Influence of the vibrations in the interfacial layer on the wettability of adhesized material interfacial formations in systems with d- and f-elements

E. Golubina, N. Kizim, A. Chekmarev
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Abstract

The effect of local vibration at interfacial layer of a heterogeneous liquid system on the wettability of the material of interfacial formations based on the salt of the d- or f-element of di-(2-ethylhexyl)phosphoric acid adhered to glass has been investigated. It is shown that in the field of mechanical vibrations one can obtain a material with a given value of the wetting angle, which has hydrophobic properties. It is established that the influence of mechanical vibrations is due to changes in the hydrodynamic situation in the transition region and is the result of complex interactions mainly hydrodynamic and coagulation processes in the interfacial layer of the di-(2-ethylhexyl)phosphoric acid - solvent system / water solution of the d- or f-element salt. The dependence of the wettability of the material of interfacial formations adhered to glass on the parameters of the force field (vibration frequency, amplitude), the design features of the experimental setup, and the composition of the system is shown.
d-和f-元素体系中界面层振动对黏附材料界面层润湿性的影响
研究了非均相液体体系界面层局部振动对二-(2-乙基己基)磷酸(d-或f-元素盐)与玻璃黏附界面形成材料润湿性的影响。结果表明,在机械振动领域,可以得到具有给定润湿角值的材料,该材料具有疏水性。确定了机械振动的影响是由于过渡区水动力情况的变化,是二-(2-乙基己基)磷酸-溶剂体系/ d或f元素盐水溶液界面层水动力和混凝过程复杂相互作用的结果。分析了玻璃界面层材料的润湿性与力场参数(振动频率、振幅)、实验装置的设计特点和系统组成的关系。
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