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Experimental Evaluation of Hydrodynamic Bearings for a High Speed Turbocharger

机译:高速涡轮增压器液力轴承的实验评估

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Many high speed turbochargers are known to operate with limit cycle vibration as a result of fluid-film instability. The goal of this research was to achieve a stable synchronous response with a minimum of self-excited non-synchronous contribution. Those vibration components excited by the engine harmonics and exhaust pressure pulsations were not the target of this research. This paper will review the experimental results of the fixed geometry fluid-film bearing designs selected to replace the standard stock floating-ring design. In addition, the paper documents a novel radial tilting pad bearing concept that was designed to replace the fixed geometry bearings, with a minimum of modification to the stock bearing housing. A summary of the on-engine testing over the past seven years is documented in this paper.
机译:已知许多高速涡轮增压器由于流体膜的不稳定性而具有极限循环振动。这项研究的目的是实现具有最小的自激非同步贡献的稳定同步响应。由发动机谐波和排气压力脉动激发的那些振动分量不是本研究的目标。本文将回顾固定几何形状的液膜轴承设计的实验结果,该设计被选择用来替代标准的标准浮环设计。此外,本文还介绍了一种新颖的径向可倾瓦轴承概念,该概念旨在替代固定几何轴承,而对备用轴承壳体进行的改动最少。本文记录了过去七年来的发动机测试摘要。

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