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Design and Optimization of a Dielectric-gas-based Single-phase Electrostatic Motor

机译:基于介电气体的单相静电电动机的设计与优化

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Electrostatic motor can work as a supplement to the electromagnetic motor due to its simple structure, low cost, light weight, and high efficiency. Increasing the applied voltage under ultra-high vacuum (UHV) condition and using dielectric liquid with high relative permittivity are two approaches to increase its torque and make electrostatic motors competitive with the electromagnetic ones. This paper presents a dielectric-gas-based single-phase electrostatic motor with simplified construction. 3-D finite element analysis (FEA) simulation and optimization process of the electrostatic motor is performed and an electrostatic motor with a torque of 0.25 Nm and power of 50 W is designed. 3-D printing is used to build a prototype machine to eliminate the process of mould manufacture and achieve a weight reduction. Predicted capacitance of machine is compared with measured result and good agreement is achieved.
机译:由于其结构简单,成本低,重量轻,效率高,静电电动机可以作为电磁电动机的补充剂。在超高真空(UHV)条件下增加施加的电压并使用具有高相对介电常数的介电液体是两种方法,以增加其扭矩并使静电电动机与电磁器竞争激烈。本文介绍了一种具有简化结构的介电 - 气体的单相静电电动机。三维有限元分析(FEA)进行静电电动机的仿真和优化过程,并且设计了具有0.25nm的扭矩和50w的静电电动机。 3-D打印用于构建原型机以消除模具制造过程并实现重量减轻。预测机器的电容与测量结果进行比较,实现了良好的一致性。

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