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Dynamic performance of foil bearings with a quadratic stiffness model

机译:具有二次刚度模型的箔轴承的动态性能

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Hydrodynamic foil bearings found various applications in high speed small turbomachinery due to several advantages compared with traditional oil lubricated bearing and rolling element bearings such as high speed, pollution free, high temperature, long service life, etc. Corrugated bump foils made of thin sheet metal is the most widely adopted foil structure used in many commercial foil bearings. However, due to various factors during manufacturing process of the foil structure and mounting methods of the foil structure on to the bearing sleeve, measured stiffness curves of the foil structure show very strong non-linearity. The non-linearity of the foil structure is often neglected in most simulation studies in the past, and single value of bump stiffness combined with appropriate structural loss factor were used in these simulation studies. Based on measured non-linear structural stiffness of entire foil bearing, a quadratic stiffness model of individual bump foil was derived and utilized in transient rotordynamic simulations in time domain by solving Reynolds equation, rotor equations of motion, and bump deflections together. The simulation results using the quadratic bump stiffness model were compared with those using linear bump stiffness models. (C) 2016 Elsevier B.V. All rights reserved.
机译:与传统的油润滑轴承和滚动元件轴承相比,流体动力箔片轴承在高速小型涡轮机械中具有多种应用,例如,高速,无污染,高温,使用寿命长等优点。薄金属波纹波纹箔片是许多商业箔轴承中使用最广泛的箔结构。然而,由于在箔结构的制造过程中以及箔结构在轴承套上的安装方法期间的各种因素,箔结构的测得的刚度曲线显示出非常强的非线性。在过去的大多数模拟研究中,箔结构的非线性通常被忽略,并且在这些模拟研究中使用了凸点刚度的单个值与适当的结构损耗因子的组合。基于测量的整个箔轴承的非线性结构刚度,推导了单个凸块箔的二次刚度模型,并将其用于雷诺方程,转子运动方程和凸块挠度的时域瞬态转子动力学仿真。将使用二次碰撞刚度模型的仿真结果与使用线性碰撞刚度模型的仿真结果进行了比较。 (C)2016 Elsevier B.V.保留所有权利。

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