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Propulsion Mechanism of Catalytic Microjet Engines

机译:催化微喷发动机的推进机理

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摘要

We describe the propulsion mechanism of the catalytic microjet engines that are fabricated using rolled-up nanotech. Microjets have recently shown numerous potential applications in nanorobotics but currently there is a lack of an accurate theoretical model that describes the origin of the motion as well as the mechanism of self-propulsion. The geometric asymmetry of a tubular microjet leads to the development of a capillary force, which tends to propel a bubble toward the larger opening of the tube. Because of this motion in an asymmetric tube, there emerges a momentum transfer to the fluid. In order to compensate this momentum transfer, a jet force acting on the tube occurs. This force, which is counterbalanced by the linear drag force, enables tube velocities of the order of 100 μm/s. This mechanism provides a fundamental explanation for the development of driving forces that are acting on bubbles in tubular microjets.
机译:我们描述了使用卷起的纳米技术制造的催化微喷引擎的推进机理。微型喷气机最近在纳米机器人领域显示出许多潜在的应用,但目前缺乏描述运动起源以及自推进机制的精确理论模型。管状微射流的几何不对称导致毛细作用力的发展,毛细作用力倾向于将气泡推向管的较大开口。由于在不对称管中的这种运动,因此出现了向流体传递动量的现象。为了补偿这种动量传递,产生了作用在管上的喷射力。通过线性拖曳力抵消的该力可使管速度达到100μm/ s的量级。该机制为作用在管状微射流中的气泡上的驱动力的发展提供了基本解释。

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