Laboratoire Charles Coulomb, UMR 5521 CNRS, Université de Montpellier, F-34095 CEDEX 05, Montpellier, France.
LOMA, UMR 5798 CNRS, Université de Bordeaux, F-33405 Cedex Talence, France.
Langmuir. 2017 Apr 11;33(14):3458-3467. doi: 10.1021/acs.langmuir.7b00170. Epub 2017 Mar 27.
A single-drop experiment based on the collision of one drop of liquid on a small solid target is used to produce liquid sheets that are visualized with a fast camera. Upon impact, the drop flattens into a sheet that is bounded by a thicker rim and radially expanding in air. Emulsion-based liquid sheets are destabilized through the nucleation of holes that perforate the sheet during its expansion. The holes grow until they merge together and form a web of ligaments, which are then destabilized into drops. We propose the perforation mechanism as a sequence of two necessary steps. The emulsion oil droplets first enter the air/water interface, and then spread at the interface. We show that the formulation of the emulsion is a critical parameter to control the perforation as the addition of salt or amphiphilic copolymers can trigger or completely inhibit the perforation mechanism. We demonstrate that the entering of the droplets at the air/water interface is the limiting step of the mechanism. Thin-film forces such as electrostatic or steric repulsion forces stabilize the thin film formed between the interface and the approaching oil droplets, thus preventing the entering of droplets at the interface and in turn inhibiting the perforation process. We theoretically rationalize the successive steps in the approach and entering of an oil droplet at the film interface and the role of salt and amphiphilic polymer in the different steps.
采用基于液滴滴在小固体靶上的碰撞的单滴实验来产生液膜,并用高速相机对其进行可视化。在撞击时,液滴会扁平化成为一个由较厚边缘和在空气中径向扩展的薄片。基于乳液的液膜通过孔的成核而失稳,这些孔在扩展过程中会穿透液膜。这些孔会不断生长,直到它们合并在一起形成一个韧带网络,然后这些韧带网络会失稳成液滴。我们提出穿孔机制是两个必要步骤的序列。乳液中的油滴首先进入空气/水界面,然后在界面处扩散。我们表明,乳液的配方是控制穿孔的关键参数,因为添加盐或两亲性共聚物可以触发或完全抑制穿孔机制。我们证明了油滴在空气/水界面处的进入是该机制的限制步骤。界面和接近的油滴之间形成的薄膜的薄型力(如静电或空间排斥力)会稳定薄膜,从而防止油滴在界面处进入,进而抑制穿孔过程。我们从理论上合理地解释了油滴在薄膜界面处的接近和进入的连续步骤,以及盐和两亲性聚合物在不同步骤中的作用。