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硼镁合金粉末的点火与燃烧特性

Ignition and Combustion Characteristic of B·Mg Alloy Powders.

作者信息

Ma Yusong, Zhang Kaichuang, Ma Shizhou, He Jinyan, Gai Xiqiang, Zhang Xinggao

机构信息

State Key Laboratory of NBC Protection for Civilian, Beijing 102205, China.

出版信息

Materials (Basel). 2022 Apr 7;15(8):2717. doi: 10.3390/ma15082717.

Abstract

Boron and its alloys have been explored a lot and it is expected that they can replace pure aluminum powder in the energetic formulation of active materials. MgB compounds were prepared and characterized by a combination of mechanical alloying and heat treatment. The ignition and combustion of boron-magnesium alloys were studied with the ignition wire method and laser ignition infrared temperature measurement. The results show that MgB has good ignition characteristics with maximum ignition temperatures obtained by the two various methods of 1292 K and 1293 K, respectively. Compared with boron, the ignition temperature of MgB is greatly reduced after alloying. The ignition reaction of MgB mainly occurs on the surface and the ignition process has two stages. In the initial stage of ignition, the large flame morphology and combustion state are close to the combustion with gaseous Mg, whereas the subsequent combustion process is close to the combustion process of B. Compared with boron, the ignition temperature of MgB is greatly reduced which suggests that MgB may be used in gunpowder, propellant, explosives, and pyrotechnics due to its improved ignition performance.

摘要

硼及其合金已被广泛研究,预计它们可在活性材料的含能配方中替代纯铝粉。通过机械合金化和热处理相结合的方法制备并表征了MgB化合物。采用点火丝法和激光点火红外温度测量法研究了硼镁合金的点火和燃烧情况。结果表明,MgB具有良好的点火特性,通过两种不同方法获得的最高点火温度分别为1292 K和1293 K。与硼相比,合金化后MgB的点火温度大幅降低。MgB的点火反应主要发生在表面,点火过程有两个阶段。在点火初期,大火焰形态和燃烧状态接近气态镁的燃烧,而随后的燃烧过程接近硼的燃烧过程。与硼相比,MgB的点火温度大幅降低,这表明MgB由于其改进的点火性能,可用于火药、推进剂、炸药和烟火技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01de/9032847/a990e5c8114b/materials-15-02717-g001.jpg

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