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Infrared on-orbit RCC inspection system (IORIS)

机译:红外线上轨道RCC检测系统(IORIS)

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Designed to fulfill a critical inspection need for the Space Shuttle Program, the Infrared On-orbit RCC Inspection System (IORIS) can detect crack and surface defects in the Reinforced Carbon-Carbon (RCC) sections of the Space Shuttle's Thermal Protection System (TPS). IORIS performs this detection by taking advantage of the natural thermal gradients induced in the RCC by solar flux and thermal emission from the Earth. IORIS is a compact, low-mass, low-power solution (1.2cm3, 1.5kg, 5.0W) for TPS inspection that exceeds existing requirements for feature detection. Taking advantage of ground-based IR thermography techniques, IORIS provides the Space Shuttle program with a solution that can be accommodated by the existing inspection system. IORIS augments the visible and laser inspection systems and finds cracks that are not easily measurable by the other sensors, and thus fills a critical gap in the Space Shuttle's inspection needs. Based on crack IR signature predictions and on-orbit gradient expectations, IORIS can achieve crack detection over approximately 96% of the wing-leading edge RCC (using multiple inspections in an orbit period). This paper discusses the on-orbit RCC inspection measurement concept and requirements, and then presents a detailed description of the IORIS design.
机译:旨在满足空间班车计划的关键检查,红外线轨道RCC检测系统(IORIS)可以检测航天飞机热保护系统(TPS)的增强碳 - 碳(RCC)部分中的裂缝和表面缺陷。 Ioris通过利用太阳能通量和地球热排放来利用RCC中诱导的天然热梯度来执行该检测。 IORIS是一种紧凑,低质量的低功耗解决方案(1.2CM3,1.5KG,5.0W),用于TPS检查,超过现有功能检测要求。利用基于地面的IR热成像技术,IORIS提供了空间班车程序,该节目采用现有检测系统可容纳的解决方案。 ioris增加了可见和激光检查系统,并找到了其他传感器不容易可测量的裂缝,从而填补了航天飞机的检查需求中的临界差距。基于裂缝IR签名预测和轨道梯度预期,Ioris可以实现突破检测到大约96%的翼前沿RCC(在轨道期间使用多次检查)。本文讨论了轨道上的RCC检测测量概念和要求,然后提出了IORIS设计的详细描述。

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