叠氮硝胺炮推进剂装填条件下炮管材料的侵蚀行为

IF 3.6
Rui Wu, Yi-jie Xiao, Zhi-gang Guo, Xue-yang Li, Qiang Li, Zhi-Chao Li, Yu-cheng Zhang
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引用次数: 0

摘要

为了研究叠氮硝胺推进剂对炮管材料的侵蚀行为,以NC(硝化纤维素)、NG(硝化甘油)和RDX (Hexogen)为原料制备了高能组份型叠氮硝胺推进剂。推进剂的侵蚀特性是用通气容器法测定的。通过形态分析和元素分析研究了炮管材料的侵蚀行为。分析了不同推进剂火焰温度和装药密度下炮管材料的冲蚀特性。结果表明:随着火焰温度和加载密度的增加,炮管材料样品的侵蚀程度加剧;SEM(扫描电子显微镜)观察表明,冲蚀试样表面平整度随推进剂火焰温度升高而降低,随推进剂装药密度的变化先降低后升高。不同加载条件下的样品表面表现出不同的典型特征,包括固体颗粒、簇状、侵蚀坑、侵蚀痕迹和棒状固体。能谱仪(EDS)测试表明,与侵蚀前样品相比,侵蚀后样品表面的C、Fe含量降低,而Mn、Ni、Mo等元素含量增加。随着v的检测,侵蚀坑中C、O、Cr元素含量增加。最后,根据实验结果,总结了侵蚀后炮管材料的形态和元素分布特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Erosion behavior of gun barrel material under azidonitramine gun propellant loading conditions

Erosion behavior of gun barrel material under azidonitramine gun propellant loading conditions
To study the erosion behavior of azidonitramine propellant on gun barrel material, a high-energy component-based azidonitramine gun propellant was prepared by using NC (Nitrocellulose), NG (Nitroglycerin), and RDX (Hexogen). The erosion characteristics of the propellants were determined using a vented vessel method. The erosion behavior of the gun barrel material was investigated through morphological and element analysis. And the erosion characteristics of the gun barrel material under different propellant flame temperatures and loading densities were analyzed. The results indicated that the erosion degree of the gun barrel material samples intensified with increasing flame temperature and loading density. SEM (Scanning Electron Microscope) observations showed that the surface flatness of the erosion samples decreased with higher propellant flame temperature and decreased followed by an increase with varying propellant loading densities. The surfaces of samples under different loading conditions exhibited various typical features, including solid particles, clusters, erosion pits, erosion marks, and rod-like solids. EDS (Energy Dispersive Spectrometer) testing revealed that, compared to the pre-erosion samples, the content of C and Fe on the surface of the erosive samples decreased, while the content of elements such as Mn, Ni, and Mo increased. The content of C, O, and Cr elements increased in the erosion pits, along with the detection of V. Finally, based on the experimental results, the morphological and elemental distribution characteristics of the gun barrel material after erosion were summarized.
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