论文标题

固定和销售冷基在冷基板上的固定和销售的标准

A criterion for the pinning and depinning of an advancing contact line on a cold substrate

论文作者

Herbaut, Rémy, Dervaux, Julien, Brunet, Philippe, Royon, Laurent, Limat, Laurent

论文摘要

在$ t_p <t_f $的冷热率(无限导热率)上,固化对液体扩散的影响是在液体楔上的情况下解决的,其中$ t_f $是熔化的温度。我们提出了一个源自接触线动力学的润滑理论的模型,其中毛细管压力和粘性应力之间的平衡正在发挥作用,此处适用于四倍线的几何形状,在该几何形状中,蒸气,液体,固体液体和基础底物相遇。 Stefan热问题在分子和介质尺度之间的中间区域解决,从而可以预测固化液体表面的形状。明显的接触角与前进的速度$ u $具有最低价值,这是从连续前进到固定的过渡。我们假设该过渡对应于实验观察到的临界速度,取决于底层温度$ t_f-t_p $,下面是固定液体并以棒滑动动力学的进步。该模型的分析解决方案与实验数据显示了定性公平的一致性。我们讨论了获得更好的定量一致性的方法,当介绍截止长度依赖温度时,可以特别获得。

The influence of solidification on the spreading of liquids is addressed in the situation of an advancing liquid wedge on a cold substrate at $T_p < T_f$, of infinite thermal conductivity, where $T_f$ is the melting temperature. We propose a model derived from lubrication theory of contact-line dynamics, where an equilibrium between capillary pressure and viscous stress is at play, adapted here for the geometry of a quadruple line where the vapour, liquid, solidified liquid and basal substrate meet. The Stefan thermal problem is solved in an intermediate region between molecular and mesoscopic scales, allowing to predict the shape of the solidified liquid surface. The apparent contact angle versus advancing velocity $U$ exhibits a minimal value, which is set as the transition from continuous advancing to pinning. We postulate that this transition corresponds to the experimentally observed critical velocity, dependent on undercooling temperature $T_f-T_p$, below which the liquid is pinned and advances with stick-slip dynamics. The analytical solution of the model shows a qualitatively fair agreement with experimental data. We discuss on the way to get better quantitative agreement, which in particular can be obtained when the mesoscopic cut-off length is made temperature-dependent.

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