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Ligament Mediated Fragmentation of Viscoelastic Liquids

机译:韧带介导的粘弹性液体破碎

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摘要

The breakup and atomization of complex fluids can be markedly different than the analogous processes in a simple Newtonian fluid. Atomization of paint, combustion of fuels containing antimisting agents, as well as physiological processes such as sneezing are common examples in which the atomized liquid contains synthetic or biological macromolecules that result in viscoelastic fluid characteristics. Here, we investigate the ligament-mediated fragmentation dynamics of viscoelastic fluids in three different canonical flows. The size distributions measured in each viscoelastic fragmentation process show a systematic broadening from the Newtonian solvent. In each case, the droplet sizes are well described by Gamma distributions which correspond to a fragmentation-coalescence scenario. We use a prototypical axial step strain experiment together with high-speed video imaging to show that this broadening results from the pronounced change in the corrugated shape of viscoelastic ligaments as they separate from the liquid core. These corrugations saturate in amplitude and the measured distributions for viscoelastic liquids in each process are given by a universal probability density function, corresponding to a Gamma distribution with n(min) = 4. The breadth of this size distribution for viscoelastic filaments is shown to be constrained by a geometrical limit which can not be exceeded in ligament-mediated fragmentation phenomena.
机译:与简单牛顿流体中的类似过程相比,复杂流体的分解和雾化过程可以显着不同。油漆的雾化,含有防雾剂的燃料的燃烧以及诸如喷嚏的生理过程是常见的例子,其中雾化的液体含有合成或生物大分子,这些大分子导致粘弹性流体的特性。在这里,我们研究在三种不同的规范流中的韧带介导的粘弹性流体的破碎动力学。在每个粘弹性破碎过程中测得的尺寸分布显示出从牛顿溶剂开始的系统扩展。在每种情况下,液滴大小都可以通过Gamma分布很好地描述,该分布对应于碎片聚结的情况。我们使用原型轴向阶跃应变实验以及高速视频成像来显示,这种扩展是由于粘弹性韧带从液芯中分离出来时,其波纹形状发生了明显变化。这些波纹的振幅会饱和,并且每个过程中粘弹性液体的测量分布均由通用概率密度函数给出,对应于n(min)= 4的Gamma分布。粘弹性丝的这种尺寸分布的广度显示为受到几何极限的限制,这在韧带介导的碎裂现象中不能超过。

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  • 来源
    《Physical review letters》 |2016年第15期|154502.1-154502.6|共6页
  • 作者单位

    MIT, Dept Mech Engn, Hatsopoulos Microfluids Lab, Cambridge, MA 02139 USA;

    Axalta Coating Syst, 2 Commerce Sq,2001 Market St,Suite 3600, Philadelphia, PA 19103 USA;

    Axalta Coating Syst, 2 Commerce Sq,2001 Market St,Suite 3600, Philadelphia, PA 19103 USA;

    Axalta Coating Syst, 2 Commerce Sq,2001 Market St,Suite 3600, Philadelphia, PA 19103 USA;

    MIT, Dept Mech Engn, Hatsopoulos Microfluids Lab, Cambridge, MA 02139 USA;

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