Park Cheol Hoon, Kim Soohyun, Kim Kyung-Soo
Department of Mechanical Engineering, KAIST, Daejeon 305-348, South Korea.
Rev Sci Instrum. 2013 Sep;84(9):095106. doi: 10.1063/1.4820242.
Centrifuges are devices that separate particles of different densities and sizes through the application of a centrifugal force. If a centrifuge could be operated under atmospheric conditions, all vacuum-related components such as the vacuum chamber, vacuum pump, diffusion pump, and sealing could be removed from a conventional centrifuge system. The design and manufacturing procedure for centrifuges could then be greatly simplified to facilitate the production of lightweight centrifuge systems of smaller volume. Furthermore, the maintenance costs incurred owing to wear and tear due to conventional ball bearings would be eliminated. In this study, we describe a novel vacuum chamber-free centrifuge supported by magnetic bearings. We demonstrate the feasibility of the vacuum chamber-free centrifuge by presenting experimental results that verify its high-speed support capability and motoring power capacity.
离心机是通过施加离心力来分离不同密度和大小颗粒的装置。如果离心机能够在大气条件下运行,那么诸如真空腔、真空泵、扩散泵和密封等所有与真空相关的部件都可以从传统的离心机系统中去除。这样一来,离心机的设计和制造过程将大大简化,便于生产体积更小、重量更轻的离心机系统。此外,还能消除因传统滚珠轴承磨损而产生的维护成本。在本研究中,我们描述了一种由磁轴承支撑的新型无真空腔离心机。我们通过展示实验结果来证明无真空腔离心机的可行性,这些结果验证了其高速支撑能力和驱动功率容量。