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Motor-Driven Giant Magnetostrictive Actuator

机译:电动巨型磁致伸缩执行器

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摘要

A typical giant magnetostrictive actuator (GMA) expands a magnetostrictive rod to generate strain by varying the current in the coil that surrounds the magnetostrictive rod. The heat generated by the current deteriorates the GMA performance. In particular, a constant current in the coil is required to produce the desired magnetic field when an output strain should be maintained. The GMA does not produce any mechanical power in this condition, but constant power is being consumed by the excitation coil. This paper presents a new type of motor-driven GMA (MDGMA), which works in a coil-free driven manner. The magnetic field in the iron–gallium alloy (Galfenol), which is a type of magnetostrictive material, is periodically altered by rotating the permanent magnets instead of varying the coil current in the traditional GMA. The proposed MDGMA not only achieves continuous adjustment of the output strain, but can also maintain a constant output strain without consuming any power. In addition, the coil-free design releases the new MDGMA from the heat generated by the excitation coil, which allows the MDGMA to work more stably.
机译:典型的巨型磁致伸缩致动器(GMA)通过改变围绕磁致伸缩杆的线圈中的电流来扩展磁致伸缩杆以产生应变。电流产生的热量会使GMA性能下降。特别地,当应当保持输出应变时,需要在线圈中恒定电流以产生期望的磁场。在这种情况下,GMA不会产生任何机械动力,但是励磁线圈会消耗恒定的动力。本文提出了一种新型的电机驱动GMA(MDGMA),它以无线圈驱动的方式工作。铁镓合金(Galfenol)中的磁场是一种磁致伸缩材料,它通过旋转永磁体而不是在传统GMA中改变线圈电流来定期改变。所提出的MDGMA不仅可以实现输出应变的连续调节,而且可以在不消耗任何功率的情况下保持恒定的输出应变。此外,无线圈设计从励磁线圈产生的热量中释放出新的MDGMA,这使MDGMA可以更稳定地工作。

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