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液珠和液滴在驱避固体表面的作用:统一描述。

Impact of Beads and Drops on a Repellent Solid Surface: A Unified Description.

机构信息

Laboratoire Charles Coulomb (L2C), University of Montpellier, CNRS, 34090 Montpellier, France.

LMGC, University of Montpellier, CNRS, 34090 Montpellier, France.

出版信息

Phys Rev Lett. 2018 Apr 6;120(14):148003. doi: 10.1103/PhysRevLett.120.148003.

Abstract

We investigate freely expanding sheets formed by ultrasoft gel beads, and liquid and viscoelastic drops, produced by the impact of the bead or drop on a silicon wafer covered with a thin layer of liquid nitrogen that suppresses viscous dissipation thanks to an inverse Leidenfrost effect. Our experiments show a unified behavior for the impact dynamics that holds for solids, liquids, and viscoelastic fluids and that we rationalize by properly taking into account elastocapillary effects. In this framework, the classical impact dynamics of solids and liquids, as far as viscous dissipation is negligible, appears as the asymptotic limits of a universal theoretical description. A novel material-dependent characteristic velocity that includes both capillary and bulk elasticity emerges from this unified description of the physics of impact.

摘要

我们研究了由超软凝胶珠、液体和粘弹性液滴形成的自由膨胀片,这些液滴是由珠或液滴撞击覆盖有一层薄液氮的硅片产生的,液氮的逆 Leidenfrost 效应抑制了粘性耗散。我们的实验表明,对于冲击动力学,存在一种统一的行为,适用于固体、液体和粘弹性流体,我们通过适当考虑弹性毛细效应来合理地解释这种行为。在这个框架内,对于粘性耗散可以忽略不计的固体和液体的经典冲击动力学,表现为普遍理论描述的渐近极限。从这种冲击物理的统一描述中,出现了一种新的与材料相关的特征速度,它包括了毛细和体弹性。

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