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Micromotors with Step-Motor Characteristics by Controlled Magnetic Interactions among Assembled Components

机译:通过组装零件之间的受控磁相互作用具有步进电动机特性的微型电动机

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摘要

In this study, we investigated the control of the rotation dynamics of an innovative type of rotary micromotors with desired performances by tuning the magnetic interactions among the assembled microanoscale components. The micromotors are made of metallic nanowires as rotors, patterned magnetic nanodisks as bearings and actuated by external electric fields. The magnetic forces for anchoring the rotors on the bearings play an essential role in the rotation dynamics of the micromotors. By varying the moment, orientation, and dimension of the magnetic components, distinct rotation behaviors can be observed, including repeatable wobbling and rolling in addition to rotation. We understood the rotation behaviors by analytical modeling, designed and realized micromotors with step-motor characteristics. The outcome of this research could inspire the development of high-performance nanomachines assembled from synthetic nanoentities, relevant to nanorobotics, microfluidics, and biomedical research.
机译:在这项研究中,我们通过调整已组装的微型/纳米级部件之间的磁相互作用,研究了具有所需性能的新型旋转微电机的旋转动力学控制。微型电动机由金属纳米线作为转子,由图案化的磁性纳米盘作为轴承,并由外部电场驱动。用于将转子固定在轴承上的磁力在微电机的旋转动力学中起着至关重要的作用。通过改变磁组件的力矩,方向和尺寸,可以观察到不同的旋转行为,除了旋转之外,还包括可重复的摆动和滚动。我们通过分析建模了解旋转行为,设计并实现了具有步进电动机特性的微型电动机。这项研究的结果可能会激发由合成纳米实体组装而成的高性能纳米机器的发展,与纳米机器人,微流体学和生物医学研究相关。

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