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High temperature braided rope seals for static sealing applications

机译:高温编织绳密封,用于静态密封应用

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摘要

Achieving efficiency and performance goals of advanced aircraft and industrial systems are leading designers to implement high temperature materials such as ceramics and intermetallics. Generally these advanced materials are applied selectively in the highest temperature sections of the engine system including the combustor and high pressure turbine, amongst others. Thermal strains that result in attaching the low expansion-rate components to high expansion rate superalloy structures can cause significant life reduction in the components. Seals are being designed to both seal and to serve as compliant mounts allowing for relative thermal growths between high temperature but brittle primary structures and the surrounding support structures. Designers require high temperature, low-leakage, compliant seals to mitigate thermal stresses and control parasitic and cooling airflow between structures. NASA is developing high temperature braided rope seals in a variety of configurations to help solve these problems. This paper will describe the types of seals being developed, describe unique test techniques used to assess seal performance, and present leakage flow data under representative pressure, temperature and scrubbing conditions. Feasibility of the braided rope seals for both an industrial tube seal and a turbine vane seal application is also demonstrated.
机译:先进飞机和工业系统的效率和性能目标的实现促使设计人员采用高温材料,例如陶瓷和金属间化合物。通常,这些先进材料选择性地应用于发动机系统的最高温度区域,其中包括燃烧室和高压涡轮。导致将低膨胀率部件附着到高膨胀率高温合金结构上的热应变会导致部件的使用寿命大大缩短。密封件被设计成既密封又用作顺应性安装件,从而允许高温但易碎的主结构和周围的支撑结构之间的相对热量增长。设计人员需要高温,低泄漏的顺应性密封件,以减轻热应力并控制结构之间的寄生气流和冷却气流。 NASA正在开发各种配置的高温编织绳密封,以帮助解决这些问题。本文将描述正在开发的密封件的类型,描述用于评估密封件性能的独特测试技术,并提供在代表性压力,温度和洗涤条件下的泄漏流量数据。还展示了编织绳密封件在工业管密封件和涡轮叶片密封件应用中的可行性。

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