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New development of sensitive magnetic sensors for nondestructive evaluation of structural materials

机译:结构材料无损评价敏感磁传感器的新开发

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The diagnosis of iron-based materials was performed by using many magnetic sensors such as a small Hall element for leakage flux observations after polarizations, a locally sensitive fluxgate sensor available down to 100pT, by a pick-up coil for magnetic noise observation and by a triple-fold coil for eddy current detector. The spatially high resolution of the magnetic sensors was attained as narrow as 100 μm or less with the same order lift-off distance depending on the situation. By using these detectors, we detected the positions with the relatively high stress in comparison with the other positions. Residual stress detection less than 0.1 % in ferromagnetic material was attained in this study by deriving the expectations of field strength for magnetic noise occurrence. Positions with small holes inside the material were precisely detected by an eddy current detector, composed of a triple-fold coil with thin amorphous ribbon and attached from the material surface. The small magnetic field emission from a new type flux gate sensor was also attained by composing a double coil set for flux gate with the opposite coil current coil each other.
机译:通过使用许多磁传感器(例如偏振后的漏漏通量观测)等小霍尔元件,通过用于磁噪声观察的拾取线圈提供局部敏感的磁通件传感器,诊断铁基材料,例如用于渗漏通量的漏气观测。用于涡流检测器的三折线线圈。根据情况,磁传感器的空间高分辨率为100μm或更小,与情况相同的升降距离。通过使用这些探测器,我们与其他位置相比,我们检测到具有相对高的应力的位置。通过导出对磁噪声的预期,在本研究中获得了磁性噪声的磁性强度的预期,在该研究中达到了小于0.1%的剩余应力检测。通过涡流检测器精确地检测具有物料内部的小孔的位置,由具有薄无定形带的三折叠线圈组成并从材料表面附接。通过对具有相对的线圈电流线圈的磁通栅极组成具有相对的线圈电流线圈的双线圈组来实现来自新型磁通栅极传感器的小磁场发射。

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