润滑油供应条件对挤压膜阻尼器压力分布的影响分析

D. K. Novikov, N. S. Shliandina
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引用次数: 0

摘要

减少飞机发动机振动的最常用方法之一是使用阻尼装置。挤压膜减震器是飞机发动机设计中应用最广泛的减震器。挤压膜阻尼器的效率取决于其阻尼能力,除其他参数外,阻尼能力取决于向阻尼器供油的静压。本文提出了一种根据端面间隙几何尺寸和润滑油供给压力值计算动液阻尼器进给槽静压的方法。确定了影响阻尼器端面间隙静压的参数。计算了不同的水动力阻尼器端间隙值,供应端口的数量和直径。文中提出的所有计算都是针对具有末端间隙和节流阀的短挤压膜阻尼器进行的。为了进行参数比较,还计算了长挤压膜阻尼器的动压力。结果表明,端部间隙的大小对挤压膜阻尼器槽内压力的影响最大。研究还表明,间隙内的动压力可能明显高于供应的静压,并可能导致润滑膜的失效。此外,研究还表明,阻尼器端面间隙的大小会影响润滑剂通过阻尼器的流量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the influence of lubricant supply conditions on the pressure distribution in squeeze-film dampers
One of the most common ways to reduce vibration in aircraft engines is the use of damping devices. Squeeze-film dampers are the dampers most widely used in aircraft engine designs. The efficiency of squeeze-film dampers is determined by their damping capacity which depends, among other parameters, on the static pressure of oil supply to the damper. This article proposes a method for calculating the static pressure in the feed groove of a hydrodynamic damper depending on the geometric size of the end gap and the value of the lubricant supply pressure. The parameters influencing the static pressure in the damper end gap are determined. Calculations are performed for different values of a hydrodynamic damper end gap, the number and diameter of the supply ports. All calculations presented in the article were performed for a short squeeze-film damper with end gaps and throttles. For comparison of parameters, the dynamic pressure was also calculated for a long squeeze-film damper. It was shown that the size of the end gap has the strongest impact on the pressure in the groove of a squeeze-film damper. It was also shown that the dynamic pressure in the gap may be significantly higher than the static pressure of supply, and failure of the lubricating film may result. In addition, it was also shown that the size of the damper end clearance affects the lubricant flow through the damper.
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