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Rotational GMR magnetic sensor based eddy current probes for detecting buried corner cracks at the edge of holes in metallic structures

机译:基于旋转GMR磁传感器的基于涡流探头,用于检测金属结构孔边缘的埋地角裂缝

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In this study, eddy current rotational probe based on Giant Magneto-Resistance sensor (GMR) and circular coil were used to detect subsurface corner flaws at the edge of holes in metallic structures. Aluminum samples contain holes of 0.25" in diameter aligned in a row used to demonstrate this technique. The distance between the centers of two adjacent holes is 0.75". First sample has two 0.125" thick layers. A 0.06" long corner crack is located in one of the layers at the edge of a hole. The height of the corner crack is 0.04". Three configurations were tested to detect the corner crack at three different depths within the structure: a) at the bottom of the first layer; b) at the top of the second layer: c) at the bottom of the second layer. The second sample is a single layer and has a 0.25" in thickness and 0.075" long corner crack is located at the bottom of the sample; the height of the crack is 0.04". A GMR sensor is located above the coil containing the defect, at a distance equal to the mean radius from the center of the coil. The sensitive axis of the magnetic sensor was oriented tangential to the hole. The probe was then rotated about the axis of the hole containing the defect. Two circular coils of different mean diameter were used for this probe. The frequency and phase were optimized to detect corner cracks at different depths of the structure.
机译:在该研究中,基于巨型磁阻传感器(GMR)和圆形线圈的涡流旋转探针用于检测金属结构中孔边缘的地下角漏洞。铝样品在用于演示该技术的一排中,铝样品在直径上排列的孔为0.25“。两个相邻孔的中心之间的距离为0.75”。第一样品具有两个0.125“厚层。0.06”长角裂缝位于孔边缘的层中的一个。拐角裂缝的高度为0.04“。测试了三种配置,以检测结构内的三个不同深度的角裂缝:a)在第一层的底部; b)在第二层的顶部:c)在第二层的底部。第二样品是单层,厚度为0.25“,0.075”长角落裂缝位于样品的底部;裂缝的高度为0.04“。 GMR传感器位于含有缺陷的线圈上方,在等于来自线圈的中心的平均半径的距离处。磁传感器的敏感轴线与孔切向。然后绕包含缺陷的孔的轴线旋转探针。使用两个不同平均直径的圆形线圈用于该探针。优化频率和相位以检测结构的不同深度的角裂缝。

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