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Reflection Fourier transform infrared spectroscopy of polymer targets for CO_2 laser ablation

机译:CO_2激光消融的聚合物靶标反射傅里叶变换红外光谱

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One of the many challenges faced by laser propulsion is the long-term performance of the propellant. The chemical changes that can take place at the propellant surface during ablation can greatly modify the in-flight performance characteristics. For stable regimes for propulsion, such chemical action should be minimized. A TEA (Transverse Electrical discharge in gas at Atmospheric pressure) CO_2 laser of 10.6 μm wavelength, 300 ns pulse length, and up to 20 J pulse energy was used to ablate several types of polymer targets with a range of observable chemical changes at the surface following ablation. After 10 subsequent shots, the target samples were measured using Attenuated Total Reflectance Fourier Transform Infrared (ATR FTIR) spectroscopy then compared to unablated samples of the same polymer. An analysis of the results was made with an emphasis on laser propulsion applications, with a comparison of the propulsion performance of the targets, specifically regarding the ablated mass per spot area (Ama). Chemical reaction pathways for combustion and vaporization are discussed on the basis of the differences observed in the FTIR spectra, and the consequences for using such materials as laser propulsion propellants are explored.
机译:激光推进面临的许多挑战之一是推进剂的长期性能。在消融期间可以在推进剂表面发生的化学变化可以大大改变飞行中的性能特征。对于推进的稳定制度,应最小化这种化学作用。茶(大气压下的气体横向放电)CO_2激光器为10.6μm波长,300ns脉冲长度,高达20J脉冲能量用于烧蚀几种类型的聚合物靶标,在表面上具有一系列可观察的化学变化消融后。在10次射击之后,使用减毒的总反射率傅里叶变换红外(ATR FTIR)光谱测量目标样品,然后与相同聚合物的未开放样品进行比较。对结果进行了分析,重点是激光推进应用,比较目标的推进性能,具体是关于每点区域(AMA)的烧蚀质量。基于FTIR光谱中观察到的差异,探讨了燃烧和汽化的化学反应途径,并探讨了使用这种材料作为激光推进剂的后果。

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