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Pressure Actuated Leaf Seals for Improved Turbine Shaft Sealing

机译:压力驱动的叶片密封件,用于改善涡轮轴密封

摘要

This presentation introduces a shaft seal in which leaf seal elements are constructed from slotted shim material formed and layered into a frusto-conical assembly. Limited elastic deflection of seal leaves with increasing system pressure close large startup clearance to a small, non-contacting, steady state running clearance. At shutdown seal elements resiliently retract as differential seal pressure diminishes. Large seal clearance during startup and shutdown provides a mechanism for rub avoidance. Minimum operating clearance improves performance and non-contacting operation promises long seal life. Design features of this seal, sample calculations at differential pressures up to 2400 psid and benefit comparison with brush and labyrinth seals is documented in paper, AIAA 2005 3985, presented at the Advanced Seal Technology session of the Joint Propulsion Conference in Tucson this past July. In this presentation use of bimetallic leaf material will be discussed. Frictional heating of bimetallic leaf seals during a seal rub can relieve the rub condition to some extent with a change in seal shape. Improved leaf seal rub tolerance is expected with bimetallic material.
机译:本介绍介绍了一种轴封,其中叶片密封元件由开槽的垫片材料制成,该垫片材料形成并分层为截头圆锥形组件。随着系统压力的增加,密封叶片的弹性挠度有限,将较大的启动间隙缩小为较小的非接触式稳态运行间隙。停机时,随着差压密封压力减小,密封元件会弹性回缩。启动和关闭过程中的大密封间隙提供了避免摩擦的机制。最小的工作间隙可提高性能,非接触式操作可保证较长的密封寿命。该密封件的设计特征,在高达2400 psid的压差下的样本计算以及与刷子和迷宫式密封件的优势比较记录在文件AIAA 2005 3985中,该文件于今年7月在图森联合推进会议的高级密封技术会议上发表。在本演示中,将讨论双金属叶片材料的使用。密封件摩擦期间,双金属叶片密封件的摩擦加热可在一定程度上缓解密封件形状变化的摩擦状况。双金属材料有望提高叶片密封的耐摩擦性。

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    Grondahl Clayton;

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  • 年度 2006
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