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HIGH SPEED INTERACTION BETWEEN AN ABRADABLE COATING AND A LABYRINTH SEAL IN TURBO-ENGINE APPLICATION

机译:涡轮发动机应用中可磨损涂层和迷宫密封之间的高速相互作用

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The design of gas turbine aims to enhance the engine efficiency by developing new materials able to work at higher temperatures, or to promote new technologies, fuel management and airflow direction. One solution is the reduction of clearance between rotary parts in turbomachinery air systems. This clearance reduction causes direct interactions in the secondary air system of a turbo-engine when a rotary seal, called labyrinth seal, rubs on the turbo-engine as a result of successive starts and stops, thermal expansions and vibrations. The purpose of the present paper is to study interaction phenomena between an abradable material (Al-Si 6%) and a nickel alloy (718 alloy) during high speed contacts. A high speed test rig has been designed to simulate interactions between labyrinth seals and abradable coatings in similar operating conditions of turbo-engine in terms of geometries, rotational and linear velocities. A series of experiments has been carried out in order to get a first assessment under different turbo-engine operating conditions. Experimental results are presented using visual observations of test samples, quantitative approaches of interacting forces and micrographic observations. This work provides new basic data for a preliminary study of the interaction between a labyrinth seal teeth tips and its casing for turbo-engine applications.
机译:燃气轮机的设计旨在通过开发能够在更高温度下工作的新材料来提高发动机效率,或促进新技术,燃料管理和气流方向。一种解决方案是涡轮机械空气系统旋转部件之间的间隙降低。这种间隙减少导致涡轮发动机二次空气系统中的直接相互作用,当旋转密封件称为迷宫式密封,由于连续开始和停止,热膨胀和振动而导致涡轮发动机上摩擦。本文的目的是在高速触点期间研究可磨耗材料(Al-Si 6%)和镍合金(718合金)之间的相互作用现象。在几何形状,旋转和线性速度方面,设计了高速试验台在涡轮发动机的类似操作条件下模拟了迷宫密封和可磨损涂层之间的相互作用。已经进行了一系列实验,以便在不同的涡轮发动机操作条件下获得第一次评估。使用视觉观察试验样品的实验结果,相互作用的互动力和显微观测的定量方法。这项工作提供了新的基本数据,以初步研究迷宫密封齿尖端及其涡轮发动机应用壳体之间的相互作用。

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