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Influence of Shape Anisotropy and Temperature on Magnetostrictive Behavior in Single-Crystal Galfenol Alloys

机译:形状各向异性和温度对单晶Galfenol合金磁致伸缩行为的影响

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摘要

Fe-Ga (Galfenol) is a rare-earth-free alloy with useful magnetostrictive properties of nominal cost and robust mechanical properties advantageous for sensing, actuating, and energy harvesting. Understanding magnetostriction and magnetization behaviors under stress while at temperatures up to +250 °C is needed to explore the potential of harsh environment applications for magnetostrictive non-contact sensors, for use in applications such as monitoring torque changes in engines and rotorcraft shafts. Galfenol thin patches have the potential to operate in these applications, but alloy performance at these temperatures while under stress has not been studied. Thus, in this paper, we investigate simultaneous effects of temperature and compressive stresses on magnetic and magnetostrictive behaviors of single crystal Fe-Ga samples at temperatures from +25 °C to +250 °C while under compressive stresses of 0, 15, and 23 MPa. The samples are also subjected to temperatures up to +250 °C and no stress to acquire simultaneous magnetostriction and magnetization values. Building upon this experimental data, this paper attempts to relate temperature dependence and shape anisotropy to determine the effect on magnetic susceptibility at elevated temperatures. Understanding the roles of temperature and compressive stress as well as shape anisotropy on magnetostrictive, Fe-Ga alloys can provide an advanced understanding of the material properties and thus facilitate their use in a wider range of applications.
机译:Fe-Ga(Galfenol)是一种无稀土合金,具有有用的磁致伸缩性能(标称成本)和强大的机械性能,有利于传感,激励和能量收集。需要了解在高达+250°C的温度下应力下的磁致伸缩和磁化行为,以探索磁致伸缩非接触式传感器在恶劣环境中的应用潜力,这些应用可用于监视发动机和旋翼航空器轴的扭矩变化。 Galfenol薄补片具有在这些应用中运行的潜力,但尚未研究在这些温度和应力下的合金性能。因此,在本文中,我们研究了温度和压缩应力对单晶Fe-Ga样品在+25°C至+250°C的温度以及0、15和23的压缩应力下的磁和磁致伸缩行为的同时影响。 MPa。样品还承受高达+250°C的温度,并且没有应力,以获取同时的磁致伸缩和磁化值。在此实验数据的基础上,本文尝试将温度依赖性和形状各向异性联系起来,以确定对高温下磁化率的影响。了解温度和压缩应力以及形状各向异性对磁致伸缩Fe-Ga合金的作用,可以提供对材料特性的高级理解,从而有助于它们在更广泛的应用中使用。

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