monitoring statuses of fatigue cracks using nonlinear vibration responses of structures. Distributions of principal components of nonlinear vibration responses change with statuses of fatigue cracks with different lengths, by which the statuses of fatigue cracks can be graphically distinguished. The capability of the method is verified using the finite element method. The applicability of the methodology is experimentally validated on a cantilever steel beam with a fatigue crack, whose flexural vibration responses from the free end are acquired through Doppler laser measurement.

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Important Dates

Abstract Submission Deadline:

 31st March 2021 15th April 2021

Extended Deadline: 1st Aug. 2022

 

Abstract Acceptance:

30th April  2021 Rollover

 

Full Paper Submission Deadline:

30th June 2021  14th July 2021

Extended Deadline: 15th Aug. 2022 

 

Notification of Acceptance:

15th August 2021 1st Sept. 2021

1st Sept. 2022

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