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ELECTRO-STATIC DISCHARGE IGNITION OF MONOLAYERS OF NANOCOMPOSITE THERMITE POWDERS PREPARED BY ARRESTED REACTIVE MILLING

机译:滞留反应铣削制备的纳米复合热土粉末单晶的静电放电点火

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Reactive nanocomposite powders with aluminum as a fuel and copper, bismuth, iron, and molybdenum oxide as oxidizers: 2Al center dot 3CuO, 2.35Al center dot Bi2O3, 2Al center dot Fe2O3, and 2Al center dot MoO3, were prepared by arrested reactive milling, placed in monolayers on a conductive substrate, and ignited by an electro-static discharge (ESD) or spark in air, argon, and vacuum. The ESD was produced by discharging a 2000 pF capacitor charged to a voltage, which varied from 5 to 20 kV. Emission from ignited particles was monitored using a photomultiplier equipped with an interference filter. Experimental variables included particle sizes, milling time used to prepare composite particles, surrounding environment, and starting ESD voltage. All materials ignited in all environments, producing individual burning particles that were ejected from the substrate. The spark duration varied from 1 to 5 mu s; the duration of the produced emission pulse was in the range of 80-250 mu s for all materials studied. The longest emission duration was observed for the nanocomposite thermite using MoO3 as an oxidizer. The reaction rates of the ESD-initiated powders were defined primarily by the scale of mixing of and reactive interface area between the fuel and oxidizer in composite materials rather than by the external particle surface or particle dimensions. In vacuum, particles were heated by ESD while remaining on the substrate until they began generating gas combustion products. In air and argon, particles initially pre-heated by ESD were lifted and accelerated to ca. 100 m/s by the generated shock wave; the airborne particles continued self-heating due to heterogeneous redox reactions.
机译:以铝为燃料,铜,铋,铁和三氧化二钼为氧化剂的反应性纳米复合粉体:通过停止反应研磨制得2Al中心点3CuO,2.35Al中心点Bi2O3、2Al中心点Fe2O3和2Al中心点MoO3,放置在导电基板上的单层中,并通过静电放电(ESD)或空气,氩气和真空中的火花点燃。 ESD是通过将2000 pF电容器放电至5 kV至20 kV的电压而产生的。使用配备有干涉滤光片的光电倍增管来监测点燃的颗粒的排放。实验变量包括粒径,用于制备复合颗粒的研磨时间,周围环境和初始ESD电压。所有材料在所有环境中都会点燃,产生单个燃烧颗粒,这些颗粒从基材中喷出。火花持续时间从1到5毫秒不等;对于所有研究的材料,产生的发射脉冲的持续时间在80-250μs的范围内。使用MoO3作为氧化剂,纳米复合铝热剂的发射时间最长。 ESD引发的粉末的反应速率主要由复合材料中燃料与氧化剂的混合比例和反应界面面积决定,而不是由外部颗粒表面或颗粒尺寸决定。在真空中,颗粒通过ESD加热,同时保留在基材上,直到它们开始生成气体燃烧产物为止。在空气和氩气中,最初被ESD预热的颗粒被提起并加速至大约。产生的冲击波为100 m / s;由于异质氧化还原反应,空气中的颗粒继续自热。

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