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Performance of integrated retainer rings in silicon micro-turbines with thrust style micro-ball bearings

机译:带有推力型微球轴承的硅微型涡轮机中集成挡圈的性能

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摘要

This work explores the performance of different silicon retainer ring designs when integrated into silicon micro-turbines (SMTs) incorporating thrust style bearings supported on 500 μm diameter steel balls. Experimental performance curves are presented for SMTs with rotor diameters of 5 mm and 10 mm, each with five different retainer designs varying in mechanical rigidity, ball pocket shape and ball complement. It was found that the different retainer designs yielded different performance curves, with the closed pocket designs consistently requiring lower input power for a given rotation speed, and the most rigid retainers giving the best performance overall. Both 5 mm and 10 mm diameter devices have shown repeatable performance at rotation speeds up to and exceeding 20 000 RPM with input power levels below 2 W, and devices were tested for over 2.5 million revolutions without failure. Retainer rings are commonly used in macro-scale bearings to ensure uniform spacing between the rolling elements. The integration of retainers into micro-bearings could lower costs by reducing the number of balls required for stable operation, and also open up the possibility of 'smart' bearings with integrated sensors to monitor the bearing status.
机译:这项工作探索了将不同的硅固定环设计集成到硅微型涡轮机(SMT)中的性能,这些微型涡轮机集成有支撑在直径为500μm的钢球上的推力式轴承。给出了转子直径分别为5 mm和10 mm的SMT的实验性能曲线,每种均具有五种不同的保持器设计,这些设计在机械刚度,球窝形状和球互补方面有所不同。结果发现,不同的保持架设计会产生不同的性能曲线,对于给定的转速,封闭式口袋设计始终需要较低的输入功率,而最刚性的保持架则总体上具有最佳性能。直径为5毫米和10毫米的设备在输入功率低于2 W的转速下达到和超过20000 RPM时都显示出可重复的性能,并且对设备进行了超过250万转的测试,没有出现故障。保持环通常用于大型轴承中,以确保滚动体之间的间距均匀。将保持架集成到微型轴承中,可以通过减少稳定运行所需的滚珠数量来降低成本,并且还可以提供带有集成传感器以监控轴承状态的“智能”轴承。

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