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Practical and Theoretical Investigations of a Rotating Coilless Actuator Using the Inverse Magnetostrictive Effect

机译:逆磁致伸缩效应的旋转无线圈致动器的实践和理论研究

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摘要

In this paper, we present a novel rotating actuator based on the interaction of a permanent magnet with a magnetostrictive soft ribbon submitted to mechanical stress. The direction and magnitude of the stress generates a directional magnetic anisotropy (easy axis) in the soft ribbon. A nonzero angle between the polarizing magnet and the induced easy axis results in a torque between the two: hence the magnet being free to rotate aligns itself with the easy axis. A demonstrator of this principle was made using a Nd–Fe–B magnet above a disk cut from an iron-based amorphous ribbon glued between two unidirectional piezoelectric actuators. The analytical model takes into account the magnetic domains and assumes a magnetization mechanism of both coherent rotation and domain-wall displacement, with a uniaxial anisotropy induced by the applied stress.
机译:在本文中,我们提出了一种基于永磁体与受机械应力作用的磁致伸缩软带相互作用的新型旋转执行器。应力的方向和大小会在软带中产生方向性的磁各向异性(易轴)。极化磁体和感应的易轴之间的非零角度会导致两者之间产生转矩:因此,自由旋转的磁体会将其自身与易轴对齐。这个原理的演示者是使用Nd–Fe–B磁体制成的,该磁体位于磁盘上方,该磁盘是从铁基非晶带状物切割而成的,该带状物胶粘在两个单向压电致动器之间。该分析模型考虑了磁畴,并假设了相干旋转和畴壁位移的磁化机理,其中外加应力引起了单轴各向异性。

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