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A Study on the role of Oil-Air Mist Lubrication on an Ultrahigh-Speed Bio-Generator

机译:油气雾化润滑对超高速生物发电机的作用研究

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The significance of economical exploitation of resources has brought a need for compact and efficient electromechanical systems and electrical machines. The electrical machines such as bio-generators need to be featured with high power densities and high efficiencies with lower excitation losses, magnetizing currents and rotor losses. However, the research progress has often been challenged by the ultrahigh-speed bio-generator knowhow as the design must be dealt with factors: i) “DN” rating of value ~ 1.5X 106and above ii) high value of “kW/speed” rating. Furthermore, the thermal management of ultrahigh-speed bio-generator is difficult and complicated as the temperature rise in high-speed bio-generator facilitates demagnetization cascading to the reduction of the output power. The output of research portrays the use of pressurized oil-air particles as a lubrication method on an ultrahigh speed bio-generator to avoid thermal damage and starvation at the rolling element and to address the predominant concern which is effective cooling of ultra-precision ball bearings even at elevated speeds. The ultrahigh-speed generator was designed and developed to operate at a maximum speed of ~30000 RPM to deliver 10kW output power and expected to 80~92°C temperature rise with ~2 kW idle power consumption enough to cause a severe impact to the rolling elements of the bearing. The newly developed oil-air mist lubrication arrangement enables to control the temperature rise at the rolling element and ensures the use of ultrahigh speed conditions for the bio-generator.
机译:经济利用资源的重要性使得需要紧凑高效的机电系统和电气机。电气机如生物发电机需要具有高功率密度和高效率,具有较低的激励损耗,磁化电流和转子损耗。然而,由于设计必须达到因素,因此,超高速生物发电机的研究进展往往受到挑战:i)“DN”额定值〜1.5x 106,上述II上方)“kW /速度”高价值评分。此外,随着高速生物发电机的温度升高,难以升高的高速生物发生器的热管理易于级联级联降低输出功率的降低。研究的产出描绘了在超高速生物发电机上使用加压油颗粒作为润滑方法,以避免滚动元件的热损坏和饥饿,并解决了超精密滚珠轴承的有效冷却的主要问题即使升高速度。设计和开发的超高速发电机以最大速度为〜30000rpm的最大速度,以提供10kW输出功率,预计〜80〜92°C温度升高,足以对滚动引起严重影响轴承的元素。新开发的油气雾润滑装置可以控制滚动元件的温度升高,并确保使用超高速度条件的生物发生器。

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