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Compact probing system using remote imaging for industrial plant maintenance

机译:使用远程成像的紧凑型探测系统,用于工厂维护

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Laser induced breakdown spectroscopy (LIBS) and endoscope observation were combined to design a remote probing device. We use this probing device to inspect a crack of the inner wall of the heat exchanger. Crack inspection requires speed at first, and then it requires accuracy. Once Eddy Current Testing (ECT) finds a crack with a certain signal level, another method should confirm it visually. We are proposing Magnetic particle Testing (MT) using specially fabricated the Magnetic Particle Micro Capsule (MPMC). For LIBS, a multichannel spectrometer and a Q-switch YAG laser were used. Irradiation area is 270 μm, and the pulse energy was 2 mJ. This pulse energy corresponds to 5-2.2 MW/cm~2. A composite-type optical fiber was used to deliver both laser energy and optical image. Samples were prepared to heat a zirconium alloy plate by underwater arc welding in order to demonstrate severe accidents of nuclear power plants. A black oxide layer covered the weld surface and white particles floated on water surface. Laser induced breakdown plasma emission was taken into the spectroscope using this optical fiber combined with telescopic optics. As a result, we were able to simultaneously perform spectroscopic measurement and observation. For MT, the MPMC which gathered in the defective area is observed with this fiber. The MPMC emits light by the illumination of UV light from this optical fiber. The size of a defect is estimated with this amount of emission. Such technology will be useful for inspection repair of reactor pipe.
机译:结合激光诱导击穿光谱法(LIBS)和内窥镜观察来设计远程探测设备。我们使用该探测装置检查热交换器内壁的裂纹。裂纹检查首先需要速度,然后才需要精度。一旦涡流测试(ECT)发现了具有一定信号水平的裂缝,另一种方法应目视确认。我们提议使用特制的磁粉微囊(MPMC)进行磁粉测试(MT)。对于LIBS,使用了多通道光谱仪和Q开关YAG激光器。照射面积为270μm,脉冲能量为2mJ。该脉冲能量对应于5-2.2 MW / cm〜2。复合型光纤用于传递激光能量和光学图像。为了证明核电站发生严重事故,准备了通过水下电弧焊加热锆合金板的样品。黑色氧化层覆盖焊缝表面,白色颗粒漂浮在水面上。使用这种光纤和伸缩光学器件将激光诱导的击穿等离子体发射吸收到光谱仪中。结果,我们能够同时执行光谱测量和观察。对于MT,用该光纤观察到聚集在缺陷区域中的MPMC。 MPMC通过照射来自该光纤的紫外线来发光。缺陷的大小通过此发射量估算。这种技术将对反应堆管道的检修有用。

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