Abstract detail

356 / 2021-07-13 11:30:35
An inverse method for quantitative damage assessment of plate-like structures based on vibration responses
Inverse method,damage quantification,continuous wavelet transform,vibration,delamination damage
Structural Health Monitoring
Draft Paper Accepted
Shuai He / Qingdao University of Technology
Jiaxin Li / Qingdao University of Technology
Tian Ran Lin / 青岛理工大学
A two-step approach for quantifying plate-like structural laminar damages, such as delamination in composites, is presented in this study. The approach first employs a 2-D continuous wavelet transform to locate the size and edges of damage from the vibrational curvature data. This is followed by an analytical inverse method to determine the flexural stiffness reduction ratio along a given direction to quantify the severity of the delamination damage. The damage quantification algorithm employed in this study is derived from the 1-D inverse method originated from one of the authors’ previous work. It is found that the two-step approach applied in beam-like structures can be extended to the damage detection of plate-like structures. A numerical example is used to demonstrate the viability of the proposed approach for the damage detection of a cantilever composite plate containing a single delamination damage. It is also found that the inverse method can provide a detailed information of delamination with a bounded searching space and can also be used to determine the effective flexural stiffness for complex delamination damage.

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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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