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An experimental study of the high speed interaction between a labyrinth seal and an abradable coating in a turbo-engine application

机译:涡轮发动机应用中迷宫式密封件与耐磨涂层之间高速相互作用的实验研究

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摘要

A new high-speed test rig was designed to simulate the interactions between labyrinth seals and abradable coatings in similar turbo-engine operating conditions. To determine a solution for turbo-engine efficiency enhancement, we investigated the clearance reduction between the rotary parts in air systems, the successive starts and stops, the thermal expansion and the vibrations that might cause direct rub interactions between a rotary seal, known as a labyrinth seal, and a turbo-engine housing coated with a sacrificial abradable material. High interaction speeds from 0 to 130 m s−1 were obtained using a 5-axis milling machine fitted with a unique magnetic bearings spindle developed specifically for the study. The purpose of this paper is to study the interaction phenomena between an abradable material (Al–Si 6%) and a nickel alloy (Alloy 718) to obtain a first contact assessment under different turbo-engine operating conditions. The experimental results are first presented by visual observations of the posttest samples, as specified by accurate profile measurements. A quantitative approach to the interaction forces recorded during the tests and micrographic observations complete the preliminary study. This work provides new basic data for a preliminary study of the interaction between labyrinth seal teeth tips and abradable coatings in turbo-engine applications.
机译:设计了一种新的高速试验台,以模拟在类似涡轮发动机工况下迷宫式密封件与耐磨涂层之间的相互作用。为了确定提高涡轮发动机效率的解决方案,我们研究了空气系统中旋转零件之间的间隙减小,连续的启停,热膨胀以及可能引起旋转密封件之间直接摩擦相互作用的振动。迷宫式密封件,以及涂有牺牲性耐磨材料的涡轮发动机壳体。使用配备有专门为该研究开发的独特磁性轴承主轴的5轴铣床,可获得从0到130 m s-1的高相互作用速度。本文的目的是研究可磨损材料(6%的Al-Si)和镍合金(Alloy 718)之间的相互作用现象,以获得在不同涡轮发动机工况下的首次接触评估。实验结果首先通过目测观察后测试样品来呈现,这是由精确的轮廓测量指定的。在测试和显微观察期间记录的相互作用力的定量方法可以完成初步研究。这项工作为涡轮发动机应用中迷宫式密封齿尖与耐磨涂层之间的相互作用的初步研究提供了新的基础数据。

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