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Bismuth fluoride-coated boron powders as enhanced fuels

机译:氟铋涂覆的硼粉作为增强燃料

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By double displacement reaction in aqueous media, bismuth fluoride, BiF3, was coated onto micron-sized boron particles to target two compositions with 5 and 10 wt.% of BiF3, referred to as 95B center dot 5BiF(3) and 90B center dot 10BiF(3), respectively. The actual mass fractions obtained were estimated to be 3 and 7 wt.%, respectively. The deposited BiF3 particles had narrow size distributions centered around 60 nm. For each of the two prepared powders, the coated boron particles of different sizes contained different mass fractions of BiF3, which scaled with the particle's specific surface area. Both coated samples exhibited a low-temperature oxidation starting at 450 degrees C, similar to B center dot BiF3 composite powders prepared by arrested reactive milling. The low-temperature oxidation was sufficiently rapid to sustain ignition of 90B center dot 10BiF(3) powder placed on an electrically heated wire. Single particle combustion experiments in air showed a detectable increase in the burn rate for 90B center dot 10BiF(3) powder compared to the starting boron; however, no similar increase was noted for 95B center dot 5BiF(3) sample. In constant volume explosion tests in air, combustion of 90B center dot 10BiF(3) powder generated significantly greater peak pressures and rates of pressure rise than observed for both commercial boron and fine aluminum powders. The improvements were less pronounced, but clearly detectable for 95B center dot 5BiF(3) sample. (C) 2020 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:通过在含水介质中的双相反应,氟化铋,BIF 3涂覆到微米尺寸的硼颗粒上,以靶向具有5和10重量%的两种组合物,其中BIF 3的%,称为95b中心点5bif(3)和90b中心点10bif (3)分别。所得实际质量级分估计为3和7重量%。%。沉积的BIF3颗粒具有窄尺寸的分布,其定为60nm。对于两个制备的粉末中的每一个,不同尺寸的涂覆的硼颗粒含有不同的BIF 3质量分数,其与颗粒的比表面积缩放。两个涂覆的样品在450℃下出现低温氧化,类似于通过被捕的反应铣削制备的B中心点BIF3复合粉末。低温氧化足以快速地维持90b中心点10bif(3)粉末的点火,放置在电加热的丝上。与起始硼相比,空气中的单颗粒燃烧实验显示出90B中心点10Bif(3)粉末的烧伤率的可检测增加;然而,对于95B中心点5Bif(3)样品没有发现类似的增加。在空气中的恒定体积爆炸试验中,90B中心点10Bif(3)粉末的燃烧产生明显更大的峰值压力和压力升高,而不是用于商用硼和细铝粉。改善不太明显,但为95B中心点5BIF(3)样品清晰可检测到。 (c)2020燃烧研究所。由elsevier Inc.出版的所有权利保留。

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