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Evaluation of Ceramic Matrix Composite Technology for Aircraft Turbine Engine Applications

机译:陶瓷基复合材料在飞机涡轮发动机中的应用评价

摘要

The goals of the NASA Environmentally Responsible Aviation (ERA) Project are to reduce the NO(x) emissions, fuel burn, and noise from turbine engines. In order to help meet these goals, commercially-produced ceramic matrix composite (CMC) components and environmental barrier coatings (EBCs) are being evaluated as parts and panels. The components include a CMC combustor liner, a CMC high pressure turbine vane, and a CMC exhaust nozzle as well as advanced EBCs that are tailored to the operating conditions of the CMC combustor and vane. The CMC combustor (w/EBC) could provide 2700 F temperature capability with less component cooling requirements to allow for more efficient combustion and reductions in NOx emissions. The CMC vane (w/EBC) will also have temperature capability up to 2700 F and allow for reduced fuel burn. The CMC mixer nozzle will offer reduced weight and improved mixing efficiency to provide reduced fuel burn. The main objectives are to evaluate the manufacturability of the complex-shaped components and to evaluate their performance under simulated engine operating conditions. Progress in CMC component fabrication, evaluation, and testing is presented in which the goal is to advance from the proof of concept validation (TRL 3) to a system/subsystem or prototype demonstration in a relevant environment (TRL 6).
机译:NASA环境责任航空(ERA)项目的目标是减少NO(x)排放,燃油消耗和涡轮发动机的噪音。为了帮助实现这些目标,正在评估商业生产的陶瓷基复合材料(CMC)组件和环保涂层(EBC)作为零件和面板的情况。这些组件包括CMC燃烧器衬套,CMC高压涡轮机叶片和CMC排气喷嘴,以及针对CMC燃烧器和叶片的运行条件量身定制的高级EBC。 CMC燃烧器(w / EBC)可以提供2700 F的温度能力,并具有较少的组件冷却要求,以实现更有效的燃烧并减少NOx排放。 CMC叶片(带EBC)还将具有高达2700 F的温度能力,并可以减少燃油消耗。 CMC混合器喷嘴将减轻重量并提高混合效率,从而减少燃油消耗。主要目标是评估复杂形状部件的可制造性,并评估其在模拟发动机工况下的性能。提出了CMC组件制造,评估和测试方面的进展,其目标是从概念验证验证(TRL 3)到相关环境中的系统/子系统或原型演示(TRL 6)。

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