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Influence of key factors on Eddy current testing sensitivity and monotonicity on subsurface depth for ferromagnetic and non-ferromagnetic materials

机译:基于铁磁和非铁磁材料涡流测试敏感性和单调性的关键因素对抗氧化铋和非铁磁材料的影响

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Studies on key influencing factors (coil's size and excitation frequency) of eddy current testing (ECT) sensitivity, monotonicity and defect detectability have been carried out for detection of subsurface defects in ferromagnetic and non-ferromagnetic plate materials. A set of ECT finite element models and experiments have been accomplished and the detection performance has been analyzed and compared. The simulation and experiment results have indicated that for ferromagnetic material, the amplitude response of low frequency excitation has lower sensitivity but better monotonicity than high frequency. The phase response of low frequency excitation has higher sensitivity and better monotonicity than high frequency. For the non-ferromagnetic plate material, the lower the excitation frequency is, the smaller the detection sensitivity of the amplitude response is. Outside a defined excitation frequency, the defect monotonicity of the amplitude response reduces. For phase response, the lower the excitation frequency is, the smaller the detection sensitivity and the greater the monotonicity. The coil's size has a certain extent influence on the detection sensitivity. For ferromagnetic and non-ferromagnetic plate materials, it is effective to enhance the detection sensitivity of amplitude response by increasing the size of the exciter coil and the detector coil within a certain range; and it is effective to enhance the detection sensitivity of phase response by decreasing the size of the detector coil or increasing the size of exciter coil within a certain range. (C) 2018 Elsevier B.V. All rights reserved.
机译:对涡流试验(ECT)灵敏度(ECT)灵敏度,单调性和缺陷可检测性的关键影响因素(线圈尺寸和激发频率)的研究已经进行了用于检测铁磁性和非铁磁板材料的地下缺陷。已经完成了一组ICT有限元模型和实验,并分析了检测性能并进行比较。仿真和实验结果表明,对于铁磁材料,低频激发的幅度响应具有较低的灵敏度,但比高频更高的单调性。低频激发的相位响应具有更高的灵敏度和比高频更高的单调性。对于非铁磁板材,振荡频率越低,幅度响应的检测灵敏度越小。在定义的激励频率之外,幅度响应的缺陷单调性降低。对于阶段响应,激发频率越低,检测灵敏度越小,单调性越大。线圈的尺寸对检测灵敏度有一定程度的影响。对于铁磁性和非铁磁板材料,通过提高激励率线圈的尺寸和在一定范围内,有效地增强振幅响应的检测灵敏度;通过降低检测器线圈的尺寸或增加一定范围内的激励线圈的尺寸是有效的相响应的检测灵敏度是有效的。 (c)2018年elestvier b.v.保留所有权利。

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