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Flame propagation behaviours in nano-metal dust explosions

机译:纳米金属粉尘爆炸中的火焰传播行为

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Flame propagation behaviours in 40 nm titanium, aluminium and iron dust clouds were investigated by highspeed photography. 40 rim titanium, aluminium and iron dust flames were all characterized by discrete single glowing burning particles with smoothly spherical front. "Micro explosions" caused by the fragment ejection occurred in both 40 nm titanium and aluminium particles burning processes. At nano scales, the heat and mass transfer regimes were absolutely different with micro particles, which resulted in different propagation velocities. The average pulsating flame propagation velocities of 40 nm titanium, aluminium and iron dust clouds were 0.565 m/s, 0.189 m/s and 0.035 m/s, respectively. From SEM analysis, it was inferred that 40 nm titanium, aluminium and iron particles were burnt in liquid, gas, and solid-phase, respectively. From XPS analysis, it was found that N-2 played a significant role in titanium particles combustion. 40 nm titanium combustion products contained 43% TiO2 (Ti4+), 27% Ti2O3 (Ti3+), 21%TiO (Ti2+) and 9%TiN (Ti3+). While 40 nm aluminium combustion products just contained 100% Al2O3 (Al3+), and 40 nm iron combustion products contained 49% Fe2O3 (Fe3+), 26% Fe3O4 (Fe3+/Fe2+), 15% FeO (Fe2+) and 10% iron nonoxides. Inerted by nitrogen for preventing nano titanium dust explosions was inadvisable. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过高速摄影研究了40 nM钛,铝和铁尘云中的火焰繁殖行为。 40轮辋钛,铝和铁粉尘火焰都是通过离散的单一发光燃烧颗粒的特征,具有平稳球形的前部。由片段喷射引起的“微爆炸”在40nm钛和铝颗粒燃烧过程中发生。在纳米鳞片上,热量和传质制度与微粒绝对不同,导致传播速度不同。平均脉动火焰传播速度为40nm钛,铝和铁尘云为0.565 m / s,0.189 m / s和0.035 m / s。从SEM分析中,推断出40nm钛,铝和铁颗粒分别在液体,气体和固相中燃烧。从XPS分析中,发现N-2在钛颗粒燃烧中发挥了重要作用。 40nm钛燃烧产物含有43%TiO 2(Ti 4 +),27%Ti2O3(Ti3 +),21%TiO(Ti2 +)和9%锡(Ti3 +)。虽然40 nM铝燃烧产物刚含有100%Al 2 O 3(Al3 +),但40 nm的铁燃烧产物含有49%Fe2O3(Fe3 +),26%Fe3O4(Fe3 + / Fe2 +),15%FeO(Fe2 +)和10%铁非氧化物。通过氮气惰性来防止纳米钛粉尘爆炸是不可行的。 (c)2017 Elsevier B.v.保留所有权利。

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