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Experimental Study of Pyrolysis and Laser Ignition of Low-Vulnerability Propellants Based on RDX

机译:基于RDX的低脆弱性推进剂热解和激光点火实验研究

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摘要

Low-vulnerability propellants are propellants designed to resist unintended stimuli to increase safety during transport, storage and handling. The substitution of usual nitrocellulose-based gun propellants with these new materials allows maintaining interior ballistics performances while increasing the safety. In this paper, the pyrolysis, ignition and combustion of such propellants are investigated in order to study conditions leading to a safe and reproducible ignition. Low-vulnerability propellants studied are made of different ratios of hexogen (RDX) and nitrocellulose (NC). Three compositions are studied by varying weight percentages of RDX and NC: 95-5, 90-10 and 85-15 for respective weight percentages of RDX-NC. Pyrolysis of these propellants is studied with two different experimental setups: a flash pyrolysis device linked to a gas chromatograph coupled to a mass spectrometer (Py-GC-MS) and a closed-volume reactor coupled to a mass spectrometer. Different molecules, like NO , CO, CH COCH or CH NCH NCH , are obtained during the decomposition of these propellants. Laser ignition of these propellants is studied in a cylindrical closed-volume reactor using a laser diode. Several combustion characteristics, such as ignition delays, maximal overpressures and combustion rates are given for the three propellants using the pressure signals. Moreover, ignition energies are also investigated. Obtained results are compared to the few available literature data. A particular behavior is noticed for the 90-10 propellant. The experimental data collected should serve in the future to have a better understanding of the chemical reactions driving the combustion process of these low-vulnerability propellants.
机译:低脆弱性推进剂是旨在抵抗意外刺激以提高运输,储存和装卸期间的安全性的推进剂。用这些新材料替代常用的硝化纤维基枪支推进剂可以在保持内部弹道性能的同时提高安全性。在本文中,对此类推进剂的热解,着火和燃烧进行了研究,以研究导致安全和可再现着火的条件。所研究的低脆弱性推进剂是由不同比例的生铁剂(RDX)和硝化纤维素(NC)制成。通过改变RDX和NC的重量百分比来研究三种组合物:对于RDX-NC的各自重量百分比,分别为95-5、90-10和85-15。使用两种不同的实验装置对这些推进剂的热解进行了研究:快速热解装置与气相色谱仪相连,气相色谱仪与质谱仪(Py-GC-MS)相连,密闭反应器与质谱仪相连。在这些推进剂分解过程中会获得不同的分子,例如NO,CO,CH COCH或CH NCH NCH。在使用激光二极管的圆柱形封闭容积反应堆中研究了这些推进剂的激光点火。使用压力信号给出了三种推进剂的几种燃烧特性,例如点火延迟,最大超压和燃烧速率。此外,还研究了点火能量。将获得的结果与一些可用的文献数据进行比较。注意到90-10推进剂的特殊行为。将来收集的实验数据应有助于更好地了解驱动这些低脆弱性推进剂燃烧过程的化学反应。

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