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Design and development of a high-speed motor for a vacuum pump

机译:设计和开发真空泵的高速电机

摘要

Turbomolecular pumps require a motor to drive them at speeds of up to 90,000 rpm. These high-speed motors are typically brushless permanent magnet motors that are specifically designed for the application. Intellectual property rights over the design lock the company into one single supplier. Also low manufacturing volumes make the motor expensive to produce. To stay competitive continuous cost reductions or product improvements are necessary. This can only be achieved by looking at new materials, alternative manufacturing methods and simplified assembly processes. The aim of this project is to replace an existing laminated, high-speed (60,000rpm) motor with a new low-cost design. Special considerations need to be given to the motor design with regards to minimising losses due to the high operating speed and the fact that the motor operates in a vacuum. A machine design employing a simple, 3-tooth segmented stator made from soft magnetic composites (SMC) and using non-overlapping coils, and a `deep' plastic bonded magnet on the rotor is proposed to deliver low rotor losses and low manufacturing costs. Four SMC prototype motors have been built, which have led to the following discoveries: (1) Bulk eddy currents in the SMC material cannot be neglected and need to be taken into account separately as a function of the actual component size and shape. (2) A process is suggested to improve the iron loss calculation in SMC, which is evaluated against the prototypes built. (3) SMC material properties are adversely affected by prototype machining, leading to higher iron losses than initially expected. (4) The segmented SMC design has proven to be commercially very attractive. During testing a large sensitivity of the magnetically supported pump shaft to the inherent unbalanced magnetic pull (UMP) force of the 3-tooth, 2-pole design was discovered. This led to a practical and theoretical study into the effects of UMP in this application. An alternative design that avoided the inherent UMP was required, and a 6- tooth, 4-pole motor has been designed and built. For reasons of minimising risks laminations were chosen as the stator material rather than SMC. Test results of this motor in the pump have been successful and the motor has been selected to go into the next generation of turbomolecular pumps.
机译:涡轮分子泵需要电动机以高达90,000 rpm的速度驱动它们。这些高速电动机通常是专门为该应用设计的无刷永磁电动机。设计的知识产权将公司锁定为单一供应商。另外,低制造量使电动机的生产成本很高。为了保持竞争力,必须不断降低成本或改进产品。这只能通过研究新材料,替代制造方法和简化组装过程来实现。该项目的目的是用新的低成本设计替代现有的叠层高速(60,000rpm)电动机。需要特别考虑电动机的设计,以最大程度地减少由于高运行速度和电动机在真空中运行而造成的损失。提出了一种采用简单的,由软磁复合材料(SMC)制成的三齿分段定子并使用不重叠的线圈以及转子上的“深”塑料粘结磁体的机器设计,以降低转子损耗并降低制造成本。已制造了四台SMC原型电动机,这些发现导致以下发现:(1)不能忽略SMC材料中的大涡流,需要根据实际部件的尺寸和形状分别考虑它们。 (2)提出了一种改进SMC中铁损计算的过程,该过程针对所构建的原型进行了评估。 (3)原型加工不利地影响了SMC材料的性能,导致铁损高于最初的预期。 (4)分段SMC设计已被证明在商业上非常有吸引力。在测试过程中,发现了磁力支撑的泵轴对3齿2极设计固有的不平衡磁拉力(UMP)的巨大敏感性。这导致了对UMP在此应用程序中的效果的实践和理论研究。需要一种避免固有UMP的替代设计,并且已经设计并制造了6齿4极电动机。为了最大程度地降低风险,选择叠片作为定子材料而不是SMC。该电动机在泵中的测试结果已经成功,并且已选择将电动机用于下一代涡轮分子泵。

著录项

  • 作者

    Hoefer Ulrike Martina;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
  • 中图分类

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