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Seal Joint Analysis and Design for the Ares-I Upper Stage LOX Tank

机译:Ares-I上级LOX储罐的密封接头分析和设计

摘要

The sealing capability of the Ares-I Upper Stage liquid oxygen tank-to-sump joint is assessed by analyzing the deflections of the joint components. Analyses are performed using three-dimensional symmetric wedge finite element models and the ABAQUS commercial finite element software. For the pressure loads and feedline interface loads, the analyses employ a mixed factor of safety approach to comply with the Constellation Program factor of safety requirements. Naflex pressure-assisted seals are considered first because they have been used successfully in similar seal joints in the Space Shuttle External Tank. For the baseline sump seal joint configuration with a Naflex seal, the predicted joint opening greatly exceeds the seal design specification. Three redesign options of the joint that maintain the use of a Naflex seal are studied. The joint openings for the redesigned seal joints show improvement over the baseline configuration; however, these joint openings still exceed the seal design specification. RACO pressure-assisted seals are considered next because they are known to also be used on the Space Shuttle External Tank, and the joint opening allowable is much larger than the specification for the Naflex seals. The finite element models for the RACO seal analyses are created by modifying the models that were used for the Naflex seal analyses. The analyses show that the RACO seal may provide sufficient sealing capability for the sump seal joint. The results provide reasonable data to recommend the design change and plan a testing program to determine the capability of RACO seals in the Ares-I Upper Stage liquid oxygen tank sump seal joint.
机译:通过分析接头组件的挠度,评估Ares-I上段液氧罐-集油槽接头的密封能力。使用三维对称楔形有限元模型和ABAQUS商业有限元软件进行分析。对于压力负载和馈线接口负载,分析采用了混合安全系数方法,以符合星座计划安全系数的要求。首先考虑使用Naflex压力辅助密封件,因为它们已成功用于航天飞机外部储罐的类似密封接头中。对于带有Naflex密封件的基线油底壳密封接头配置,预计的接头开口大大超出了密封件设计规范。研究了使用Naflex密封件的三种重新设计接头的方案。重新设计的密封接头的接头开口相对于基线配置有所改善;但是,这些接头开口仍超出密封设计规格。接下来考虑使用RACO压力辅助密封件,因为众所周知,它们也可用于航天飞机外部储罐,并且允许的接头开口比Naflex密封件的规格大得多。通过修改用于Naflex密封分析的模型,可以创建用于RACO密封分析的有限元模型。分析表明,RACO密封件可以为油底壳密封接头提供足够的密封能力。结果提供了合理的数据,以建议设计更改并计划测试计划,以确定Ares-I上级液氧罐集水槽密封接头中的RACO密封件的能力。

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