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Filament-wound composite pressure vessel inspection based on rotational through-transmission laser ultrasonic propagation imaging

机译:基于旋转转速激光超声波传播成像的细丝缠绕复合压力容器检验

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摘要

In this paper, we introduce a rotational through-transmission ultrasonic propagation imaging system to inspect the full thickness of the entire cylindrical section of filament-wound composite overwrapped pressure vessels. This system can achieve high signal-to-noise ratio throughout the cylindrical section of pressure vessels by using a rotational scanning method. Based on the advantages of the laser ultrasonic system that can generate and detect ultrasound waves by using a small-diameter laser beam and making an inspection path in a narrow environment, this system directs the laser beam inside the pressure vessel via a mirror to enable the through-transmission mode for vessel inspection. A type-3 pressure vessel was inspected using the system developed, which successfully detected two impact damage spots and showed the filament winding direction clearly. The test results show that the system developed is highly reliable and can replace the current hydrostatic sample test for pressure vessel safety certification.
机译:在本文中,我们介绍了旋转通透过传输超声波传播成像系统,检查丝缠绕复合复合压力容器的整个圆柱形部分的全厚度。该系统通过使用旋转扫描方法可以在压力容器的整个圆柱形部分中实现高信噪比。基于激光超声波系统的优点,可以通过使用小型直径激光束产生和检测超声波并在狭窄环境中进行检查路径,通过镜子将激光束引导到压力容器内部以实现船舶检查的过传动模式。使用系统开发的系统检查了3型压力容器,该系统成功地检测到两个冲击损伤斑点,并清楚地显示了灯丝绕组方向。测试结果表明,该系统开发的高度可靠性,可以取代电流静水压样品测试,用于压力容器安全认证。

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