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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Fundamental tribological experiments and antifriction design of novel superconducting tilting pad bearing for liquid rocket engine
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Fundamental tribological experiments and antifriction design of novel superconducting tilting pad bearing for liquid rocket engine

机译:用于液体火箭发动机新型超导倾斜垫轴承的基本摩擦学实验和抗膛设计

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摘要

Novel superconducting tilting pad bearing can realize the compound of superconducting magnetic force and hydrodynamic fluid-film force in liquid rocket engine and possesses the advantages of larger bearing capacity and higher stiffness. The indispensable small operational clearance for the bearing would possibly cause rubbing phenomena between superconducting stator and magnet rotor under impact loads. Three Y1.8Ba2.4Cu3.4Ox bulk superconductors with different crystal domains are used to study the dry friction coefficients between superconductor and neodymium iron boron (NdFeB) magnet with nickel coating. In order to improve the fundamental tribological performance of the novel bearing, upper surface of modified superconducting tilting pad is covered by thin impregnated graphite and the nickel coating of magnet is replaced by chromium coating. Pin-on-disc experimental results indicate that the antifriction design method is effective and safe for liquid rocket engine. This study can promote the application process of novel superconducting bearing in a new generation of liquid rocket engine in China.
机译:新型超导倾斜焊盘轴承可以实现液体火箭发动机中超导磁力和流动力流体膜力的化合物,具有较大承载力和更高刚度的优点。轴承的不可或缺的小型操作间隙可能导致超导定子和磁体转子在冲击载荷下的摩擦现象。具有不同晶域的三个Y1.8Ba2.4cu3.4xox块状超导体用于研究超导体和钕铁硼(Ndfeb)磁体的干摩擦系数与镍涂层。为了提高新型轴承的基本摩擦学性能,改性超导倾斜垫的上表面被薄的浸渍石墨覆盖,磁体的镍涂层被铬涂层代替。磁盘盘实验结果表明,液体火箭发动机的防抗率设计方法是有效和安全的。该研究可以促进新一代液体火箭发动机新型超导轴承的应用过程。

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