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Experimental Analysis of the Gas Film Damping Effect in an Aerostatic Guideway under Microscale

机译:微尺寸在空气胶导轨中气膜阻尼效应的实验分析

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摘要

This article studies the mechanism of gas film damping on the aerostatic guideway system at a microscale with the modified Reynolds equation. The slide film damping force due to the fluid viscous effect is calculated, and the squeeze damping force caused by the gas compression and escape between two plates is analyzed. The damping ratio in the calculation model for the slide film damping is compared with the calculated results from the experiment and the finite element analysis results. Using the results of the study, the optimal supply pressure is designed. The method applied in this article provides the theoretical basis for the analysis and solution of the dynamic performance of an aerostatic guideway.
机译:本文研究了Microssifale与改进的雷诺等式的气体膜阻尼气体膜阻尼机理。 计算由于流体粘性效果引起的滑动膜阻尼力,并分析由气体压缩和在两个板之间逸出引起的挤压阻尼力。 将滑动膜阻尼计算模型中的阻尼比与实验的计算结果和有限元分析结果进行比较。 使用该研究的结果,设计了最佳供应压力。 本文中应用的方法提供了分析和解决空气静管导轨的动态性能的理论依据。

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