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Rapid Non-destructive Evaluation of Defects in GFRP Composites using Terahertz Line Scanner

机译:使用太赫兹线扫描仪的GFRP复合材料中的缺陷快速无损评估

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Terahertz (THz) imaging is an attractive alternate to ultrasonic based Non-destructive Evaluation (NDE) especially for Fiber Reinforced Polymers (FRPs) such as Glass FRP (GFRP) composites as the latter demands proximity and additional coupling medium for the best performance. Typically, THz imaging system uses a single emitter-detector configuration employing raster scan method for image acquisition. The image acquisition speed is greatly limited by the speed of the mechanical stages and hence its usage in real-time industrial NDT applications such as in-line quality control has been limited. Alternatively, having an array of detectors will significantly increase the system cost. As an optimal compromise for speed and cost, line scanners are highly desirable. In this work, rapid imaging performance of a THz line scanner has been studied by imaging closely spaced defects in GFRP composites using a 100 GHz source. The total acquisition time for imaging the GFRP sample of dimensions 55 × 35 mm~2 is 10 s, which is >100 times faster compared to a conventional raster scanning technique. In addition, image deconvolution techniques such as Lucy Richardson and Weiner deconvolution have been adopted to improve the quality of the acquired THz images. The results show that the THz line scanners can successfully be employed for rapid defect detection in GFRP composites.
机译:太赫兹成像是一个有吸引力的替代品基于超声无损评估(NDE)特别是对于纤维增强聚合物(FRP的),例如玻璃FRP(GFRP)的复合材料,因为后者要求的接近度和额外的耦合介质为最佳的性能。通常情况下,太赫兹成像系统使用采用用于图像采集光栅扫描方法的单发射器 - 检测器的配置。图像获取速度由机械级的速度,因此其在实时工业NDT应用,例如在在线质量控制的使用受到了限制极大地限制。可替代地,具有检测器阵列将显著增加系统成本。作为用于速度和成本的最佳折衷,线扫描仪是高度期望的。在这项工作中,太赫兹行扫描仪的快速成像性能进行了研究使用100 GHz的源成像在GFRP复合材料紧密间隔的缺陷。总采集时间用于成像尺寸的GFRP样品55×35毫米〜2为10秒,相对于传统的光栅扫描技术,该技术更快> 100倍。此外,图像解卷积技术如露Richardson和维纳解卷积已经通过改善所获取的太赫兹图像的质量。结果表明,太赫兹线扫描仪可以成功地在GFRP复合材料被用于快速缺陷检测。

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