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Eddy Current Testing Probe Based on Double-Coil Excitation and GMR Sensor

机译:基于双线圈激励和GMR传感器的涡流测试探头

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摘要

The development of eddy current nondestructive techniques and instruments is moving toward new challenges in detecting buried and smaller defects and minimizing the amplitude of excitation currents. The smaller the size of the detected defect, the greater is the diagnostic capability of these techniques. Moreover, the lower the excitation current required, the longer the battery discharge time of the portable instruments, the greater the possibility of implementing broadband excitation strategies with reliable results. This feature is also important when portable instruments with array of probes have to operate for a large amount of time. Following the actual trends based on the use of double-coil excitations, this paper proposes the investigation of the performance of these kinds of probes, when small and buried defects are involved, and low amplitudes of the excitation current are adopted. To allow these activities a suitable double-coil-based excitation probe has been assembled. The obtained performance has been also compared with a traditional single-coil excitation probe based on the same sensing element. The experimental analysis demonstrated the appreciable performance of the proposed solution in a number of test cases.
机译:涡流无损技术和仪器的开发在检测埋藏和较小缺陷并最小化激发电流的幅度时,朝向新的挑战。检测到的缺陷的大小越小,这些技术的诊断能力越大。此外,所需的激励电流越低,便携式仪器的电池放电时间越长,实现具有可靠结果的宽带激励策略的可能性越大。当具有探头阵列的便携式仪器必须运行大量时间时,此功能也很重要。在基于使用双线圈激励的实际趋势之后,本文提出了当涉及小和埋地的缺陷时,采用埋地缺陷的诸如掩埋缺陷的探测器的性能的调查。采用低振荡电流的低幅度。为了允许这些活动组装了合适的双线圈基励磁探针。也与基于相同传感元件的传统单线圈励磁探针进行了比较了所获得的性能。实验分析显示了在许多测试用例中提出的解决方案的明显性能。

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