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Contactless actuation of giant magnetostriction thin film alloy bimorphs for two-dimensional scanning application

机译:无接触式磁致伸缩薄膜合金双芯片二维扫描应用的致动

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Giant Magnetostriction appears to be very promising for contactless actuation. However very few attempts have been made to actually exploit that advantage in sensors and actuators. The 2D scanning actuator that is being developped is a cantilever based structure that benefits from another unique feature of the magnetostrictive materials: the ability to produce both bending and torsion at the same time with two AC magnetic fields. The ability to drive bending and torsion modes has been proven but never on a micro-structure. The actuators are processed and released from SOI wafers and all the micromachining process is done before the deposition of the active layer. A two-cantilever-based actuator has been designed i) to decrease the resonant frequency of the first rank of the torsion mode ii) to achieve a good decoupling between the bending and the torsion motion iii) to enhance the displacement. The actuation is performed using one DC 60mT and two AC 3-12 mT magnetic fields. Depending on the size of the actuator, resonant frequencies from 1 kHz to 30 kHz have been investigated for both the bending and the torsion motion.
机译:超磁致伸缩似乎非接触式动作非常有前景。但是已经进行了很少的尝试实际上利用在传感器和执行器这一优势。正被developped二维扫描致动器是基于悬臂结构,其从所述磁致伸缩材料的另一个独特特征的好处:以产生弯曲和扭转,同时与两个交流磁场的能力。开车的弯曲和扭转的能力已经被证明,但从未在微观结构。致动器被加工并从SOI晶片释放,所有的微加工工艺在有源层的沉积之前进行。一种基于双悬臂致动器已被设计i)至减小扭转模式II的第一级)的谐振频率,以实现弯曲和扭转运动ⅲ)以增强位移之间的良好的去耦。致动使用一个DC 60MT和两个AC 3-12 mT的磁场执行。根据致动器的大小,从1kHz到30kHz的共振频率已被研究用于弯曲和扭转运动两者。

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