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Combustion of levitated titanium particles in air

机译:悬浮的钛颗粒在空气中的燃烧

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Combustion of titanium particles in air is of interest for applications to pyrotechnic countermeasures against chemical or bacteriological pollution, synthesis of nanoscale titania, and fire/explosion safety in metallurgical and SHS technologies. In this work, combustion of single titanium particles is studied using electrodynamic balance (levitation) and laser ignition. High-speed digital video recording and a photomultiplier are used for diagnostics. Based on the obtained data, empirical formulas are proposed for the dependence of the burning time on the initial particle size. Thermodynamic calculations are made to support the conclusions based on experimental data. The particle burning time is estimated using a simplified mathematical model for diffusion-controlled combustion. Comparison of the estimates with the experimental results suggests that oxygen diffusion in the gas phase plays a major role in the combustion mechanism of 100-μm or larger titanium particles in air, while kinetics become more important for smaller sizes.
机译:空气中钛颗粒的燃烧对于在烟火对策中的应用很感兴趣,这些对策是针对化学或细菌污染,纳米级二氧化钛的合成以及冶金和SHS技术中的火灾/爆炸安全性。在这项工作中,使用电动平衡(悬浮)和激光点火研究了单个钛颗粒的燃烧。高速数字视频记录和光电倍增管用于诊断。根据获得的数据,提出了燃烧时间与初始粒径的关系的经验公式。进行热力学计算以支持基于实验数据的结论。使用用于扩散控制的燃烧的简化数学模型来估计粒子的燃烧时间。将估算值与实验结果进行比较表明,气相中的氧气扩散在空气中100μm或更大的钛颗粒的燃烧机理中起着重要作用,而动力学对于更小的尺寸变得更加重要。

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