首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Investigation of the rotor temperature of a turbo-molecular pump with different motor drive methods
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Investigation of the rotor temperature of a turbo-molecular pump with different motor drive methods

机译:用不同电机驱动方法调查涡轮分子泵转子温度

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摘要

AbstractWhen a turbo-molecular pump (TMP) runs at high speed, the eddy current loss induced by harmonic components of stator currents increases the rotor temperature. With no effective cooling method, the rotor temperature is much higher than the stator temperature under high vacuum environment. Furthermore, rotor overheat may result in a loss of magnetism and expansion deformation of the rotor sheath, which degrade both performance and stability of the TMP system. In this paper, the factors of the rotor temperature are analyzed firstly. Eddy current loss is the main heat source of the rotor of a TMP system. In order to control the rotor temperature, two different kinds of motor drive methods including square currents and sinusoidal currents are investigated to minimize eddy current loss. Although the square current drive method is popular for its simplicity and low-cost, the sinusoidal current method is much more suitable for a TMP drive since it has less harmonic current components, which reduces the eddy current loss in the rotor. At last, it is tested at a magnetically suspended TMP system with 4100?L/s pumping speed and the experimental results verify the analysis.Highlights?The rotor power loss model
机译:<![CDATA [ 抽象 当涡轮分子泵(TMP)以高速运行时,由谐波分量引起的涡流损失定子电流增加转子温度。没有有效的冷却方法,转子温度远高于高真空环境下的定子温度。此外,转子过热可能导致转子护套的磁性和膨胀变形的损失,这降低了TMP系统的性能和稳定性。在本文中,首先分析转子温度的因素。涡流损耗是TMP系统转子的主热源。为了控制转子温度,研究了两种不同种类的电动机驱动方法,包括平方电流和正弦电流以最小化涡流损失。虽然方形电流驱动方法是其简单性和低成本的流行,但是正弦电流方法更适合于TMP驱动,因为它具有较少的谐波电流分量,这降低了转子中的涡流损耗。最后,它在磁悬浮的TMP系统中进行了4100?L / S泵送速度的测试,实验结果验证了分析。 亮点 转子功率损耗模型

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