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HYDROPHOBIC SURFACE ROUGHNESS CONTACTLESS FRACTAL CONTROL METHOD

机译:疏水表面粗糙度无接触分形控制方法

摘要

FIELD: monitoring devices.;SUBSTANCE: invention relates to means of controlling microroughnesses of surfaces, obtained by mechanical engineering operations on a rough surface, for example paraffin, wax, refractories, etc. Claimed hydrophobic surface roughness non-contact fractal control method is that the hydrophobic surface under investigation is cleaned by plasma-chemical etching under the inert gas environment under conditions preventing the investigated surface material sputtering. Immediately after cleaning, a liquid in the form of the fixed volume drop is applied to the surface; by means of high-speed digital video recording two times registering time of the fixed volume liquid drop spreading along the investigated hydrophobic surface and at the fixed volume liquid drop spreading cessation times, determining the spread liquid drop perimeter and area. Wherein the spread liquid drop perimeter and area second registration is carried out after that, by means of the oscillations source with a controlled frequency the investigated hydrophobic surface with a drop spreading over it is subjected to the oscillations with amplitude, commensurate with the estimated parameter Ra (microrelief) of the investigated hydrophobic surface and frequency, which varies according to the linear law. At that, increase in the frequency occurs until the fixed volume liquid drop spreading stops; according to the obtained data, the rough surface under investigation fractal dimension D is determined.;EFFECT: enabling possibility of hydrophobic materials surface roughness contactless control, while expanding the range of materials under study.;1 cl, 1 dwg
机译:技术领域本发明涉及控制表面的微粗糙度的装置,该表面的粗糙度是通过机械工程操作在粗糙表面上获得的,例如石蜡,蜡,耐火材料等。要求保护的疏水性表面粗糙度非接触分形控制方法是在惰性气体环境中,在防止被研究表面材料溅射的条件下,通过等离子化学蚀刻清洁被研究的疏水表面。清洁后,立即将固定体积的液滴形式的液体涂在表面上。通过高速数字视频记录,两次记录沿所研究的疏水表面散布的固定体积液滴的时间和在固定体积的液滴散布停止时间的两次记录时间,确定散布液滴的周长和面积。在此之后,进行散布的液滴周长和面积的第二次配准,之后,借助于具有受控频率的振荡源,在其上散布有液滴的所研究的疏水表面经受与估计参数Ra相对应的振幅振荡。 (微浮雕)研究的疏水表面和频率,根据线性规律而变化。此时,直到固定体积的液滴散布停止为止,频率增加。根据所获得的数据,确定待研究的粗糙表面的分形维数D。效果:使疏水性材料的表面粗糙度可以进行非接触控制,同时扩大了待研究材料的范围。1 cl,1 dwg

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