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STABILITY-OPTIMIZED CLEARANCE CONFIGURATION OF FLUID-FILM JOURNAL BEARINGS

机译:流体膜轴颈轴承的稳定性优化的间隙配置

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摘要

A clearance configuration of fluid-film journal bearings is optimized in a sense of enhancing the stability of a full circular bearing at high rotational speeds. A performance index is chosen as the sum of the squared whirl-frequency ratios over a wide range of eccentricity ratios, and a Fourier series is used to represent an arbitrary configuration of fluid-film bearings. An optimization problem is then formulated to find the Fourier coefficients to minimize the index. The whirl-frequency ratio is inversely proportional to the stability threshold speeds of a Jeffcott rotor. The short bearing approximation is used to simplify a mathematical model that describes a pressure distribution developed in a fluid-film bearing. The designed bearing cannot destabilize the Jeffcott rotor at any high rotating speed subject to the short-bearing assumption and significantly reduces the size of the unstable region for a finite-length bearing with a small length-to-diameter ratio.
机译:在增强全圆形轴承在高转速下的稳定性的意义上,优化了液膜轴颈轴承的游隙配置。选择性能指标作为在大范围的偏心比上的平方摆频比的总和,并使用傅立叶级数表示流体膜轴承的任意配置。然后制定一个优化问题以找到傅立叶系数以最小化该指标。涡流频率比与Jeffcott转子的稳定性阈值速度成反比。短轴承近似值用于简化描述流体膜轴承中形成的压力分布的数学模型。在短轴承假设的情况下,设计的轴承无法在任何高转速下使Jeffcott转子失去稳定,并且对于长径比较小的有限长度轴承,显着减小了不稳定区域的尺寸。

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