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Advancements in the Structural Stiffness and Damping of a Large Compliant Foil Journal Bearing: An Experimental Study

机译:大型柔顺箔径向轴承结构刚度和阻尼的研究进展:一项实验研究

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摘要

This paper presents the results of an experimental investigation into the dynamic structural stiffness and damping characteristics of a 21.6-cm (8.5 in.)-diameter compliant surface foil journal bearing. The goal of this development was to achieve high levels of damping without the use of oil, as is used in squeeze film dampers, while maintaining a nearly constant dynamic stiffness over a range of frequencies and amplitudes of motion. In the experimental work described herein, a full compliant foil bearing was designed, fabricated, and tested. The test facility included a non-rotating journal located inside the bearing. The journal was connected to an electrodynamic shaker so that dynamic forces simulating expected operating conditions could be applied to the structurally compliant bump foil elements. Excitation test frequencies to a maximum of 400 Hz at amplitudes of motion between 25.4 and 102 μm were applied to the damper assembly. During testing, both compressive preload and unidirectional static loads of up to 1335 and 445 N, respectively, were applied to the damper assembly. The experimental data from these tests were analyzed using both a single degree of freedom model and an energy method. These methods of data analysis are reviewed here and results are compared. Excellent agreement in results obtained from the two methods was achieved. Equivalent viscous damping coefficients as high as 1050 N. s /cm (600 lbf. s/in) were obtained at low frequencies. Dynamic stiffness was shown to be fairly constant with frequency.
机译:本文介绍了对 21.6 厘米(8.5 英寸)的动态结构刚度和阻尼特性的实验研究结果。-直径顺应的表面箔径向颈轴承。这一开发的目标是在不使用油的情况下实现高水平的阻尼,就像挤压膜阻尼器一样,同时在一系列频率和幅度的运动范围内保持几乎恒定的动态刚度。在本文描述的实验工作中,设计、制造和测试了一种完全柔顺的箔轴承。测试设施包括一个位于轴承内部的非旋转轴颈。轴颈连接到电动振动台,以便将模拟预期操作条件的动态力施加到结构顺应的凸块箔元件上。在25.4至102μm的运动幅度下,对阻尼器组件施加最大400 Hz的激励测试频率。在测试过程中,对阻尼器组件施加了分别高达 1335 N 和 445 N 的压缩预载荷和单向静载荷。使用单自由度模型和能量方法分析了这些测试的实验数据。本文对这些数据分析方法进行综述,并对结果进行比较。两种方法的结果非常一致。在低频下获得了高达1050 N.s/cm(600 lbf.s/in)的等效粘性阻尼系数。动态刚度随频率变化而相当恒定。

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