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Electromagnetic nondestructive evaluation with simple HTS SQUIDs: measurements and modelling

机译:使用简单的HTS SQUID进行电磁无损评估:测量和建模

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摘要

For AC EM NDE research, the field sensitivity of a SQUID should be around 100 pT, in a bandwidth of 5 Hz or less in the frequency range from 1 Hz to 10 kHz or more. Existing HTS SQUIDs and commercial electronics can already satisfy these demands. Moreover, the small size of HTS SQUIDs and the large dynamic range of SQUID systems permit measurements even in some magnetically unshielded environments. Here, we describe non-contacting AC EM NDE with a simple, small, single layer HTS SQUID. We present results demonstrating the detection of a subsurface feature in aircraft-grade aluminium by horizontal field measurement. Although they indicate the potential usefulness of HTS SQUIDs, variation between nominally identical data has been much greater than expected. This is because of fundamental HTS SQUID problems and the fact that experimental constraints on SQUID position, induction coil geometry and stand-off led to a far from optimum system design. We have analysed the problem using FEM; here we present selected results and indicate how they may affect future designs.
机译:对于AC EM NDE研究,在1 Hz至10 kHz或更高的频率范围内,SQUID的场灵敏度应在100 Hz左右,带宽为5 Hz或更小。现有的HTS SQUID和商用电子设备已经可以满足这些需求。而且,HTS SQUID的体积小且SQUID系统的动态范围大,即使在某些非电磁屏蔽的环境中也可以进行测量。在这里,我们用简单,小型,单层的HTS SQUID描述非接触式AC EM NDE。我们提出的结果表明,通过水平场测量可以检测飞机级铝的地下特征。尽管它们表明了HTS SQUID的潜在用途,但名义上相同的数据之间的差异却远远超出了预期。这是由于HTS SQUID的基本问题,以及对SQUID位置,感应线圈几何形状和支座的实验限制导致远非最佳系统设计的事实。我们已经使用FEM分析了问题;在这里,我们介绍选定的结果,并指出它们如何影响未来的设计。

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