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Replaying the Fracture Process of a Failed Space Shuttle Orbiter Thruster

机译:重播失败的航天飞机轨道推进器的断裂过程

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摘要

In order to rationalize the continued safe-flight of the Space Shuttle Orbiter fleet, root cause was urgently sought for the explosive failure of a Space Shuttle Orbiter reaction control system thruster that occurred on the test stand. To confirm the postulated failure scenario, the direction of crack propagation in the fuel chamber wall had to be determined. It was also necessary to determine if any of the failed thruster injector materials had been embrittled over time. Conventional fractography could not provide conclusive answers, but a quantitative 3D analysis of the topographies of the opposing fracture surfaces was able to reconstruct the entire fracture process and thereby confirm root cause. The work shows how a failure event can be replayed through fracture surface topography analysis, FRASTA, and how information on load conditions, relative crack growth rates, and fracture mechanics parameters may be extracted from fracture surfaces.
机译:为了使航天飞机轨道飞行器的继续安全飞行合理化,迫切寻找根本原因,原因是试验台上发生的航天飞机轨道反应控制系统推进器发生爆炸性故障。为了确认假设的故障情况,必须确定裂纹在燃料室壁中的传播方向。还必须确定是否有任何失效的推进器喷油器材料随时间变脆。常规的断层照相术不能提供结论性的答案,但是对相对断裂面的形貌进行定量3D分析能够重建整个断裂过程,从而确定根本原因。这项工作展示了如何通过断裂表面形貌分析,FRASTA来重现故障事件,以及如何从断裂表面提取有关载荷条件,相对裂纹扩展速率和断裂力学参数的信息。

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