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Effect of Surface Impulsive Thermal Loads on Fatigue Behavior of Constant Volume Propulsion Engine Combustor Materials

机译:表面脉冲热负荷对等体积推进发动机燃烧器材料疲劳性能的影响

摘要

The development of advanced high performance constant-volume-combustion-cycle engines (CVCCE) requires robust design of the engine components that are capable of enduring harsh combustion environments under high frequency thermal and mechanical fatigue conditions. In this study, a simulated engine test rig has been established to evaluate thermal fatigue behavior of a candidate engine combustor material, Haynes 188, under superimposed CO2 laser surface impulsive thermal loads (30 to 100 Hz) in conjunction with the mechanical fatigue loads (10 Hz). The mechanical high cycle fatigue (HCF) testing of some laser pre-exposed specimens has also been conducted under a frequency of 100 Hz to determine the laser surface damage effect. The test results have indicated that material surface oxidation and creep-enhanced fatigue is an important mechanism for the surface crack initiation and propagation under the simulated CVCCE engine conditions.
机译:先进的高性能恒定体积燃烧循环发动机(CVCCE)的开发要求发动机组件的坚固设计,使其能够在高频热和机械疲劳条件下承受严酷的燃烧环境。在这项研究中,已经建立了模拟发动机试验台,以评估候选发动机燃烧器材料Haynes 188在叠加的CO2激光表面脉冲热负荷(30至100 Hz)以及机械疲劳负荷(10)下的热疲劳行为。赫兹)。还已经在100 Hz的频率下对某些激光预曝光样品进行了机械高周疲劳(HCF)测试,以确定激光表面损伤的影响。测试结果表明,在模拟的CVCCE发动机条件下,材料表面氧化和蠕变增强疲劳是表面裂纹萌生和扩展的重要机制。

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