Showing posts with label detection marine protective coating. Show all posts
Showing posts with label detection marine protective coating. Show all posts

Tuesday, February 13, 2018

Abstract-Defect feature extraction of marine protective coatings by terahertz pulsed imaging


Tu, Wanli and Zhong, Shuncong and Incecik, Atilla and Fu, Xibin

https://strathprints.strath.ac.uk/63208/

Feature extraction of marine protective coatings using Hilbert transform (HT) and wavelet transform modulus maximum (WTMM) on terahertz pulsed imaging (TPI) of the coatings was proposed. For TPI-based marine protective coating detection, it is difficult to locate exactly the reflected echoes form internal structure of coating system by the faint feature in the time domain due to the interference of background noise. However, those faint features were usually caused by the interface between two different medium layers whose refractive indices are very similar or caused by micro defects beneath the coating. The proposed algorithm was validated by simulated and experimental TPI waveform obtained from marine paint samples with or without defects. To extract the structure feature more clearly and intuitively, Hilbert transform procedure was carried out on detected terahertz signal to get Hilbert envelope for further processing. Subsequently, the modulus maximum of the stationary wavelet transform approximation coefficients were employed as the criteria for feature extraction of internal interfaces and defect features, according to the relationship between WTMM and signal singularity. The results demonstrated that the combination of HT and WTMM algorithms could be used to exactly extract the structure feature and to evaluate the position of defects beneath coatings.

Monday, November 6, 2017

Abstract-Simulation and Experiment of Terahertz Wave Detection of Marine Protective Coating


Wanli Tu, Shuncong Zhong


https://www.springerprofessional.de/en/simulation-and-experiment-of-terahertz-wave-detection-of-marine-/15181602

Terahertz detection of multilayer marine protective coatings on a steel substrate using terahertz pulsed imaging (TPI) system in reflection mode was investigated. The multilayered anticorrosive/antifouling paint on steel substrate with different coating structures were produced as experimental samples for terahertz wave detection. The modeling and numerical simulation to calculate the propagation of THz radiation from marine protective coatings was studied by the finite difference time domain (FDTD) method. The reflected radiation properties in both simulation and experimentation were recorded for further analysis, such as the identification of the defect beneath coating. The results showed that it was able to provide much more detailed information on the position of the defect beneath the coating, such as detachment of large areas where adhesion has failed, or the blistering defect beneath the coating. Therefore, the developed model combined with the experimental analysis was effective and feasible for the detection and structure characterization of marine protective coatings and will provide timely and reliable information for ship maintenance work.