论文标题

钢筋混凝土块的MUON断层扫描 - 第一个实验概念证明

Muon tomography of a reinforced concrete block -- first experimental proof of concept

论文作者

Niederleithinger, Ernst, Gardner, Simon, Kind, Thomas, Kaiser, Ralf, Grunwald, Marcel, Yang, Guangliang, Redmer, Bernhard, Waske, Anja, Mielentz, Frank, Effner, Ute, Köpp, Christian, Clarkson, Anthony, Thomson, Francis, Ryan, Matthew

论文摘要

由于基础设施的老化和交通需求的增加,因此,混凝土结构的质量保证和条件评估是全球重要的主题。常见主题包括但不限于钢筋或肌腱管的定位,几何不规则,裂纹,空隙,蜂窝或其他缺陷。超声或雷达等非破坏性技术已经发现了定期的,成功的实用应用,但有时在检测某些特征时会受到有限的分辨率和准确性,成像伪像或限制。直到1980年代,X射线传输一直在特殊需求中使用,并且显示出比其他NDT技术高得多的分辨率。但是,由于安全问题和成本问题,这种方法几乎不再使用了。 MUON断层扫描最近引起了很多关注。宇宙兆次和层析成像算法的新型探测器已经开发了新的应用领域,例如对违禁品的货运容器进行调查或评估放射性废物容器的内容。但是MUON成像也有可能填补混凝土NDT中当前存在的一些差距。作为迈向实际使用的第一步,作为概念的证明,我们使用了现有系统来对参考加强600公斤混凝土块的内部进行成像。即使对这种研究进行了尚未优化的设置,与超声和雷达成像相比,MUON成像结果也显示出更大的分辨率和更少的变形。数据采集​​需要更多的时间,并且信号包含更多的噪声,但是允许图像可以检测到常规高能X射线断层扫描中可见的相同重要特征。在我们的实验中,我们显示了若恩成像进行混凝土检查的巨大潜力。下一步包括开发移动探测器以及优化采集和成像参数。

Quality assurance and condition assessment of concrete structures is an important topic world-wide due to the ageing infrastructure and increasing traffic demands. Common topics include, but are not limited to, localisation of rebar or tendon ducts, geometrical irregularities, cracks, voids, honeycombing or other flaws. Non-destructive techniques such as ultrasound or radar have found regular, successful practical application but sometimes suffer from limited resolution and accuracy, imaging artefacts or restrictions in detecting certain features. Until the 1980s X-ray transmission was used in case of special demands and showed a resolution much higher than other NDT techniques. However, due to safety concerns and cost issues, this method is almost never used anymore. Muon tomography has received much attention recently. Novel detectors for cosmic muons and tomographic imaging algorithms have opened up new fields of application, such as the investigation of freight containers for contraband or the assessment of the contents of radioactive waste containers. But Muon imaging also has the potential to fill some of the gaps currently existing in concrete NDT. As a first step towards practical use and as a proof of concept we used an existing system to image the interior of a reference reinforced 600 kg concrete block. Even with a yet not optimized setup for this kind of investigation, the muon imaging results show more resolution and less distortion compared to ultrasonic and radar imaging. The data acquisition takes more time and signals contain more noise, but the images allowed to detect the same important features that are visible in conventional high energy x-ray tomography. In our experiment, we have shown the tremendous potential of muon imaging for concrete inspection. The next steps include the development of mobile detectors and optimising acquisition and imaging parameters.

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