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Direct measurement of interaction force between solid surface and air bubble: Relationship between interaction force and contact angle

机译:直接测量固体表面和气泡之间的相互作用力:相互作用力与接触角之间的关系

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摘要

Estimating the hydrophobicity of a solid surface is important for flotation process. Measuring the contact angle or interaction force between air bubbles and a solid surface has been widely used for evaluating the hydrophobicity of surfaces. However, the correlation between the contact angle and interaction force was not be fully explained because contact angle was measured on a macroscale surface and interaction force was measured on a microscale surface (ranging nm(2) - mu m(2)) using atomic force microscopy. In this study, we directly measured the macroscale surface - air bubble interaction force in terms of attachment force and detachment energy. We then correlated our measured attachment force and detachment energy values with the static contact angle of specimen surface. The attachment force (F-a) and detachment energy in phase 2 (E-2) represented the hydrophobicity of specimen surface. And F-a and E-d in phase 2 were found to have an exponential relationship until 90 degrees of the surface contact angle.
机译:估计固体表面的疏水性对于浮选过程很重要。测量气泡和固体表面之间的接触角或相互作用力已广泛用于评估表面的疏水性。然而,没有得到完全解释接触角和相互作用力之间的相关性,因为在宏观上测量接触角,并且在使用原子力的微观表面(测距NM(2) - mu m(2))上测量相互作用力显微镜。在这项研究中,我们在附着力和分离能方面直接测量宏观表面 - 气泡相互作用力。然后,我们将测量的附接力和分离能值与样本表面的静态接触角相关联。相位2(E-2)中的附接力(F-A)和脱离能表示样品表面的疏水性。发现阶段2中的F-A和E-D具有指数关系,直到90度的表面接触角。

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