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Inspection of aircraft parts with high remanent magnetization byeddy current SQUID NDE

机译:通过涡流SQUID NDE检查具有高剩余磁化强度的飞机零件

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We have developed an eddy current NDE system based on HTS rf SQUIDs as magnetic field sensors. Due to their high field sensitivity even at very low frequencies, SQUIDs are especially suitable for applications where a large eddy current penetration depth is required. We have used 3 GHz rf SQUIDs in our system made from YBCO thin films with a field resolution of about 1 pT/√(Hz) and a high dynamic range, more than 140 dB/√(Hz) in unshielded environment. With this system we could detect deep lying (up to 26 mm) cracks in test samples and original aircraft parts. Measurements made on the same sample showed an improvement in the signal to noise ratio of up to 3 orders of magnitude for cracks deeper than 13 mm, when comparing a conventional eddy current NDE unit with our SQUID system. Test objects containing ferromagnetic structures with a high remanent magnetization (often more than 1 mT), like aircraft wheels or steel bolts in part of the aircraft wing, very often cause instabilities of the flux locked loop operation of the SQUID. To prevent unlocking, we have developed a new background field compensation scheme. Special compensation electronics takes care of slowly varying magnetic fields of up to 1 mT/s and enabled us to perform eddy current measurements in presence of slow (<30 Hz) background field variations of up to 5 mT
机译:我们已经开发了基于HTS射频SQUID作为磁场传感器的涡流NDE系统。由于SQUID即使在非常低的频率下也具有很高的场灵敏度,因此特别适合需要大涡流穿透深度的应用。我们已在由YBCO薄膜制成的系统中使用了3 GHz rf SQUID,其场分辨率约为1 pT /√(Hz),并且在非屏蔽环境中的动态范围很高,超过140 dB /√(Hz)。使用该系统,我们可以检测到测试样品和原始飞机部件中的深层裂纹(最大26毫米)。与传统的涡流NDE单元和我们的SQUID系统相比,对同一样品进行的测量显示,对于深于13毫米的裂纹,信噪比提高了3个数量级。包含具有较高剩余磁化强度(通常大于1 mT)的铁磁结构的测试对象(例如飞机机翼或飞机机翼一部分中的钢螺栓)通常会导致SQUID的磁通锁定环操作不稳定。为了防止解锁,我们开发了一种新的背景场补偿方案。特殊的补偿电子设备负责缓慢变化的磁场(最高1 mT / s),使我们能够在最高5 mT的缓慢(<30 Hz)背景场变化的情况下执行涡流测量

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