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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >An Analysis of Bubble Deformation by a Sphere Relevant to the Measurements of Bubble-Particle Contact Interaction and Detachment Forces
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An Analysis of Bubble Deformation by a Sphere Relevant to the Measurements of Bubble-Particle Contact Interaction and Detachment Forces

机译:与气泡-颗粒接触相互作用和分离力的测量有关的球的气泡变形分析

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Atomic force microscopy makes it possible to measure the interacting forces between individual colloidal particles and air bubbles, which can provide a measure of the particle hydrophobicity. To indicate the level of hydrophobicity of the particle, the contact angle can be calculated, assuming that no interfacial deformation occurs with the bubble retaining a spherical profile. Our experimental results obtained using a modified sphere tensiometry apparatus to detach submillimeter spherical particles show that deformation of the bubble interface does occur during particle detachment. We also develop a theoretical model to describe the equilibrium shape of the bubble meniscus at any given particle position, based on the minimization of the free energy of the system. The developed model allows us to analyze high-speed video captured during detachment. In the system model deformation of the bubble profile is accounted for by the incorporation of a Lagrange multiplier into both the Young-Laplace equation and the force balance. The solution of the bubble profile matched to the high-speed video allows us to accurately calculate the contact angle and determine the total force balance as a function of the contact point of the bubble on the particle surface.
机译:原子力显微镜可以测量单个胶体颗粒与气泡之间的相互作用力,从而可以测量颗粒的疏水性。为了表明颗粒的疏水性水平,可以假设在气泡保持球形轮廓的情况下不发生界面变形的情况下,可以计算接触角。我们的实验结果使用改进的球形张力测定仪来分离亚毫米级球形颗粒,结果表明在分离过程中确实发生了气泡界面的变形。我们还基于系统自由能的最小化,开发了一个理论模型来描述在任何给定粒子位置处气泡弯月面的平衡形状。开发的模型使我们能够分析在分离期间捕获的高速视频。在系统模型中,气泡分布的变形是通过将拉格朗日乘数纳入Young-Laplace方程和力平衡来解决的。与高速视频匹配的气泡轮廓的解决方案使我们能够准确地计算接触角并确定总力平衡,该总力平衡是气泡在粒子表面上的接触点的函数。

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