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Heating of Printed Circuit Board, Wire Insulation and Electronic Components for Fire Signature Sensor Evaluation

机译:加热印刷电路板,电线绝缘和电子元件用于火灾签名传感器评估

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This paper describes the results of tests to identify optimal chemical markers for augmenting particle-based fire detection methods. The tests were conducted at the NASA Glenn Research Center’s Gases and Aerosols from Smoldering Polymers (GASP) facility, a custom 326 liter smoke chamber designed for containing smoke resulting from the heating of materials in a tube furnace. Materials used in this investigation included blank printed circuit boards, polyvinyl chloride and polytetrafluoroethylene/polyimide wire insulation, and various surface mount electronic components used intact to simulate realistic fire scenarios. Two different heating rates were applied during the testing of each set of fuels. A commercially available smoke detector and hand-held chemical monitors were located inside the smoke chamber. Instruments for smoke particle characterization and a Fourier transform infrared spectrometer were plumbed from the outside of the smoke chamber. The time response of the commercially available smoke detector was compared to the time response of chemical monitors and an optical acid gas monitor while heating the material at slow and fast rates. Of particular interest was the dependency of the acid gas product concentrations on the heating conditions and sample material. Results are presented and discussed along with implications for spacecraft fire safety and design of future combustion product monitors.
机译:本文介绍了试验结果,以确定用于增强基于颗粒的火灾检测方法的最佳化学标记。该试验是在NASA Glenn研究中心的气体和气溶胶中进行的闷烧聚合物(喘气)设施,是一种定制的326升烟室,设计用于含有由管炉中材料的材料产生的烟雾。本研究中使用的材料包括坯料印刷电路板,聚氯乙烯和聚四氟乙烯/聚酰亚胺线绝缘,以及完整的各种表面安装电子元件来模拟现实的火灾情景。在测试每组燃料期间应用了两种不同的加热速率。市售的烟雾探测器和手持化学显示器位于烟雾室内。用于烟雾粒子表征的仪器和傅里叶变换红外光谱仪从烟室外侧垂钓。将市售烟雾检测器的时间响应与化学显示器和光学酸性气体监测器的时间响应进行了比较,同时以缓慢和快速加热材料。特别感兴趣的是酸性天然气产品浓度对加热条件和样品材料的依赖性。提出和讨论了结果以及对航天器防火安全和未来燃烧产品监视器设计的影响。

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