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Modelling and Analysis of Elastic and Thermal Deformations of a Hydrodynamic Radial Journal Bearing

机译:流体动力径向轴颈轴承弹性和热变形的建模与分析

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摘要

Journal bearings are widely used in heavy industry and in internal combustion engine applications. There is a need to increase the power density of various machine parts which leads to increased bearing loads and reduced lubrication film thicknesses. This type of development may increase deformations on the bearing surfaces which need to be considered in the bearing design process.The main purpose of this work was to develop a parameterized calculation model for hydrodynamic radial journal bearings which takes into account elastic and thermal deformations of the bearing surfaces. Hydrodynamic calculations were based on the numerical solving of the Reynolds equation by assuming rigid surfaces. Elastic and thermal deformations of the bearing and shaft surfaces were calculated by using the finite element method. It is concluded that elastic and thermal deformations are partly canceling each other out at the loaded side of the bearing and depending on the sliding speed and the external normal force either one of them could be more significant.
机译:轴颈轴承广泛应用于重型工业和内燃机应用。需要增加各种机器部件的功率密度,这导致增加的轴承载荷和减小的润滑膜厚度。这种类型的开发可以增加需要在轴承设计过程中考虑的轴承表面上的变形。本工作的主要目的是为流体动力径向轴颈轴承开发参数化计算模型,该轴承考虑了弹性和热变形轴承表面。通过假设刚性表面,流体动力学计算基于雷诺方程的数值求解。通过使用有限元方法计算轴承和轴表面的弹性和热变形。得出结论,弹性和热变形部分在轴承的装载侧部分彼此抵消,并且取决于滑动速度和外部正常力,其中一个可以更显着。

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