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Infrared On-Orbit Inspection of Shuttle Orbiter Reinforced Carbon-Carbon Using Solar Heating

机译:太阳能加热航天飞机轨道增强碳的红外在轨检查

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摘要

Thermographic nondestructive inspection techniques have been shown to provide quantitative, large area damage detection capabilities for the ground inspection of the reinforced carbon-carbon (RCC) used for the wing leading edge of the Shuttle orbiter. The method is non-contacting and able to inspect large areas in a relatively short inspection time. Thermal nondestructive evaluation (NDE) inspections have been shown to be applicable for several applications to the Shuttle in preparation for return to flight, including for inspection of RCC panels during impact testing, and for between-flight orbiter inspections. The focus of this work is to expand the capabilities of the thermal NDE methodology to enable inspection by an astronaut during orbital conditions. The significant limitations of available resources, such as weight and power, and the impact of these limitations on the inspection technique are discussed, as well as the resultant impact on data analysis and processing algorithms. Of particular interest is the impact to the inspection technique resulting from the use of solar energy as a heat source, the effect on the measurements due to working in the vacuum of space, and the effect of changes in boundary conditions, such as radiation losses seen by the material, on the response of the RCC. The resultant effects on detectability limits are discussed. Keywords: Nondestructive Evaluation, Shuttle, on-orbit inspection, thermography, infrared
机译:热成像非破坏性检查技术已显示出可提供定量,大面积损坏检测功能,用于对航天飞机轨道前缘的增强碳碳纤维(RCC)进行地面检查。该方法是非接触式的并且能够在相对短的检查时间内检查大面积。热非破坏性评估(NDE)检查已显示适用于航天飞机的几种应用,以准备返回飞行,包括在撞击测试期间对RCC面板进行检查,以及在飞行轨道上进行检查。这项工作的重点是扩展热NDE方法的功能,以使宇航员能够在轨道条件下进行检查。讨论了可用资源(例如重量和功率)的显着限制,以及这些限制对检查技术的影响,以及对数据分析和处理算法的最终影响。特别令人感兴趣的是使用太阳能作为热源对检查技术的影响,由于在真空中工作而对测量产生的影响,以及边界条件变化(如可见的辐射损耗)的影响根据材料,在RCC的响应。讨论了对可检测性极限的最终影响。关键字:无损评估,航天飞机,在轨检查,热成像,红外

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