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Optical fiber sensors for spacecraft applications

机译:航天器应用的光纤传感器

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Optical fiber sensors offer a number of advantages for spacecraft applications. A principal application is strain sensing for structural health monitoring, shape determination, and spacecraft qualification testing. This paper will review the results of recent work at the Naval Research Laboratory where optical fiber strain sensors have been used on spacecraft structures and ground test hardware. The sensors have been both surface mounted to the structure and embedded in fiber-reinforced polymer composites. The issue of potential strength reduction of high-performance composites due to embedded optical fiber sensors and leads has been studied, low-cost fabrication of tubular struts with embedded sensors has been demonstrated, and a novel technique for fiber ingress-egress from composite pans has been developed. Applications of fiber sensors discussed in this paper include distributed dynamic strain monitoring of a honeycomb composite plate and a lightweight reflector during acoustic qualification tests, ultrahigh-sensitivity static strain and temperature measurements for precision structures, and on-line system identification of a lightweight laboratory truss. (Example materials: graphite fiber/vinyl ester resin.)
机译:光纤传感器为航天器应用提供了许多优势。主要应用是应变感测,用于结构健康监测,形状确定和航天器鉴定测试。本文将回顾海军研究实验室的最新工作成果,该实验室的光纤应变传感器已用于航天器结构和地面测试硬件。传感器既可以表面安装在结构上,又可以嵌入纤维增强的聚合物复合材料中。研究了由于嵌入式光纤传感器和引线而导致的高性能复合材料潜在强度降低的问题,已经证明了采用嵌入式传感器的管状支撑的低成本制造,并且有一种新的技术可以使光纤从复合锅中进入已开发。本文讨论的光纤传感器的应用包括在声学鉴定测试期间对蜂窝状复合板和轻型反射器进行分布式动态应变监测,用于精密结构的超高灵敏度静态应变和温度测量以及轻型实验室桁架的在线系统识别。 (示例材料:石墨纤维/乙烯基酯树脂。)

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