首页> 外文会议>Thermosense XXVII >Infrared on-orbit RCC inspection system (IORIS)
【24h】

Infrared on-orbit RCC inspection system (IORIS)

机译:红外在轨RCC检查系统(IORIS)

获取原文
获取原文并翻译 | 示例

摘要

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:设计用于满足航天飞机计划的关键检查需求,红外在轨RCC检查系统(IORIS)可以检测航天飞机热保护系统(TPS)的增强碳碳(RCC)部分中的裂纹和表面缺陷。 。 IORIS通过利用太阳光通量和地球的热辐射在RCC中感应的自然热梯度来执行此检测。 IORIS是用于TPS检查的紧凑,低质量,低功耗的解决方案(1.2cm3、1.5kg,5.0W),超出了特征检测的现有要求。 IORIS利用基于地面的红外热成像技术,为航天飞机计划提供了可以由现有检查系统提供的解决方案。 IORIS增强了可见光和激光检查系统,并发现了其他传感器难以测量的裂缝,从而填补了航天飞机检查需求中的关键空白。基于裂纹红外特征预测和在轨梯度期望值,IORIS可以在机翼前缘RCC的约96%上实现裂纹检测(在轨道周期内使用多次检查)。本文讨论了在轨RCC检查测量的概念和要求,然后对IORIS设计进行了详细描述。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号