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A novel frequency-band-selecting pulsed eddy current testing method for the detection of a certain depth range of defects

机译:一种用于检测一定深度缺陷的频带选择脉冲涡流探伤方法

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摘要

Local wall thinning is one of the major defects in industrial structures and in some cases it generates in a certain depth range of the object structures. In this study, a novel nondestructive testing method called frequency-band selecting pulsed eddy current testing (FSPECT) is proposed to detect a certain depth range of defects. This novel FSPECT method is based on the frequency-band-selecting strategy as well as the conventional square wave pulsed eddy current testing (PECT) method. In this study, FSPECT method is introduced and the frequency range selection principle of the excitation signal of FSPECT is explained in details at first. Then the simulation of FSPECT for detecting a certain depth range of defects has been performed. In addition, the sensitivities of the proposed FSPECT and the conventional PECT are compared and analyzed. Finally, a comparative experiment of FSPECT method and PECT method is implemented. The superiority of the proposed FSPECT method for detecting a certain depth range of defects is demonstrated through simulation and experiment.
机译:局部壁薄是工业结构的主要缺陷之一,在某些情况下,它会在物体结构的一定深度范围内产生。在这项研究中,提出了一种新的无损检测方法,称为频带选择脉冲涡流检测(FSPECT),以检测一定深度的缺陷。这种新颖的FSPECT方法基于频带选择策略以及常规的方波脉冲涡流测试(PECT)方法。在本研究中,介绍了FSPECT方法,首先详细说明了FSPECT激励信号的频率范围选择原理。然后进行了用于检测一定深度缺陷范围的FSPECT仿真。此外,比较并分析了所提出的FSPECT和常规PECT的灵敏度。最后,进行了FSPECT方法和PECT方法的对比实验。通过仿真和实验证明了所提出的FSPECT方法在一定深度缺陷检测中的优越性。

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