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Determining the mechanical response of particle-laden fluid interfaces using surface pressure isotherms and bulk pressure measurements of droplets

机译:使用表面压力等温线和液滴的体压测量确定载有颗粒的流体界面的机械响应

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The mechanical response of particle-laden fluid interfaces is determined by measuring the internal pressures of particle-coated drops as a function of the drop volume. The particle monolayers undergoing compression-expansion cycles exhibit three distinct states: fluid state, jammed state, and buckled state. The P-V curves are compared to the surface pressure isotherms U-A that are measured using a Langmuir trough and a Wilhelmy plate on a flat water-decane interface covered with the same particles. We find that in the fluid and jammed states, the water drop in decane can be described by the Young-Laplace equation. Therefore in these relatively low compression states, the bulk pressure measurements can be used to deduce the interfacial tension of the droplets and yield similar surface pressure isotherms to the ones measured with the Wilhelmy plate. In the buckled state, the internal pressure of the drop yields a zero value, which is consistent with the zero interfacial tension measured with the Wilhelmy plate. Moreover we find that the compressibility in the jammed state does not depend on the particle size.
机译:载有颗粒的流体界面的机械响应是通过测量颗粒涂覆的液滴的内部压力(取决于液滴体积)来确定的。经历压缩-膨胀循环的颗粒单层表现出三种不同的状态:流体状态,阻塞状态和弯曲状态。将P-V曲线与表面压力等温线U-A进行比较,等温线U-A使用Langmuir槽和Wilhelmy板在覆盖有相同颗粒的平坦水-癸烷界面上测量。我们发现,在流体状态和阻塞状态下,癸烷中的水滴可以用Young-Laplace方程描述。因此,在这些相对较低的压缩状态下,体压测量值可用于推导液滴的界面张力,并产生与用Wilhelmy板测量的表面压力等温线相似的等温线。在屈曲状态下,液滴的内部压力产生一个零值,该值与用威廉希尔板测得的零界面张力一致。此外,我们发现在阻塞状态下的可压缩性不取决于颗粒尺寸。

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