ANALYSIS OF NONLINEAR RIGIDITY CHARACTERISTICS OF AIR BLOWER COMPRESSOR ELASTIC SUPPORTS

M. Tkachuk, A. Grabovskiy, M. Tkachuk, O. Shut, Andrii Lipeiko, Egor Ovcharov, Ganna Cymbal, Volodymyr Veiler, I. Klochkov, Denys Kyslytsia
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Abstract

Vibrations of rotor systems are largely determined by elastic characteristics of supports. In the general case, the dependence of displacements on force for such supports is nonlinear. This applies to bearing supports of various types. In addition to bearings, elastic elements are also used in supports of rotor systems. They are designed to change the overall stiffness of the supports. The paper analyzes the radial stiffness of flexible ring dampers used in rotor supports. For this, two main approaches are proposed. The first is a conventional simulation of this problem of contact mechanics using the finite element method. The second is an analytical method that can be used as an alternative to expensive numerical calculations. This method is based on the principle of minimum additional energy. A special closed-form variational formulation is developed using the Euler-Bernoulli beam approximation for an elastic ring and a simplified model of normal contact on the ring flanges. It was shown that the surface tolerances of parts have a significant effect on the radial response of a flexible ring, which can become nonlinear. Tight fit of the ring on both sides makes it much stiffer, and non-tight fit leads to free movement of the rotor and much weaker damping of its movement. Both methods gave results that are consistent for the considered cases. By varying their design parameters, it is possible to adjust the rotor systems from critical modes of operation. Keywords: rotor system, elastic support, rigidity, finite element analysis, stress-strain state, contact interaction, principle of minimum additional energy
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鼓风机压缩机弹性支架的非线性刚度特性分析
转子系统的振动很大程度上取决于支承的弹性特性。在一般情况下,这种支座的位移对力的依赖是非线性的。这适用于各种类型的轴承支撑。除了轴承,弹性元件也用于转子系统的支撑。它们的设计是为了改变支撑的整体刚度。分析了用于转子支承的柔性环阻尼器的径向刚度。为此,提出了两种主要方法。第一种方法是用有限元法对接触力学问题进行常规模拟。第二种是一种分析方法,可以用来替代昂贵的数值计算。该方法基于最小附加能量原理。利用弹性环的欧拉-伯努利梁近似和环缘法向接触的简化模型,建立了一个特殊的闭型变分公式。结果表明,零件的表面公差对柔性环的径向响应有重要影响,并可能产生非线性响应。环两侧的紧密配合使其更硬,而非紧密配合导致转子的自由运动和更弱的运动阻尼。两种方法给出的结果都与所考虑的情况一致。通过改变他们的设计参数,有可能调整转子系统的关键模式的操作。关键词:转子系统,弹性支承,刚度,有限元分析,应力-应变状态,接触相互作用,最小附加能量原理
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