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Magnetoelastic properties of nanostructured FeCoSiB ribbons used for high-sensitive stress sensors

机译:用于高灵敏应力传感器的纳米结构FeCoSiB带的磁弹性特性

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High-sensitive stress sensor is simply constructed comprising magnetostrictive 30 μm-thick (Fe_(80)Co_(20))_(78)Si_(12)B_(10) ribbon acting as a sensitive magnetic core inside an induction coil. The stress can be determined indirectly by measuring the change in the output voltage in the two-coil system. The results show that the sensitivity highly depends on the intrinsic properties of the ribbon cores. The optimum with both a high sensitivity and an almost linear stress dependence of output signal was obtained in the 250 ℃-annealed ribbon. This is attributed to the correlation between the magnetic and magnetoelastic softness governed by the fine 10 nm nanograin structure. These high sensitivity and simple fabrication sensors are widely applicable to various stress detecting fields.
机译:简单构造高灵敏度应力传感器,该传感器包括厚度为30μm的磁致伸缩(Fe_(80)Co_(20))_(78)Si_(12)B_(10)薄带,用作感应线圈内的敏感磁芯。应力可以通过测量两线圈系统中输出电压的变化来间接确定。结果表明,灵敏度在很大程度上取决于带状磁芯的固有特性。在250℃退火带中获得了具有高灵敏度和几乎线性应力依赖性的输出信号的最佳选择。这归因于由精细的10 nm纳米颗粒结构控制的磁和磁弹性软度之间的相关性。这些高灵敏度和简单的制造传感器可广泛应用于各种应力检测领域。

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