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A Pot-Like Vibrational Microfluidic Rotational Motor

机译:一种像锅状振动的微流体旋转马达

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摘要

Constructing a micro-sized microfluidic motor always involves the problem of how to transfer the mechanical energy out of the motor. The paper presents several experiments with pot-like microfluidic rotational motor structures driven by two perpendicular sine and cosine vibrations with amplitudes around 10 μm in the frequency region from 200 Hz to 500 Hz. The extensive theoretical research based on the mathematical model of the liquid streaming in a pot-like structure was the base for the successful real-life laboratory application of a microfluidic rotational motor. The final microfluidic motor structure allowed transferring the rotational mechanical energy out of the motor with a central axis. The main practical challenge of the research was to find the proper balance between the torque, due to friction in the bearings and the motor’s maximal torque. The presented motor, with sizes 1 mm by 0.6 mm, reached the maximal rotational speed in both directions between −15 rad/s to +14 rad/s, with the estimated maximal torque of 0.1 pNm. The measured frequency characteristics of vibration amplitudes and phase angle between the directions of both vibrational amplitudes and rotational speed of the motor rotor against frequency of vibrations, allowed us to understand how to build the pot-like microfluidic rotational motor.
机译:构建微尺寸的微流体电动机总是涉及如何将机械能从电动机转移出的问题。本文呈现了几个实验,该实验具有由两个垂直正弦和余弦振动驱动的锅状微流体旋转电动机结构,其频率区域在200Hz至500Hz中的频率区域约为10μm。基于罐状结构中液体流数学模型的广泛理论研究是用于微流体旋转电动机的成功实验实验室应用的基础。最终的微流体电动机结构允许用中心轴向电动机将旋转机械能输出。研究的主要实际挑战是在轴承中的摩擦和电动机的最大扭矩中找到扭矩之间的适当平衡。所提出的电动机,尺寸为1 mm×0.6 mm,在-15 rad / s至+14 rad / s之间的两个方向上达到了最大的转速,估计最大扭矩为0.1 pnm。在振动频率的振动幅度和电动机转子的转速之间的振动振动幅度和相角之间的测量频率特性使我们能够理解如何构建锅状微流体旋转电动机。

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