利用可调磁化角的磁流变探针评价前后侧裂纹

Mohd Aufa Hadi Putera Zaini, Mohd Mawardi Saari, N. A. Nadzri, Aiman Mohd Halil, K. Tsukada
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引用次数: 8

摘要

漏磁是磁技术无损检测中常用的一种检测方法。它可用于检测诸如钢等金属材料中的裂纹等缺陷,然而,钢被广泛认为是用于建筑的基础材料。因此,为了防止任何可能造成生命损失的事故,及早发现这些缺陷是非常重要的。传统的磁漏检测法是利用强磁场使样品饱和并检测漏磁。然而,在这项研究中,一种灵敏的磁探针已经被开发出来,以消除使用强磁场来饱和样品的需要。MFL探头由2个AMR传感器、一个自制放大器电路、一个设置/复位电路和一个柔性轭组成。此外,为了在不同磁化角度下对样品施加磁场,还提出了柔性磁轭。利用研制的探针,测量了不同频率下2mm镀锌钢板前后表面的磁响应。样品本身嵌入了不同深度的人工狭缝,范围从1.0 mm到1.6 mm不等。此外,还讨论了60°和90°不同的磁化角对表面磁化效果的影响。从结果可以看出,表面60°磁化角对表面狭缝检测有较大的改善,而与背面90°磁化角相比,对背面狭缝检测几乎没有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An MFL Probe using Shiftable Magnetization Angle for Front and Back Side Crack Evaluation
Magnetic Flux Leakage (MFL) is one of the common methods in Non-destructive Tests employing magnetic technique. It can be used to detect flaws such as cracks in metallic materials such as steel, whereas, steel is widely known as a base material used for constructions. Therefore, early detection of these flaws is very crucial in order to prevent any accident that could cost lives. Conventionally, MFL method utilizes a strong magnetic field to saturate samples and detects the magnetic flux leakage. However, in this study, a sensitive magnetic probe has been developed to remove the need of using a strong magnetic field to saturate samples. the MFL probe is fabricated with 2 AMR sensors, a home-made amplifier circuit, a set/reset circuit and a flexible yoke. Furthermore, the flexible yoke is proposed in order to apply the magnetic field to the sample at different magnetization angles. Using the developed probe, we measure the magnetic responses at front and back side surfaces of a 2-mm galvanized steel plate at different frequencies. The sample itself is embedded with artificial slits with different depth, ranging from 1.0 mm to 1.6 mm. Moreover, the effect of different magnetization angle of 60° and 90° from the surface is also discussed. From the results, it can be said that the 60° magnetization angle from the surface is proved to provide a considerable improvement for the surface slit detection, while, having close to no effect compared to the 90° magnetization angle on the back side slit detection.
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