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Bending Vibration of an Automotive Turbocharger under the Influence of Rotor Imbalance

机译:转子不平衡影响下汽车涡轮增压器的振动

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As one of the most common faults, rotor imbalance in a turbocharger will give rise to the bending vibration, which may cause damages to and even destroy the bearings and impellers. Therefore, it is necessary to detect rotor imbalance as early as possible. The present paper develops a mathematical model for investigating the rotor dynamic characteristics of a commercial automotive turbocharger supported on floating ring bearings. In order to reveal the behaviours of oil film instabilities the model takes into account nonlinear hydrodynamic oil film forces instead of linearization. A two-dimensional elastic collision model is introduced to deal with the rub-impact process between such solid parts as journal, floating ring and the bearing. In addition, the change of clearances in floating ring bearing due to temperature increases are also estimated by ignoring the variation of lubricating oil viscosity. Following model development, a numerical simulation is implemented to study the bending vibration of the turbocharger and floating ring bearing under the influence of rotor imbalance. This study paves a foundation for the monitoring of turbochargers.
机译:作为最常见的故障之一,涡轮增压器中的转子不平衡会产生弯曲振动,这可能导致损坏甚至破坏轴承和叶轮。因此,必须尽早检测转子不平衡。本文开发了一种用于研究支持在浮动环形轴承上的商业汽车涡轮增压器的转子动态特性的数学模型。为了揭示油膜不稳定的行为,模型考虑了非线性流体动力膜力而不是线性化。引入了一种二维弹性碰撞模型,以应对这种固体部件之间的摩擦冲击过程作为轴颈,浮动环和轴承。另外,通过忽略润滑油粘度的变化,还估计了由于温度升高而导致的浮环轴承的间隙的变化。在模型开发之后,实施了数值模拟,以研究涡轮增压器和浮动环轴承在转子不平衡的影响下的弯曲振动。本研究为监测涡轮增压器铺平了基础。

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