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Experimental determination of interfacial tension by different dynamical methods under simple shear flow conditions with a novel computer-controlled parallel band apparatus

机译:新型计算机控制的平行带装置在简单剪切流动条件下通过不同动力学方法进行界面张力的实验测定

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We present experimental investigations on droplet deformation under simple shear flow conditions,using a computer-controlled parallel hand apparatus and an optical device which allows us to record the time dependence of the droplet shape.Several methods are applied to determine the interfacial tension from the observed shape and relaxation mechanism.Specific software developed in our laboratory allows the droplet to be fixed in a certain position for extended times,in fact,indefinite.This is an advantage over most other work done in this area,where only limited time is available.In our experiments,the transient deformation of sheared droplets can be observed to reach the steady state.The measured systems were Newtonian,both droplet and fluid phase.Droplet deformation,orientation angle and retraction were studied and compared to several models.The interfacial tension of the different systems was calculated using the theories of Taylor,Rallison,and Hinch and Acrivos.The results obtained from the analysis of the droplet deformation were in very good agreement with drop detachment experiments of Feigl and co-workers.The study of orientation angle shows qualitative agreement to the theory of Hinch and Acrivos but reveals larger quantitative discrepancies for several empirical fitting parameters of the used model.Analysis of the relaxation of sheared drops provided estimates of the interfacial tension that were in very good agreement with the steady-state measurements.
机译:我们使用计算机控制的平行手装置和光学装置对简单剪切流条件下的液滴变形进行了实验研究,该光学装置使我们能够记录液滴形状随时间的变化。采用多种方法来确定所观察到的界面张力形状和松弛机制。我们实验室开发的特定软件可以将液滴固定在某个位置上更长的时间,实际上是无限期的。这是相对于该领域中其他大多数工作(时间有限)而言的优势。在我们的实验中,可以观察到剪切液滴的瞬时变形达到稳态。所测量的系统是牛顿,液滴和流体相。研究液滴的变形,取向角和收缩并与几种模型进行比较。使用Taylor,Rallison,Hinch和Acrivos的理论计算了不同的系统。取向角的研究显示了与Hinch和Acrivos理论的定性一致性,但揭示了在液滴变形的分析中与Feigl及其同事的液滴分离实验非常吻合。对剪切液滴松弛的分析提供了界面张力的估计值,该估计值与稳态测量值非常吻合。

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