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The Impact of Bending Stress on the Performance of Giant Magneto-Impedance (GMI) Magnetic Sensors

机译:弯曲应力对巨磁阻抗(GMI)磁传感器性能的影响

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The flexibility of amorphous Giant Magneto-Impedance (GMI) micro wires makes them easy to use in several magnetic field sensing applications, such as electrical current sensing, where they need to be deformed in order to be aligned with the measured field. The present paper deals with the bending impact, as a parameter of influence of the sensor, on the GMI effect in 100 μm Co-rich amorphous wires. Changes in the values of key parameters associated with the GMI effect have been investigated under bending stress. These parameters included the GMI ratio, the intrinsic sensitivity, and the offset at a given bias field. The experimental results have shown that bending the wire resulted in a reduction of GMI ratio and sensitivity. The bending also induced a net change in the offset for the considered bending curvature and the set of used excitation parameters (1 MHz, 1 mA). Furthermore, the field of the maximum impedance, which is generally related to the anisotropy field of the wire, was increased. The reversibility and the repeatability of the bending effect were also evaluated by applying repetitive bending stresses. The observations have actually shown that the behavior of the wire under the bending stress was roughly reversible and repetitive.
机译:非晶巨磁阻抗(GMI)微线的柔韧性使其易于在多种磁场感应应用中使用,例如电流感应,在这些应用中需要对其变形以使其与被测磁场对齐。本文将弯曲影响作为传感器影响的参数,对100μm富钴非晶导线中的GMI效应进行处理。已经研究了在弯曲应力下与GMI效应相关的关键参数值的变化。这些参数包括GMI比,固有灵敏度和给定偏置场的偏移。实验结果表明,弯曲导线会导致GMI比和灵敏度降低。对于所考虑的弯曲曲率和一组使用的激励参数(1 MHz,1 mA),弯曲还引起偏移的净变化。此外,增加了通常与导线的各向异性场有关的最大阻抗的场。弯曲作用的可逆性和可重复性也通过施加重复的弯曲应力来评估。观察结果实际上表明,线材在弯曲应力下的行为是大致可逆和重复的。

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