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Probabilistic structural analysis of ultra efficient engine technology ceramic matrix composite combustor liners

机译:超高效发动机技术陶瓷矩阵复合燃烧器衬里的概率结构分析

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A probabilistic structural analysis of NASA's ultra efficient engine technology (UEET) ceramic matrix composite (CMC) combustor liners has been completed using the NESTEM Code. The purpose was to identify the maximum stress locations and perform a probabilistic structural analysis at these locations on the inner and outer liners for given thermal loadings to determine the probability of failure at these locations. The probabilistic structural analysis included quantifying the influence of uncertainties in material stiffness properties and the coefficient of thermal expansion. Results of the analysis indicate that the circumferential component of stress was the most severe stress component and that the inner liner was more likely to fail than the outer liner. Tests of the combustor liners by general electric aerospace engines (GEAE) qualitatively support the results of this analysis.
机译:NASA超高效发动机技术(UEE)陶瓷矩阵复合(CMC)燃烧器衬里的概率结构分析已经完成了NESTEM代码。目的是识别最大应力位置,并且在内衬的这些位置处执行概率结构分析,用于给定热载体以确定这些位置的故障可能性。概率结构分析包括量化不确定性在材料刚度特性和热膨胀系数中的影响。分析结果表明应力的圆周分量是最严重的应力成分,并且内衬更可能比外衬垫失效。通用电气航空航天发动机(GEAE)的燃烧器衬里的测试定性支持该分析的结果。

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