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Rotordynamic and friction loss measurements on a high speed Laval rotor supported by floating ring bearings

机译:浮动环轴承支撑的高速Laval转子的转子动力学和摩擦损失测量

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摘要

Floating ring bearings are the commonly used type of bearing for automotive turbochargers. The automotive industry continuously investigates how to reduce the bearing friction losses and how to create silent turbochargers. Many of these studies involve creating a numerical model of the rotor-bearing system and performing validation on a test bench on which a turbocharger is driven by hot gases. This approach, however, involves many uncertainties which diminish the validity of the measurement results. In this study, we present a test setup in which these uncertainties are minimized. The measurement results show the behavior of the floating ring bearing as a function of oil feed pressure, oil feed temperature, rotor unbalance and bearing clearances. Next to an increased validity, the test setup provides measurement data with good repeatability and can therefore represent a case study which can be used for validation of rotor-bearing models
机译:浮动环轴承是汽车涡轮增压器的常用轴承类型。汽车工业一直在研究如何减少轴承摩擦损失以及如何制造静音涡轮增压器。这些研究中的许多研究都涉及创建转子轴承系统的数值模型,并在由热气体驱动涡轮增压器的测试台上进行验证。但是,这种方法涉及许多不确定性,从而降低了测量结果的有效性。在这项研究中,我们提出了一种将这些不确定性降至最低的测试装置。测量结果表明,浮动环轴承的性能随进油压力,进油温度,转子不平衡和轴承游隙的变化而变化。除了提高有效性外,测试装置还提供具有良好可重复性的测量数据,因此可以代表一个案例研究,可用于验证转子轴承模型

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