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Manganese-substituted cobalt ferrite magnetostrictive materials for magnetic stress sensor applications

机译:锰取代的钴铁氧体磁致伸缩材料,用于磁应力传感器

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Metal bonded cobalt ferrite composites have been shown to be promising candidate materials for use in magnetoelastic stress sensors, due to their large magnetostriction and high sensitivity of magnetization to stress. However previous results have shown that below 60℃ the cobalt ferrite material exhibits substantial magnetomechanical hysteresis. In the current study, measurements indicate that substituting Mn for some of the Fe in the cobalt ferrite can lower the Curie temperature of the material while maintaining a suitable magnetostriction for stress sensing applications. These results demonstrate the possibility of optimizing the magnetomechanical hysteresis of cobalt ferrite-based composites for stress sensor applications, through control of the Curie temperature.
机译:金属结合的钴铁氧体复合材料由于其大的磁致伸缩性和高磁化强度对应力的敏感性,已被证明是用于磁弹性应力传感器的有前途的候选材料。然而,先前的结果表明,在60℃以下,钴铁氧体材料会表现出明显的磁机械滞后现象。在当前的研究中,测量结果表明,用锰代替钴铁氧体中的某些Fe可以降低材料的居里温度,同时保持适合应力传感应用的磁致伸缩。这些结果表明,通过控制居里温度,可以优化用于应力传感器的钴铁氧体钴基复合材料的磁机械滞后。

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