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Development of a Thin Gauge Metallic Seal for Gas Turbine Engine Applications to 1700 F

机译:开发用于1700 F燃气轮发动机的薄规格金属密封件

摘要

The goal of doubling thrust-to-weight ratio for gas turbine engines has placed significant demands on engine component materials. Operating temperatures for static seals in the transition duct and turbine sections for instance, may well reach 2000 F within the next ten years. At these temperatures conventional age-hardenable superalloys lose their high strength via overaging and eventual dissolution of the gamma precipitate, and are well above their oxidation stability limit. Conventional solid-solution-strengthened alloys offer metallurgical stability, but suffer from rapid oxidation and little useful load bearing strength. Ceramic materials can theoretically be used at these temperatures, but manufacturing processes are in the developmental stages.
机译:使燃气涡轮发动机的推力重量比增加一倍的目标对发动机部件材料提出了很高的要求。例如,过渡管道和涡轮机部分中的静态密封件的工作温度在未来十年内可能会达到2000F。在这些温度下,常规的可时效硬化的高温合金会因过时效和伽马沉淀的最终溶解而失去其高强度,并且远高于其氧化稳定性极限。常规的固溶强化合金具有冶金稳定性,但具有快速氧化和几乎没有有用的承载强度的缺点。理论上可以在这些温度下使用陶瓷材料,但是制造工艺尚处于开发阶段。

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    England Raymond O.;

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  • 年度 2006
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