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Structural optimization of 2-D array probe for alternating current field measurement

机译:用于交流场测量的二维阵列探头的结构优化

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A double U-shaped orthogonal inducer for the alternating current field measurement (ACFM) is presented, which could extend the limitation of the direction of tested cracks and decrease the loss of magnetic flux compared to the single rectangular inducer. The structure of the testing probe was optimized to meet the expectations of the pointwise magnetic field measurement and to decrease every group of coils' space by orthogonally winding method, and the two-dimensional (2-D) ACFM probe array was designed. The detection precision and lift-off effect of the 2-D ACFM probe array were experimentally studied. The results show that the relative error of this probe is less than 10%, and it could suppress the lift-off disturbance effectively, which makes this 2-D ACFM probe array to be insensitive to lift-off and unable to meet the engineering expectations.
机译:提出了一种用于交流场测量(ACFM)的双U形正交感应器,与单个矩形感应器相比,它可以扩展测试裂纹方向的限制并减少磁通量的损失。对测试探头的结构进行了优化,以满足点向磁场测量的期望,并通过正交缠绕法减小每组线圈的空间,并设计了二维(2-D)ACFM探头阵列。实验研究了二维ACFM探针阵列的检测精度和提离效果。结果表明,该探头的相对误差小于10%,可以有效抑制升空干扰,使二维ACFM探头阵列对升空不敏感,不能满足工程期望。 。

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