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Magnetoimpedance Response and Field Sensitivity in Stress-Annealed Co-Based Microwires for Sensor Applications

机译:用于传感器的应力退火钴基微线中的磁阻响应和场灵敏度

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摘要

Amorphous soft magnetic microwires have attracted much attention in the area of sensor applications due to their excellent properties. In this work, we study the influence of annealing treatments (stress and conventional) in the giant magnetoimpedance (GMI) response and the field sensitivity of the soft magnetic Co Fe Ni B Si Mo C glass-coated microwires. Here we report a remarkable and simultaneous enhancement of GMI effect and field sensitivity. The highest sensitivity of 104%/Oe and the GMI response of 234% were achieved for 300 °C stress-annealed samples at 472 and 236 MPa, respectively. Additionally, we found that stress-annealed microwires exhibit a frequency dependence on maximal GMI response and field sensitivity. These findings are obtained by fine-tuning their magnetoeslastic anisotropies through stress-annealing treatments of as-prepared microwires at the proper temperature and axial applied stress upon annealing. We hope that the results presented here widen the scope of investigations for the future design of soft magnetic materials for sensor purposes.
机译:非晶软磁微线由于其优异的性能而在传感器应用领域引起了广泛的关注。在这项工作中,我们研究了退火处理(应力和常规)对巨型磁阻(GMI)响应和软磁Co Fe Ni B Si Mo C玻璃包覆微丝的场灵敏度的影响。在这里,我们报告了GMI效应和场灵敏度的显着同时增强。 300°C的应力退火样品分别在472和236 MPa下获得了104%/ Oe的最高灵敏度和234%的GMI响应。此外,我们发现,应力退火微丝对最大GMI响应和场灵敏度表现出频率依赖性。这些发现是通过在适当的温度和退火时的轴向施加应力下对准备好的微丝进行应力退火处理来微调它们的磁弹性各向异性而获得的。我们希望这里给出的结果能拓宽用于传感器用途的软磁材料未来设计的研究范围。

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