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首页> 外文期刊>Microelectromechanical Systems, Journal of >Light-Powered Micromotor: Design, Fabrication, and Mathematical Modeling
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Light-Powered Micromotor: Design, Fabrication, and Mathematical Modeling

机译:轻型微型电动机:设计,制造和数学建模

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摘要

This paper reports on the experimental and theoretical studies of a light-driven micromotor, which is a “light mill” that rotates by absorbing photon energy. This light mill has four curved blades to form an axially asymmetric geometry. Upon lateral irradiation, the shape of the light mill induces an asymmetric photon heating to the surrounding gas molecules, leading to a gas convection that forces the light mill to rotate. The light mill was applied to actuate a scanning mirror for a laser beam. Using a Direct Simulation Monte Carlo (DSMC) model, we investigated the working principle behind the operation of the light mill. The DSMC simulation yielded results consistent to our experimental data. The simulation results were used to explain the heat-induced light-mill rotation, in which the mean free path of the surrounding gas takes an important role. $hfill$[2010-0149]
机译:本文报道了光驱动微型电动机的实验和理论研究,该电动机是通过吸收光子能量而旋转的“光磨机”。该光磨具有四个弯曲的叶片,以形成轴向不对称的几何形状。在侧面照射时,光磨的形状会引起周围气体分子的不对称光子加热,导致气体对流,迫使光磨旋转。将光磨机应用于驱动激光束的扫描镜。使用直接模拟蒙特卡洛(DSMC)模型,我们研究了轻磨机运行背后的工作原理。 DSMC模拟得出的结果与我们的实验数据一致。仿真结果被用来解释由热引起的光磨旋转,其中周围气体的平均自由程起着重要作用。 $ hfill $ [2010-0149]

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