论文标题

液滴内部的快速冻结动力学在冷表面上影响

Fast-freezing kinetics inside a droplet impacting on a cold surface

论文作者

Kant, Pallav, Koldeweij, Robin B. J., Harth, Kirsten, van Limbeek, Michiel A. J., Lohse, Detlef

论文摘要

在自然和技术上,冻结或固化撞击的液滴是无所不在的,无论是在超冷的表面上落在超冷的表面上,无论是在喷墨印刷中,通常都使用熔融蜡,无论是在添加的制造工艺还是在金属生产过程中,还是在紫杉岩造影术(EUV)中,用于熔融tin tin tin tin tin the Euv de euv deviation the chip生产。对于许多这些工业应用,对固化过程的详细理解至关重要。在这里,通过在冻结的背景下采用一种全新的光学技术,即TIR(总内部反射),我们在液滴凝固过程中阐明了冻结动力学,同时它会影响过冷的表面。我们首次表明,在足够高的底层过冷时,存在一个特殊的冷冻形态,涉及从液滴中心到边界的冻结前部的顺序对流。通过将经典成核理论的元素结合到液滴尺度上的大尺度流体动力学,将两个传统上完全分开的子领域组合在一起,从而研究了这种现象。此外,我们报告了一个奇特的自per骨现象,该现象是由固化过程中瞬态晶体状态存在驱动的。

Freezing or solidification of impacting droplets is omnipresent in nature and technology, be it a rain droplet falling on a supercooled surface, be it in inkjet printing where often molten wax is used, be it in added manufacturing or in metal production processes or in extreme ultraviolet lithography (EUV) for the chip production where molten tin is used to generate the EUV radiation. For many of these industrial applications, a detailed understanding of the solidification process is essential. Here, by adopting a totally new optical technique in the context of freezing, namely TIR (Total-Internal-Reflection), we elucidate the freezing kinetics during the solidification of a droplet while it impacts on an undercooled surface. We show for the first time that at sufficiently high undercooling a peculiar freezing morphology exists that involves sequential advection of frozen fronts from the centre of the droplet to its boundaries. This phenomenon is examined by combining elements of classical nucleation theory to the large scale hydrodynamics on the droplet scale, bringing together two subfields which traditionally have been quite separated. Furthermore, we report a peculiar self-peeling phenomenon of a frozen splat that is driven by the existence of a transient crystalline state during solidification.

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