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Bingham fluid contact line dynamics

机译:宾厄姆流体接触线动力学

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摘要

Contact line dynamics occurs in wetting and dewetting phenomena. The dynamics of the triple line (line of contact of the gas, liquid, and solid phases) is considered for a Bingham fluid. The previous analysis of de Gennes for Newtonian fluids is extended, considering the moving liquid near the triple line as having a perfect wedge border. The velocity profile near the contact line is obtained along with the size of the plug flow region. The viscous dissipation is found by limiting the liquid thickness to a lower limit of molecular size. The relation between the triple line velocity and the dynamic contact angle is obtained; the result requires trial and error calculations, and is shown to yield de Gennes' equation as the Bingham fluid yield stress tends to zero. The requirement for the ideal wedge approximation is considered.
机译:接触线动力学发生在润湿和反润湿现象中。对于宾厄姆流体,考虑了三重线(气相,液相和固相接触线)的动力学。考虑到三重线附近的运动液体具有理想的楔形边界,以前对牛顿流体的de Gennes分析得到了扩展。获得接触线附近的速度分布以及塞流区域的大小。通过将液体厚度限制在分子大小的下限来发现粘性耗散。得到三线速度与动态接触角的关系。结果需要反复试验,并显示出因宾汉流体屈服应力趋于零而产生的de Gennes方程。考虑理想楔形近似的要求。

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