共查询到20条相似文献,搜索用时 640 毫秒
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为了有效利用脉冲涡流信号的低频成分检测钢板内部裂纹缺陷,提出了脉冲涡流同步采样方法。介绍了该方法的工作原理;采用在钢板上加工不同规格矩形槽的方法模拟钢板的裂纹缺陷;设计了由激励线圈和检测线圈构成的传感器,实现脉冲涡流信号的提取;采用数据采集卡采集信号,以Labview为平台,实现同步采样方法的软件设计。对钢板缺陷的检测和试验数据的分析,证明了脉冲涡流同步采样方法在钢板内部裂纹缺陷检测中具有较高的灵敏度,可以有效识别钢板内部裂纹缺陷。 相似文献
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为检测导体内更深处的缺陷,提出用8字形线圈作为涡流检测线圈,得到了8字形线圈在半无限大线性导体上方时涡流问题的解析解。仿真计算表明,与平行于导体表面放置的圆环形线圈相比,8字形线圈所激励的涡流密度峰值更大,能量分布更集中。试验验证了斜置线圈的阻抗表达式。研究结果可用于指导涡流检测探头的设计。 相似文献
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The inversion of eddy current probe impedance measurements is widely recognized as a complex theoretical problem whose solution is likely to have a significant impact on the characterization of materials. In this paper the evaluation of the conductivity profile of a layered planar structure is performed after inverting the impedance of a circular air-cored probe coil, of rectangular cross-section, using multilayer perceptron neural networks, trained via the back propagation learning algorithm. The merits of the method are illustrated in the light of two engineering examples. 相似文献
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This study enhances the applicability of eddy current testing to the evaluation of deep surface-breaking cracks in the front face of thick structures, while keeping the advantages of higher frequency inspection. The key idea is to suppress eddy currents on the surface of a test-piece, and thus realize the deeper penetration of eddy currents. Based upon this idea, a mutual induction eddy current testing probe, consisting of four coaxial rectangular tangential exciter coils and a pancake pick-up coil, has been designed. The exciters are driven by AC currents with different phases and amplitudes, which contrive to emulate the desired behavior. Numerical simulations and consecutive experimental verifications are presented in the paper. It is revealed that when the new probe is used for inspections under a frequency of 10 kHz there is a 20% difference between signals due to an electro-discharge machined (EDM) notch of 15 mm depth and those due to one of 20 mm depth. On the other hand, a conventional probe driven with the same frequency gives only 1% difference between the signals of the two EDM notches. 相似文献
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研究了有限厚导电平板上方的倾斜圆形线圈在脉冲电流激励下产生的电磁场。推导了倾斜圆形通电线圈的电流密度表达式,解析求解了导体内部的涡流密度,并提出了一种计算时域响应的有效方法。结合算例,分析了瞬态涡流的时空特点,讨论了线圈倾角、板厚与响应的关系。计算结果显示,提出的方法可用于分析倾斜圆形线圈的线性瞬态涡流场问题。与软件仿真结果的对比验证了所提模型和方法。所得结果有助于了解在倾斜条件下所获得的脉冲涡流检测信号。 相似文献
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飞机的结构件在铆接时存在铆接误差与应力集中,且在疲劳载荷的作用下容易产生疲劳裂纹,影响飞机的飞行安全性。针对铆接结构的隐藏缺陷,现有技术难以检测,而远场涡流检测技术不受集肤效应的限制,对铆接结构缺陷的检测具有潜在优势。本研究对铆接结构的隐藏缺陷开展远场涡流检测试验研究,从远场涡流检测理论出发,研究激励/检测线圈距离、匝数与检测频率、灵敏度的关系,在此基础上优化远场涡流传感器的激励参数。结果表明:当激励线圈的匝数为1 000,可感生出较强的涡流场;由于检测线圈采用的是差分形式,当检测线圈距离为7 mm时,检测信号幅值最大,且根据幅值特性或相位特性任一个信号,可准确对缺陷进行定位。 相似文献
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Analysis of eddy current interaction between a parallel coil and a ferromagnetic pipe with remanence
Eddy current field excited by a parallel coil placed next to a ferromagnetic pipe with remanence is studied in this paper. The influence of the remanence is analyzed at first. The analytical solutions to the ferromagnetic pipe eddy current field are deduced by means of a second-order vector potential formalism, and the analytical expression for the impedance change of the excitation coil is constructed. Theoretical analysis of the influence for the remanence and the analytical solutions to the eddy current field are verified by experiments. 相似文献
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This paper presents a generalized likelihood ratio technique for detection of defect locations from bobbin coil eddy current data. First a Neyman–Pearson (NP) decision rule for detection of known random signals (in presence of noise) is discussed. The result is then generalized to the problem of detection of unknown random signals that are commonly found in bobbin coil eddy current data. The performance of the proposed detection technique is tested on several real world data sets collected from the steam generator tubes of nuclear power plants. The experimental results indicate that the method is quite promising and useful for automated processing and classification of eddy current data. 相似文献
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针对传统的涡流检测激励频率确定方法存在与实际情况不符和难以得到最佳检测频率的问题,基于大型通用有限元软件ANSYS建立了外径19 mm、壁厚2 mm的1Cr18Ni9Ti不锈钢管材涡流检测内插式探头和穿过式探头的仿真模型,根据差动探头的特性,通过计算距人工缺陷不同距离时检测线圈电流的实部IREAL、虚部IIMAG和线圈的阻抗差ΔZ,进而得到缺陷仿真信号,通过比较不同频率下缺陷信号的幅值和相位,确定穿过式探头的最佳检测频率为50 kHz。 相似文献
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研究了对带包覆层管道的内部腐蚀进行脉冲涡流检测时,接收线圈的位置变化对检测灵敏度的影响,进行了探头置于激励线圈下不同位置的有限元仿真和试验研究。有限元仿真结果表明:在轴向和周向2个方向都是当检测线圈位于激励线圈边缘正下方时检测效果最好,其灵敏度分别为0.61、0.60。验证试验表明:在轴向和周向2个方向上,最佳检测位置都是位于激励线圈边缘正下方,其灵敏度分别为0.26、0.27。试验结果与仿真结果基本一致,表明接收线圈在激励线圈外边缘正下方附近时,检测灵敏度达到最大。研究结果有助于带包覆层管道腐蚀的脉冲涡流检测的传感器设计。 相似文献
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基于LabVIEW的远场涡流管道检测系统 总被引:1,自引:0,他引:1
为了提高管道无损检测的精度,实现管道内外壁缺陷的检测,采用远场涡流的检测方法,依据检测线圈接收到的信号是激励线圈产生磁场两次穿过管壁后的信号,携带了管壁内外缺陷信息的原理,设计了远场涡流传感器、检测信号处理电路。对检测线圈接收信号进行放大、滤波处理,信号采集;采用LabVIEW编程计算检测信号幅值,互相关算法计算检测信号相位,确定缺陷深度。对内径36mm的有伤管道进行了试验。结果表明,所设计的仪器能检测出管道上深度为0.5mm及以上缺陷。利用LabVIEW对相位差计算提高了检测精度,为实际应用提供参考。 相似文献
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