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Effect of Saturation Pressure Difference on Metal–Silicide Nanopowder Formation in Thermal Plasma Fabrication

机译:等离子体制备中饱和压力差对金属硅化物纳米粉形成的影响

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摘要

A computational investigation using a unique model and a solution algorithm was conducted, changing only the saturation pressure of one material artificially during nanopowder formation in thermal plasma fabrication, to highlight the effects of the saturation pressure difference between a metal and silicon. The model can not only express any profile of particle size–composition distribution for a metal–silicide nanopowder even with widely ranging sizes from sub-nanometers to a few hundred nanometers, but it can also simulate the entire growth process involving binary homogeneous nucleation, binary heterogeneous co-condensation, and coagulation among nanoparticles with different compositions. Greater differences in saturation pressures cause a greater time lag for co-condensation of two material vapors during the collective growth of the metal–silicide nanopowder. The greater time lag for co-condensation results in a wider range of composition of the mature nanopowder.
机译:进行了使用独特模型和求解算法的计算研究,在热等离子体制造过程中仅在纳米粉末形成过程中人为地更改了一种材料的饱和压力,以突出金属和硅之间的饱和压力差的影响。该模型不仅可以表达金属硅化物纳米粉末的粒径-组成分布的任何分布图,甚至具有从亚纳米到几百纳米的大范围尺寸,而且还可以模拟涉及二元均相成核,二元化的整个生长过程。不同组成的纳米粒子之间的异质共凝聚和凝聚。在金属-硅化物纳米粉的共同生长过程中,饱和压力的更大差异会导致两种材料蒸气的共冷凝的滞后时间增加。共缩合的较大时滞导致成熟纳米粉的组成范围更广。

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