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Particle Effect on the Behavior and Spreading Kinetics of a Nano-suspension Drop: MD Simulations

机译:对纳米悬架下降的行为和扩散动力学的粒子效应:MD模拟

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Self-pinning is a phenomenon intrinsic to the advancement or retraction of liquid/solid/vapor three-phase contact lines for nano-fluid droplets. Another relevant phenomenon is de-pinning. where an initially halted contact line is able to separate from the pinning particle and continue its advance (or retraction) across the surface. Herein, results from molecular dynamics simulations are presented to explore the particle effects during both pinning and de-pinning events. Results presented illustrate how particle size and concentration affects spreading kinetics and how this connects to dynamic droplet morphology that exist nearby the contact line region.
机译:自钉扎是用于纳米流体液滴的液体/固体/蒸气三相接触线的提升或缩回的现象。另一种相关现象是脱钉。其中最初停止的接触线能够与钉扎颗粒分离并继续穿过表面的前进(或收缩)。这里,提出了分子动力学模拟的结果以探讨钉扎和拆卸事件期间的颗粒效果。提出的结果说明了粒度和浓度如何影响传播动力学以及如何连接到接触线区域附近存在的动态液滴形态。

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