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TURBINE ENGINE HOT SECTION PROGNOSTICS

机译:涡轮发动机热断面预测

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摘要

The design life of engine hot section components is typically shorter than their cold section counterparts, due to the fact that they have to operate under elevated temperatures and stresses. Previously unseen failure modes are being discovered due to the increasing demand for modern engines to operate at higher temperatures and stresses, coupled with the use of new materials for the engines. These unanticipated failure modes can keep engines from achieving their expected design life and may even result in loss of engines. This paper describes an integrated prognostic approach designed to monitor hot section component degradation under elevated temperature, pressure, and corrosion, as well as to infer their useful remaining life. This approach combines both safe life and damage tolerance concepts, and takes into account of all the common hot section failure mechanisms such as creep, oxidation, low and high cycle fatigue, and corrosion. Successful integration of this approach into modern Prognostic and Health Management (PHM) systems can reduce the cycle cost for both the military and the commercial gas turbine engines while maintaining the equivalent safety.
机译:发动机热段部件的设计寿命通常比冷段部件的设计寿命短,这是因为它们必须在升高的温度和压力下运行。由于对现代发动机在更高的温度和压力下运行的需求不断增加,加上对发动机使用了新材料,人们发现了以前看不见的故障模式。这些意外的故障模式可能会使发动机无法达到预期的设计寿命,甚至可能导致发动机损失。本文介绍了一种综合的预测方法,该方法旨在监视高温区域在高温,高压和腐蚀下的降解,并推断其有用的剩余寿命。这种方法结合了安全寿命和损害容忍的概念,并考虑了所有常见的热区破坏机制,例如蠕变,氧化,低和高周疲劳以及腐蚀。成功地将此方法集成到现代的预后和健康管理(PHM)系统中,可以降低军用和商用燃气涡轮发动机的周期成本,同时保持同等的安全性。

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