论文标题

在热导电底物上薄膜的有效渐近模型

On efficient asymptotic modelling of thin films on thermally conductive substrates

论文作者

Allaire, Ryan H., Cummings, Linda J., Kondic, Lou

论文摘要

我们考虑将放置在热导电基板上的自由表面薄膜,并暴露于设置中的外部热源,其中吸收吸收取决于局部膜的厚度。我们的重点是在电影融化时建模薄膜演化。膜的演变改变了局部热流,这反过来可能通过膜材料特性的热变化影响膜表面演变。底物的导热率在确定不断发展的膜和基板本身中的热流和温度场中起重要作用。为了达到可进行的公式,我们使用渐近分析来开发一种新型的热模型,该模型是准确,计算上有效的,并且在平面内和偏僻的方向上都占了热流。我们将此模型应用于暴露于激光脉冲加热和融化的纳米级厚度的金属膜,这是一种通常用于自我和定向组装的设置,并通过脱焊片在液相时通过脱水来进行各种金属几何形状。我们发现,热效应起着重要作用,特别是,将温度依赖性纳入金属粘度会显着修饰进化的时间尺度。另一方面,在考虑的设置中,Marangoni(热毛细血管)的效应被证明是微不足道的。

We consider a free surface thin film placed on a thermally conductive substrate and exposed to an external heat source in a setup where the heat absorption depends on the local film thickness. Our focus is on modeling film evolution while the film is molten. The evolution of the film modifies local heat flow, which in turn may influence the film surface evolution through thermal variation of the film's material properties. Thermal conductivity of the substrate plays an important role in determining the heat flow and the temperature field in the evolving film and in the substrate itself. In order to reach a tractable formulation, we use asymptotic analysis to develop a novel thermal model that is accurate, computationally efficient, and that accounts for the heat flow in both the in-plane and out-of plane directions. We apply this model to metal films of nanoscale thickness exposed to heating and melting by laser pulses, a setup commonly used for self and directed assembly of various metal geometries via dewetting while the films are in the liquid phase. We find that thermal effects play an important role, and in particular that the inclusion of temperature dependence in the metal viscosity modifies the time scale of the evolution significantly. On the other hand, in the considered setup the Marangoni (thermocapillary) effect turns out to be insignificant.

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