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Nondestructive Testing for Shallow Defect of Ferromagnetic Objects Based on Magnetic Probe Structure

机译:基于磁探针结构的铁磁物体浅缺陷无损检测

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摘要

The magnetic flux leakage (MFL) technology is one of the most widely used electromagnetic nondestructive testing techniques. To magnetize the detected object near to saturated flux density, the excitation mechanism is heavy and large in the MFL technology. A simple and portable magnetic detector device for shallow defect of ferromagnetic objects based on the magnetic probe structure is designed in this paper. The proposed magnetic detector is very light, cheap, and easy to design and manufacture. The magnetic detector can make the qualitative and quantitative evaluation for shallow defect of ferromagnetic objects. In steel ribbon test, the maximum relative error of quantitative test results is less than 5% by the proposed magnetic detector device. In this paper, the application of the magnetic detection method for wire rope is proposed. By the proposed method, qualitative and positional detection of the wire rope defects can be easily achieved.
机译:磁通量泄漏(MFL)技术是使用最广泛的电磁无损检测技术之一。为了将检测到的物体磁化到接近饱和磁通密度,MFL技术中的激励机制既笨重又庞大。本文设计了一种基于磁探针结构的便携式铁磁物体浅缺陷检测装置。所提出的磁检测器非常轻,便宜且易于设计和制造。磁探测器可以对铁磁性物体的浅缺陷进行定性和定量评估。在钢带测试中,所提出的磁检测器装置定量测试结果的最大相对误差小于5%。本文提出了钢丝绳磁检测方法的应用。通过提出的方法,可以容易地实现对钢丝绳缺陷的定性和位置检测。

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