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Turbocharger vibration shows nonlinear jump

机译:涡轮增压器振动显示非线性跳跃

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Automotive turbochargers are known to operate into the self-excited unstable region. In the past these instabilities have been accepted as unavoidable, but recent developments in analysis and instrumentation may make it possible to reduce or eliminate them. A test stand has been developed at Virginia Tech to measure the vibrations of a 3.9 liter diesel engine stock turbocharger with both stock floating ring journal bearings and also custom design fixed geometry bearings. Vibration spectrum content clearly identifies the shaft instabilities and provides the basis for additional evaluation of future improved bearing design modifications. The current results, for custom fixed journal bearings, have clearly revealed a distinct jump with associated shift in the spectrum frequency content. This paper will document the recent tests of custom design fluid film bearings that have experienced this nonlinear jump condition.
机译:已知汽车涡轮增压器在自激不稳定区域中工作。在过去,这些不稳定性是不可避免的,但是分析和仪器的最新发展可能会减少或消除它们。弗吉尼亚理工大学已经开发了一个测试台,用于测量3.9升柴油发动机涡轮增压器的振动,该振动既带有浮动浮环轴颈轴承,也带有定制设计的固定几何轴承。振动频谱的内容清楚地表明了轴的不稳定性,并为进一步评估轴承设计的改进提供了基础。对于定制的固定轴颈轴承,当前的结果清楚地显示出频谱频率含量随相关偏移而明显跳变。本文将记录经历这种非线性跳跃条件的定制设计流体膜轴承的最新测试。

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