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Modeling of thermo-physical processes in liquid ceramic precursor droplets injected into a plasma jet

机译:注入等离子流的液态陶瓷前体液滴中的热物理过程建模

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Modeling of liquid ceramic precursor droplets axially injected into a plasma is presented. Droplets undergo heating and solvent vaporization leading to high solute concentration near droplet surface. At a critical solute super-saturation concentration, precipitation is postulated to occur forming a precipitate shell around liquid core. Internal pressurization and rupture of shell occur subsequently. Droplet size, shell porosity and thickness effects were studied. Timescales of internal pressurization and precipitate formation are of the order of microsecond and millisecond, respectively. Small droplets (d ≤ 5 μm) tend to form thick shells and are less likely to undergo shell fracture compared to larger droplets.
机译:提出了轴向注入等离子体的液态陶瓷先驱液滴的建模。液滴受到加热和溶剂蒸发,导致液滴表面附近的溶质浓度很高。在临界溶质过饱和浓度下,推测会发生沉淀,从而在液核周围形成沉淀壳。壳体的内部增压和破裂随后发生。研究了液滴的大小,壳的孔隙率和厚度的影响。内部增压和沉淀形成的时间尺度分别为微秒和毫秒。与大液滴相比,小液滴(d≤5μm)倾向于形成厚壳,并且不易发生壳破裂。

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