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Title A Study on the role of Oil-Air Mist Lubrication on an Ultrahigh-Speed Bio-Generator
ID_Doc 17464
Authors Kuppuswamy, R; Richmond, C; Khan, A
Title A Study on the role of Oil-Air Mist Lubrication on an Ultrahigh-Speed Bio-Generator
Year 2019
Published
DOI 10.1016/j.promfg.2019.04.015
Abstract 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 similar to 1.5X 10(6) and 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 similar to 30000 RPM to deliver 10kW output power and expected to 80 similar to 92 degrees C temperature rise with similar to 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. (C) 2019 The Authors. Published by Elsevier B.V.
Author Keywords Ultra high speed; Bio-generator; Oil-air mist lubrication
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Conference Proceedings Citation Index - Science (CPCI-S)
EID WOS:000560232900014
WoS Category Green & Sustainable Science & Technology; Engineering, Manufacturing
Research Area Science & Technology - Other Topics; Engineering
PDF https://doi.org/10.1016/j.promfg.2019.04.015
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