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The influence of acting forces on the rupture mechanism of wetting films - nucleation or capillary waves

机译:作用力对湿膜破裂机制的影响-成核或毛细波

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The mechanism of the rupture process of liquid films is not fully understood yet, particularly in the case of an asymmetric film between a solid surface and a gas bubble. There are two theoretical approaches describing this problem, (a) growing fluctuation waves (spinodal dewetting) on fluid interfaces under the influence of any kind of attractive forces (electrostatic, van-der-Waals, and maybe a so-called long-range hydrophobic force (LRHF)). This mechanism was first developed by Scheludko. (b) Nucleation inside the film, first proposed by Derjaguin. Metastable wetting films on negatively charged, hydrophobic glass surfaces (gaseous phase methylated), or on hydrophilic, positively charged glass surfaces (with Al-3 (+) ions), have been analyzed by means of the kinetics of film thinning according to the Reynolds law. These experiments demonstrate that (a) both mechanisms can be responsible for the rupture of a thin wetting film, in the case of hydrophobic surfaces the nucleation mechanism is preferred; in the case of an opposite charged silica surface the capillary waves mechanism due to an attractive electrostatic double layer force between silica and air bubble takes place, (b) the existence of a LRHF on a hydrophobic surface can be excluded. The apparent interaction can be explained by the presence of gas nuclei formed on heterogeneous surface sites. The results provide deeper insight into the mechanisms of wetting film stability, adhesion process in flotation and droplet coalescence. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 27]
机译:尚未完全理解液膜破裂过程的机理,特别是在固体表面和气泡之间的膜不对称的情况下。有两种理论上的方法来描述此问题,(a)在任何类型的吸引力(静电力,范德华力,以及也许是所谓的长距离疏水力)的影响下,流体界面上的波动波不断增长(螺线型去湿)力(LRHF))。该机制最早由Scheludko开发。 (b)影片内部的成核作用,最初是Derjaguin提出的。根据雷诺兹通过薄膜变薄的动力学分析了带负电荷的疏水性玻璃表面(气相甲基化)或带亲水性,带正电荷的玻璃表面(具有Al-3(+)离子)上的亚稳态润湿膜。法。这些实验表明:(a)两种机制都可能导致薄的润湿膜破裂,在疏水性表面的情况下,成核机制是优选的;在带相反电荷的二氧化硅表面的情况下,由于在二氧化硅和气泡之间产生了吸引人的静电双层力而产生了毛细波机理,(b)可以排除在疏水性表面上存在LRHF。明显的相互作用可以通过异质表面位点上形成的气核的存在来解释。结果为润湿膜稳定性,浮选过程中的粘附过程和液滴聚结的机理提供了更深入的见解。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:27]

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