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Stress Analysis and Testing at the Marshall Space Flight Center to Study Cause and Corrective Action of Space Shuttle External Tank Stringer Failures

机译:马歇尔太空飞行中心的压力分析与测试,探讨航天飞机外壳梯表故障的原因及纠正措施

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After the launch scrub of Space Shuttle mission STS-133 on November S, 2010, large cracks were discovered in two of the External Tank intertank stringers. The NASA Marshall Space Flight Center, as managing center for the External Tank Project, coordinated the ensuing failure investigation and repair activities with several organizations, including the manufacturer, Lockheed Martin. To support the investigation, the Marshall Space Flight Center formed an ad-hoc stress analysis team to complement the efforts of Lockheed Martin. The team undertook six major efforts to analyze or test the structural behavior of the stringers. Extensive finite element modeling was performed to characterize the local stresses in the stringers near the region of failure. Data from a full-scale tanking test and from several subcomponent static load tests were used to confirm the analytical conclusions. The analysis and test activities of the team are summarized. The root cause of the stringer failures and the flight readiness rationale for the repairs that were implemented are discussed.
机译:2010年11月S的Space Shuttle Mission STS-133的Space Shuttle Mission STS-133的推出磨砂后,在两个外部坦克间串串中发现了大裂缝。 NASA Marshall Space Flight Center,作为外部坦克项目的管理中心,协调随后的失败调查和修理活动,包括若干组织,包括制造商,洛克希德马丁。为了支持调查,马歇尔空间飞行中心成立了一个ad-hoc压力分析团队,以补充洛克希德马丁的努力。该团队进行了六项重大努力来分析或测试桁条的结构行为。进行广泛的有限元建模,以表征故障区域附近纵梁中的局部应力。来自全规模坦克测试的数据以及来自几个子组件静态负载测试的数据用于确认分析结论。总结了团队的分析和测试活动。讨论了施工故障的根本原因以及实施的维修的飞行准备基本原理。

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