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Influence of thermal process on particle size distribution of ultrafine magnesium powder prepared by inert gas condensation method

机译:热处理工艺对惰性气体缩合法制备超细镁粉粒度分布的影响

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摘要

Ultrafine magnesium powder has become a research hotspot for the last few years because of its high-activity and low-density. Inert gas condensation method is a better method compared to mechanical pulverization method to produce magnesium ultrafine powder with high-purity, narrow particle size distribution and short production cycle. As particle size distribution is a vital factor when it comes to determine the application area, it is necessary to investigate particle size distribution of ultrafine magnesium powder prepared by inert gas condensation method. The purpose of this research is to determine particle size distribution of ultrafine powder produced by inert gas condensation method under different thermal conditions, then to provide a reliable method for optimum thermal parameter selection. Thermal mechanisms of ultrafine magnesium powder preparation using inert gas condensation method are proposed. Dynamic equations for the nucleation, evaporation/condensation, coagulation and deposition processes are established. This paper develops a convenient way for the prediction of the particle size distribution by deriving a modified Monte Carlo method, which is able to calculate the particle size distribution giving only a relative error less than 3%, compared with the experiments. An attempt to discover the relation between particle size and absolute pressure is conducted in the discussion part. The particle size increases exponentially with the condensation pressure increases. The method derived here may offer a mathematical method to predict particle size distribution of other ultrafine metal powder prepared by inert gas condensation method, then to choose appropriate thermal conditions for different applications. (C) 2015 Elsevier B.V. All rights reserved.
机译:近年来,超细镁粉因其高活性和低密度而成为研究热点。与机械粉碎法相比,惰性气体冷凝法是一种生产高纯度,粒度分布窄,生产周期短的镁超细粉的更好方法。由于粒径分布是决定应用领域的关键因素,因此有必要研究通过惰性气体冷凝法制备的超细镁粉的粒径分布。这项研究的目的是确定惰性气体冷凝法在不同温度条件下生产的超细粉末的粒度分布,从而为优化热参数选择提供可靠的方法。提出了采用惰性气体冷凝法制备超细镁粉的热机理。建立了成核,蒸发/冷凝,凝聚和沉积过程的动力学方程。本文通过推导改进的蒙特卡洛方法,开发了一种预测粒径分布的简便方法,该方法能够计算出粒径分布,与实验相比,其相对误差仅为3%以下。在讨论部分中尝试发现粒径与绝对压力之间的关系。随着冷凝压力的增加,粒径呈指数增加。本文推导的方法可以提供一种数学方法来预测通过惰性气体冷凝法制备的其他超细金属粉末的粒度分布,然后为不同的应用选择合适的热条件。 (C)2015 Elsevier B.V.保留所有权利。

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