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Thermal Strength Evaluation of the Super Alloy Structure with Various Thermal Insulation Performancesby FEM and Stress-rupture Experiment

机译:有限元法和应力破坏试验评价具有不同绝热性能的超合金结构的热强度

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The combustor chamber, diffuser and nozzle are the main components of the ramjet engine. In this study, the thermal strength of the combustion chamber of the ramjet engine was evaluated. The combustion chamber consists of an Inconel alloy 718 liner and a 17-4Ph stainless steel housing. The liner is rapidly heated to a high temperature. The heated liner is cooled with a film cooling method that forms a cold boundary layer to separate the hot gas from the surface of the liner. The thermo-structural analysis is evaluated the thermal strength of super alloy structure with various thermal insulation performances by finite element method with code MSC/Nastran. The result of the analysis is compared with accelerated stress rupture test. The experiment is performed to get safety design and estimate actually life-time for combustor chamber under high temperature. In general, the work in this paper is helpful to further improve the understanding and evaluation of thermal strength of the super alloy structure with various thermal insulation performances.
机译:燃烧室,扩散器和喷嘴是冲压发动机的主要组件。在这项研究中,对冲压喷气发动机的燃烧室的热强度进行了评估。燃烧室由Inconel 718合金衬套和17-4Ph不锈钢外壳组成。衬里被迅速加热到高温。用膜冷却方法冷却加热的衬里,该方法形成冷边界层以将热气体与衬里的表面分离。通过代码为MSC / Nastran的有限元方法,对具有各种隔热性能的超合金结构的热结构分析进行了评估。将分析结果与加速应力断裂试验进行比较。进行该实验以获得安全设计并估计高温下燃烧室的实际寿命。通常,本文的工作有助于进一步提高对具有各种隔热性能的超级合金结构的热强度的理解和评估。

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