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Synthesizing aluminum particles towards controlling electrostatic discharge ignition sensitivity

机译:合成铝颗粒以控制静电放电着火灵敏度

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Aluminum particles were synthesized with shell thicknesses ranging from 2.7 to 8.3 nm and a constant diameter of 95 nm. These fuel particles were combined with molybdenum trioxide particles and the electrostatic discharge (ESD) sensitivity of the mixture was measured. Results show ignition delay increased as the alumina shell thickness increased. These results correlated with electrical resistivity measurements of the mixture which increased with alumina concentration. A model was developed using COMSOL for ignition of a single Al particle. The ignition delay in the model was consistent with the experimental results suggesting that the primary ESD ignition mechanism is joule heating.
机译:合成的铝颗粒的壳厚度为2.7至8.3 nm,恒定直径为95 nm。将这些燃料颗粒与三氧化钼颗粒结合,并测量混合物的静电放电(ESD)敏感性。结果表明,点火延迟随着氧化铝壳厚度的增加而增加。这些结果与混合物的电阻率测量值相关,该电阻率测量值随氧化铝浓度的增加而增加。使用COMSOL开发了一个用于点燃单个Al粒子的模型。模型中的点火延迟与实验结果一致,表明主要的ESD点火机理是焦耳加热。

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