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Root iterative method for static performance analysis of aerostatic thrust bearings with multiple pocketed orifice-type restrictors based on ANSYS

机译:基于ANSYS的多重袋装孔型限制器的空气施推力轴承静态性能分析的根迭代方法

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Purpose The purpose of this paper is to present a novel numerical approach to analyze the static performance of aerostatic thrust bearings by adopting a general finite element method calculation program. Design/methodology/approach The characteristics of a gas film are described by the Reynolds equation and the pressure distribution is solved using the finite element method. A root iterative method is proposed to meet the requirement of the mass-conservation law because multiple pocketed orifice-type restrictors are treated as a series of special boundary conditions. Findings The static performance of a rotary table using aerostatic thrust bearings, including load carrying capacity and stiffness, can be predicted by the method; moreover, it can be further confirmed through experiments on the designed rotary table. Originality/value The method combining the finite element and root iterative methods is highly accurate and has a low time-cost for analyzing aerostatic thrust bearings with multiple pocketed orifice-type restrictors.
机译:目的本文的目的是通过采用一般有限元方法计算程序,提出一种新的数值方法来分析空气螺杆轴承的静态性能。设计/方法/方法通过雷诺等式描述气体膜的特性,并且使用有限元方法解决了压力分布。提出了一种根迭代方法,以满足大规模保护法的要求,因为多重袋装孔型限制器被视为一系列特殊边界条件。发现使用空气螺杆轴承的旋转台的静态性能,包括承载能力和刚度,可以通过该方法预测;此外,可以通过设计的旋转台上的实验进一步证实。原创性/值组合有限元和根迭代方法的方法是高精度的,并且具有低时间成本,用于分析具有多个袋装孔型限制器的空气静力推力轴承。

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