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Plastic optical fiber hydrogen detection sensor systems for harsh environment in aerospace application

机译:塑料光纤氢检测传感器系统,用于航空航天应用中的恶劣环境

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This paper describes the 1st successful Plastic Optical Fiber (POF) cable and Glass Optical Fiber (GOF) hydrogen detection sensor systems developed for the Boeing Evolved Expandable Lunch Vehicle (EELV) Delta IV Launch Vehicle harsh environment of engine section. H_2 sensors are necessary to monitor the possible leak of rocket prior launch to avoid explosion, which can be highly dangerous. Due to harsh environment of launch vehicle, we developed the first combination of 100 m POF and glass fiber H_2 sensors. The hydrogen sensor consisted of optrodes distributed at multiple locations along a fiber optic cable-based network. These hydrogen sensors were used on the Common Booster Core (CBC) of Delta IV had to perform in temperatures between -18°C and +60°C. The hydrogen sensor sensitive chemistry was fully reversible and had demonstrated a response to hydrogen gas in the range of 0% to 10% with a resolution of 0.1 % and a response time of 5 seconds measured at a gas flow rate of 1 cc/mm. The optical signature of the optrode in the visible spectrum varied proportionally to the local hydrogen gas concentration. To qualify the POF and fiber optic cables, performed detail investigation for attenuation loss, thermal, humidity, temperature, vibration and accelerate testing for life expectancy. Extensive networking using LabView were carried out for lab and actual field demonstrations.
机译:本文介绍了第一个成功的塑料光纤(POF)电缆和玻璃光纤(GOF)氢检测传感器系统,为Boeing演进的可扩展午餐车(EELV)Delta IV发射车辆苛刻环境的发动机部分。 H_2传感器是监控火箭最终发射的可能泄漏的所必需的,以避免爆炸,这可能是非常危险的。由于发动车辆的恶劣环境,我们开发了100米POF和玻璃纤维H_2传感器的第一种组合。氢传感器由沿着基于光纤电缆的网络的多个位置分布的Optrode。这些氢传感器用于ΔIV的共同增强核(CBC)必须在-18℃和+ 60℃之间进行温度。氢传感器敏感化学完全可逆,并证明了0%至10%的氢气的响应,分辨率为0.1%,响应时间为1cc / mm的气体流速测量5秒。可见光谱中Optroide的光学特征与局部氢气浓度成比例地变化。为了有资格获得POF和光纤电缆,对衰减损失,热,湿度,温度,振动和加速测试进行了详细的衰减调查。使用LabVIEW进行广泛的网络,用于实验室和实际情况演示。

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