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Effect of boron content in BBiF_3 and B·Bi composites on their ignition and combustion

机译:BBIF_3和B·BI复合材料在其点火和燃烧中的影响

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Composite powders combining boron with BiF3 and Bi in different amounts were prepared by high energy milling. Thermal analysis in an argon-oxygen mixture showed significant oxidation starting about 200 K lower than for pure boron. Selective oxidation of metallic Bi at low temperatures was observed. Composites containing either Bi or BiF3 ignited more readily than pure boron when heated by a CO2 laser beam. The composites containing BiF3 ignited more readily than boron when in contact with a hot wire. Burn times of particles aerosolized in air and ignited using the CO2 laser were measured as durations of the recorded emission pulses produced by burning particles. Statistical distributions of the measured burn times were correlated with the respective powder's particle size distributions. Compared to elemental boron, burn times of all prepared composites were shorter, including those containing only 10 wt.% of BiF3 or ca. 8 wt.% of Bi, and for most composites combustion temperatures were higher. (C) 2020 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:通过高能量铣削制备将硼与BIF3和BI相结合的复合粉末。氩气混合物中的热分析显示出大约200k低于纯硼的显着氧化。观察到在低温下的金属BI的选择性氧化。当通过CO 2激光束加热时,含有BI或BIF3的复合材料比纯硼更容易地点燃。当与热线接触时,含有BIF 3的复合材料在接触时比硼更容易地点燃。通过燃烧颗粒产生的记录发射脉冲的持续时间来测量空气中雾化和使用CO2激光点燃的颗粒的燃烧时间。测量烧伤时间的统计分布与相应的粉末的粒度分布相关。与元素硼相比,所有制备的复合材料的烧伤时间较短,包括含有10重量%的含量。的BIF 3或CA%。伯爵的8重量%,并且对于大多数复合材料燃烧温度较高。 (c)2020燃烧研究所。由elsevier Inc.出版的所有权利保留。

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