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Nondestructive testing of marine protective coatings using terahertz waves with stationary wavelet transform

机译:使用固定小波变换的太赫兹波对海洋保护涂层进行无损检测

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摘要

Terahertz wave propagation in marine protective coatings and its non-destructive testing (NDT) capability were studied by the finite difference time domain (FDTD) method. The FDTD model was used to calculate the propagation and reflection of THz radiation from marine protective coatings. The reflected terahertz waves could be employed in coating thickness analysis of the paint layers. In order to clearly identify the interface between antifouling and anticorrosive coatings, stationary wavelet transform (SWT) approach was applied to decompose the obtained terahertz impulse functions into approximation and detail coefficients; SWT detail coefficients were used for the feature extraction of the coating thickness. SWT provides a more accurate identification of salient features in a signal, such as the weak feature between antifouling and anticorrosive coatings. We found that the developed model and SWT-based algorithms could be used to evaluate the occurrence of defects beneath the coatings (e.g., paint-off and corrosion defects). The proposed method provides the solution for coating thickness of marine protective coatings and it would benefit the effective maintenance to avoid coating failure and facilitate marine protective coating design. Therefore, non-destructive testing and evaluation of marine protective coating system by terahertz waves with SWT could be recommended for engineering applications.
机译:太赫兹波在海洋防护涂料中的传播及其无损检测(NDT)能力通过有限时域时差(FDTD)方法进行了研究。 FDTD模型用于计算来自船舶防护涂层的太赫兹辐射的传播和反射。反射的太赫兹波可用于涂料层的涂层厚度分析。为了清楚地识别防污涂料和防腐涂料之间的界面,采用固定小波变换(SWT)方法将获得的太赫兹脉冲函数分解为近似系数和细节系数。 SWT细节系数用于涂层厚度的特征提取。 SWT可以更准确地识别信号中的显着特征,例如防污涂层和防腐涂层之间的薄弱特征。我们发现,开发的模型和基于SWT的算法可用于评估涂层下缺陷的发生(例如,油漆脱落和腐蚀缺陷)。所提出的方法为船用防护涂层的涂层厚度提供了解决方案,它将有益于有效的维护以避免涂层失效并促进船用防护涂层的设计。因此,在工程应用中,建议采用太赫兹波和SWT对海洋保护涂层系统进行无损检测和评估。

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