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Preparation and Characterization of Silicon-Metal Fluoride Reactive Composites

机译:硅 - 金属氟化物反应性复合材料的制备与表征

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摘要

Fuel-rich composite powders combining elemental Si with the metal fluoride oxidizers BiF3 and CoF2 were prepared by arrested reactive milling. Reactivity of the composite powders was assessed using thermoanalytical measurements in both inert (Ar) and oxidizing (Ar/O2) environments. Powders were ignited using an electrically heated filament; particle combustion experiments were performed in room air using a CO2 laser as an ignition source. Both composites showed accelerated oxidation of Si when heated in oxidizing environments and ignited readily using the heated filament. Elemental Si, used as a reference, did not exhibit appreciable oxidation when heated under the same conditions and could not be ignited using either a heated filament or laser. Lower-temperature Si fluoride formation and oxidation were observed for the composites with BiF3; respectively, the ignition temperature for these composite powders was also lower. Particle combustion experiments were successful with the Si/BiF3 composite. The statistical distribution of the measured particle burn times was correlated with the measured particle size distribution to establish the effect of particle sizes on their burn times. The measured burn times were close to those measured for similar composites with Al and B serving as fuels.
机译:通过被捕的反应铣削制备将元素Si与金属氟化物氧化器BIF3和COF2组合的富含元素Si的复合粉末。使用惰性(Ar)和氧化(AR / O2)环境中的热分析测量来评估复合粉末的反应性。使用电加热的长丝点燃粉末;使用CO2激光作为点火源在室内空气中进行颗粒燃烧实验。在氧化环境中加热时,两种复合材料显示出Si的加速氧化,并易于使用加热的丝。用作参考的元素Si在加热在相同条件下加热时没有表现出明显的氧化,并且不能使用加热的长丝或激光点燃。用BIF 3的复合材料观察到较低温度的Si氟化物形成和氧化;分别,这些复合粉末的点火温度也较低。颗粒燃烧实验用Si / Bif3复合材料成功。测量颗粒燃烧时间的统计分布与测量的粒度分布相关,以建立粒度尺寸在其燃烧时间上的效果。测量的烧伤时间接近与Al和B类似的复合材料测量的那些,用作燃料。

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