首页> 外文会议>STLE/ASME Joint International Tribology Conference >ROTORDYNAMICS OF SMALL TURBOCHARGERS SUPPORTED ON FLOATING RING BEARINGS - HIGHLIGHTS IN BEARING ANALYSIS AND EXPERIMENTAL VALIDATION
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ROTORDYNAMICS OF SMALL TURBOCHARGERS SUPPORTED ON FLOATING RING BEARINGS - HIGHLIGHTS IN BEARING ANALYSIS AND EXPERIMENTAL VALIDATION

机译:浮环轴承支撑的小涡轮增压器的旋转性 - 轴承分析和实验验证的亮点

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Turbochargers (TCs) improve performance in internal combustion engines. Due to low production costs, TC assemblies are supported on floating ring bearings (FRBs) and showing subsynchronous motions of significant amplitudes over a wide speed range. However, the subsynchronous whirl motions generally reach a limit cycle enabling continuous operation. The paper advances progress on the validation against measurements of linear and nonlinear rotordynamic models for predicting shaft motions of automotive TCs. A comprehensive thermohydrodynamic model predicts the floating ring speeds, inner and outer film temperatures and lubricant viscosity changes, clearances thermal growth, operating eccentricities for the floating ring and journal, and linearized force coefficients. A nonlinear rotordynamics program integrates the FRB lubrication model for prediction of system time responses under actual operating conditions. Measurements of shaft motion in a TC unit driven by pressurized air demonstrate typical oil-whirl induced instabilities and, due to poor lubricant conditions, locking of the floating rings at high shaft speeds. Nonlinear predictions are in good agreement with the measured total amplitude and subsynchronous frequencies when implementing the measured ring speeds into the computational model. The computational tools aid to accelerate TC prototype development and product troubleshooting.
机译:涡轮增压器(TCS)提高内燃机的性能。由于生产成本低,TC组件支撑在浮动环轴承(FRB)上,并在宽速度范围内显示显着振幅的次生运动。然而,子同步旋转动作通常达到限制循环,从而实现连续操作。本文提出了针对线性和非线性旋转动力学模型的验证验证的进展预测汽车TCS的轴运动。综合热流动力学模型预测浮动环速度,内部和外膜温度和润滑剂粘度变化,间隙热生长,用于浮环的操作偏心,以及线性化力系数。非线性旋转基单件程序集成了FRB润滑模型,以便在实际操作条件下预测系统时间响应。由加压空气驱动的TC单元中的轴运动的测量展示了典型的油旋诱导的不稳定性,并且由于润滑剂条件不佳,在高轴速度下锁定浮环。在将测量的环速度进入计算模型时,非线性预测与测量的总幅度和子同步频率很好。计算工具有助于加速TC原型开发和产品故障排除。

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