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首页> 外文期刊>Journal of Nondestructive Evaluation >Microwave Non-destructive Evaluation of Glass Reinforced Epoxy and High Density Polyethylene Pipes
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Microwave Non-destructive Evaluation of Glass Reinforced Epoxy and High Density Polyethylene Pipes

机译:微波未破坏玻璃增强环氧树脂和高密度聚乙烯管的评价

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Owing to their inherent advantages, non-metallic structures such as glass reinforced epoxy (GRE) pipes and high-density polyethylene (HDPE) pipes are rapidly replacing their steel counterparts in pipeline infrastructures. However, non-metallic pipes are vulnerable to a variety of defects which compromise their structural integrity. Hence, periodic inspection of these structures is incumbent to ensure their structural integrity and avoid catastrophic in-service failures. Microwave and millimeter wave non-destructive evaluation techniques have shown great potential for inspecting non-metallic structures due to their high sensitivity, resolution, and cost-effectiveness. However, most of the previous investigations performed on microwave non-destructive testing (NDT) of these particular structures are deemed limited since these investigations considered one probe type and often conducted over narrow frequency band. Furthermore, many of the previous microwave NDT investigations considered unrealistically large defects which renders the reported conclusions about the performance envelope of microwave NDT of non-metallic pipes rather inaccurate. Consequently, an uncertainty still exists in the domain with regards to detection capability of the method when the defects in the pipes are actually small in size. Unlike all previous investigations, a comprehensive and realistic microwave imaging of GRE and HDPE pipes with embedded defects of practical importance is demonstrated in this paper. In order to image these defects, various near-field probes operating at wide range of frequencies are employed and compared herein. The relative performance and the effectiveness of microwave NDT for non-metallic pipe inspection using these probes are quantitatively reported. Furthermore, the images of the HDPE pipe produced by microwave probes are benchmarked to phased array ultrasonic testing.
机译:由于其固有的优点,玻璃增强环氧(GRE)管和高密度聚乙烯(HDPE)管道的非金属结构正在快速更换管道基础设施中的钢对应物。然而,非金属管容易受到各种缺陷,这些缺陷损害了它们的结构完整性。因此,有效检查这些结构的定期检查,以确保其结构完整性并避免灾难性的在职失败。微波和毫米波未破坏性评估技术由于其高灵敏度,分辨率和成本效益而导致检查非金属结构的巨大潜力。然而,对这些特定结构的微波非破坏性测试(NDT)进行的大多数研究被认为是受限制的,因为这些研究认为一个探针类型并且通常在窄频带上进行。此外,许多以前的微波NDT调查考虑了不切实际的大缺陷,其呈现了关于非金属管道微波NDT的性能包络的结论,这是非金属管的性能相当不准确。因此,当管道中的缺陷实际上较小时,域中仍然存在于域中的不确定性仍然存在于该方法的检测能力。与所有先前的调查不同,本文证明了对具有嵌入式缺陷的GRE和HDPE管道的全面和现实的微波成像。为了使这些缺陷图像,在本文中使用并比较各种在广泛频率下操作的近场探针。数量地报道了使用这些探针的微波NDT对非金属管检查的相对性能和有效性。此外,微波探针产生的HDPE管道的图像基准测试到相位阵列超声波测试。

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