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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Static Characteristics of High-Temperature Superconductor and Hydrodynamic Fluid-Film Compound Bearing for Rocket Engine
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Static Characteristics of High-Temperature Superconductor and Hydrodynamic Fluid-Film Compound Bearing for Rocket Engine

机译:火箭发动机高温超导体和液力流体膜复合轴承的静态特性

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摘要

With the application prospect of a new generation of a liquid rocket engine and the status that system safety and reliability are weakened by the friction and wear of existing rolling bearings, a kind of compound bearing for axial balance is proposed in this paper, which is a combination of a high-temperature-superconducting bearing and a hydrodynamic fluid-film bearing. The most important feature of the compound bearing lies in a kind of “superconducting tilting pad” structure. The structure of the compound bearing and its detailed feasible application scheme in a rocket engine are given. The static characteristics of the compound bearing based on a decoupling analytical method are studied, such as the pressure distribution, the temperature distribution of the film, the minimum film thickness, and the bearing capacity. Theoretical results indicate that a compound of a high-temperature superconductor and a hydrodynamic fluid film is an effective approach to improve the static characteristics of bearings for a rocket engine.
机译:鉴于新一代液体火箭发动机的应用前景和现有滚动轴承的摩擦磨损削弱系统安全性和可靠性的现状,本文提出了一种用于轴向平衡的复合轴承。高温超导轴承和流体动力液膜轴承的组合。复合轴承的最重要特征在于一种“超导倾斜垫”结构。给出了复合轴承的结构及其在火箭发动机中的详细可行方案。研究了基于解耦分析方法的复合轴承的静态特性,例如压力分布,薄膜的温度分布,最小薄膜厚度和承载能力。理论结果表明,高温超导体和流体动力流体膜的混合物是改善火箭发动机轴承静态特性的有效方法。

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