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Raman detection of MNA in solid rocket fuels

机译:固体火箭燃料中MNA的拉曼检测

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A sensitive Raman spectroscopy technique is used for detection and possible quantification of the propellant stabilizer, n-methyl nitroaniline (MNA), in solid rocket propellants used in multiple domestic missile systems. Over time, the energetic ingredients of the propellant will degrade and react with the stabilizer, causing issues with the propellant useful safe life. Currently, there are no non-destructive analytical techniques for which MNA can be detected in solid rocket fuel inside a missile. Therefore, after a certain amount of time, missiles in inventory must be disassembled and tested for reliability and safety. This methodology is labor intensive, costly, and time consuming so a less intrusive approach is warranted to determine a missile useful safe life. Raman spectroscopy provides a possible solution to this problem, where a small fiber optic probe line may be inserted into the rocket motor of the missiles, which can be tested within seconds without the need for dismantling the missiles. A 785 nm portable Raman analyzer is used for all measurements reported in this paper with integration times ranging from 10 to 60 s. It is found that Raman sensing is a viable option for detection of MNA in solid rocket fuels.
机译:灵敏的拉曼光谱技术用于检测和量化可能用于多种家用导弹系统的固体火箭推进剂中的推进剂稳定剂n-甲基硝基苯胺(MNA)。随着时间的流逝,推进剂的含能成分将降解并与稳定剂发生反应,从而导致推进剂使用寿命安全问题。当前,没有无损分析技术可以在导弹内部的固体火箭燃料中检测到MNA。因此,经过一定时间后,必须拆卸库存中的导弹并进行可靠性和安全性测试。这种方法是劳动密集型的,昂贵的和费时的,因此必须确定一种较不侵入性的方法来确定导弹的使用寿命。拉曼光谱法为该问题提供了一种可能的解决方案,其中可以将一条小的光纤探针线插入导弹的火箭发动机中,无需拆卸导弹即可在几秒钟内对其进行测试。本文报道的所有测量均使用785 nm便携式拉曼分析仪,积分时间为10至60 s。发现拉曼感测是检测固体火箭燃料中MNA的可行选择。

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