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Application of Eddy Current Techniques for Orbiter Reinforced Carbon-Carbon Structural Health Monitoring

机译:涡流增强碳 - 碳结构健康监测涡流电流技术的应用

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The development and application of advanced nondestructive evaluation techniques for the Reinforced Carbon-Carbon (RCC) components of the Space Shuttle Orbiter Leading Edge Structural Subsystem (LESS) were identified as a crucial step toward returning the shuttle fleet to service. In order to help meet this requirement, eddy current techniques have been developed for application to RCC components. Eddy current technology has been found to be particularly useful for measuring the protective coating thickness over the reinforced carbon-carbon and for the identification of near surface cracking and voids in the RCC matrix. Testing has been performed on as manufactured and flown RCC components with both actual and fabricated defects representing impact and oxidation damage. Encouraging initial results have led to the development of two separate eddy current systems for in-situ RCC inspections in the orbiter processing facility. Each of these systems has undergone blind validation testing on a full scale leading edge panel, and recently transitioned to Kennedy Space Center to be applied as a part of a comprehensive RCC inspection strategy to be performed in the orbiter processing facility after each shuttle flight.
机译:高级非破坏性评价技术的开发和应用用于航天飞机轨道轨道前缘结构子系统(较少)的增强碳 - 碳(RCC)组件被确定为将梭子舰队返回服务的重要步骤。为了帮助满足此要求,已经开发了涡流技术以应用于RCC组件。已经发现涡流技术特别适用于测量增强碳 - 碳上的保护涂层厚度以及用于识别RCC基质中的近表面裂化和空隙。通过具有实际和制造的缺陷的制造和飞行RCC组件进行了测试,该缺陷代表了影响和氧化损伤。鼓励初始结果导致了在轨道处理设施中出于原位RCC检查的两个独立涡流系统的开发。这些系统中的每一个都在全刻度的前沿面板上经过了盲验证测试,最近转变为肯尼迪航天中心,以应用于每个班车在每次班车航班后在轨道处理设施中执行的全面RCC检查策略的一部分。

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