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Research on Delamination Damage Quantification Detection of CFRP Bending Plate Based on Lamb Wave Mode Control. | LitMetric

Research on Delamination Damage Quantification Detection of CFRP Bending Plate Based on Lamb Wave Mode Control.

Sensors (Basel)

School of Mechanical Engineering, Beijing Institute of Technology, No. 5, Zhongguancun South Street, Haidian District, Beijing 100081, China.

Published: March 2024

AI Article Synopsis

  • The study focuses on using A0-mode Lamb waves to detect delamination in CFRP bending structures, crucial for aviation safety, since delamination can compromise stability.
  • The research introduces a signal difference coefficient to evaluate the sensitivity of both A0 and S0 modes, finding A0-mode waves to be more effective for detecting varying sizes of delamination damage in simulations and experiments.
  • The methods developed for signal processing and detection are user-friendly and can quantify delamination damage with high accuracy, validating the simulation findings with minimal error rates.

Article Abstract

The carbon-fiber-reinforced polymer (CFRP) bending structure is widely used in aviation. The emergence and spread of delamination damage will decrease the safety of in-service bending structures. Lamb waves can effectively identify delamination damage as a high-damage-sensitivity detection tool. For this present study, the signal difference coefficient () was introduced to quantify delamination damage and evaluate the sensitivity of A0-mode and S0-mode Lamb waves to delamination damage. The simulation results show that compared with the S0-mode Lamb wave, the A0-mode Lamb wave exhibits higher delamination damage sensitivity. The delamination damage can be quantified based on the strong correlation between the and the delamination damage size. The control effect of the linear array PZT phase time-delay method on the Lamb wave mode was investigated by simulation. The phase time-delay method realizes the generation of a single-mode Lamb wave, which can separately excite the A0-mode and S0-mode Lamb wave to identify delamination damage of different sizes. The A0-mode Lamb wave was excited by the developed one-dimensional miniaturized linear comb transducer (LCT), which was used to conduct the detection experiment on the CFRP bending plate with delamination damage sizes of Φ6.0 mm, Φ10.0 mm, and Φ15.0 mm. The experimental results verify the correctness of the simulation. According to the Hermite interpolation results of the finite-element simulation data, the relationship between the delamination damage size and the was fitted by the Gaussian function and Rational function, which can accurately quantify the delamination damage. The absolute error of the delamination damage quantification with Gaussian and Rational fitting expression does not exceed 0.8 mm and 0.7 mm, and the percentage error is not more than 8% and 7%. The detection and signal processing methods employed in the present research are easy to operate and implement, and accurate delamination damage quantification results have been obtained.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10974385PMC
http://dx.doi.org/10.3390/s24061790DOI Listing

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