An analytical approach for frequency modulated thermal wave imaging for testing and evaluation of glass fiber reinforced polymers

Anju Rani, Ravibabu Mulaveesala, V. Kher
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引用次数: 2

Abstract

Frequency modulated thermal wave imaging (FMTWI) has been considered as one of the promising non-destructive testing and evaluation approach due to its merits such as economical, safe, fast, sensitive and high depth resolvability. The present work provides a novel analytical solution for FMTWI using one-dimensional heat conduction equation with adiabatic (Neumann) boundary conditions. The temperature gradient over the glass fiber reinforced polymer specimen has been analyzed and validated with a commercially available three dimensional mathematical finite element model to retrieve the quantitative information regarding the subsurface defects. The efficiency of the proposed method is highlighted using matched filter based approach for a frequency modulated imposed heat flux. The depth resolvability of the proposed method has been studied from the obtained correlation lag and the time domain phase obtained for FMTWI technique.
一种用于玻璃纤维增强聚合物测试和评价的调频热波成像分析方法
频率调制热波成像(FMTWI)因其经济、安全、快速、灵敏和深度分辨率高等优点,被认为是一种很有前途的无损检测与评价方法。本文利用具有绝热(诺伊曼)边界条件的一维热传导方程为FMTWI提供了一种新的解析解。用市售的三维数学有限元模型对玻璃纤维增强聚合物试样的温度梯度进行了分析和验证,以检索有关表面下缺陷的定量信息。采用基于匹配滤波器的方法对频率调制的外加热流进行了优化,提高了算法的效率。从FMTWI技术得到的相关滞后和时域相位出发,研究了该方法的深度可分辨性。
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