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'Gobbling drops': the jetting-dripping transition in flows of polymer solutions

机译:'滴滴':聚合物溶液流中的喷射-滴落过渡

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摘要

This paper discusses the breakup of capillary jets of dilute polymer solutions and the dynamics associated with the transition from dripping to jetting. High-speed digital video imaging reveals a new scenario of transition and breakup via periodic growth and detachment of large terminal drops. The underlying mechanism is discussed and a basic theory for the mechanism of breakup is also presented. The dynamics of the terminal drop growth and trajectory prove to be governed primarily by mass and momentum balances involving capillary, gravity and inertial forces, whilst the drop detachment event is controlled by the kinetics of the thinning process in the viscoelastic ligaments that connect the drops. This thinning process of the ligaments that are subjected to a constant axial force is driven by surface tension and resisted by the viscoelasticity of the dissolved polymeric molecules. Analysis of this transition provides a new experimental method to probe the rheological properties of solutions when minute concentrations of macromolecules have been added.
机译:本文讨论了稀聚合物溶液的毛细管射流的破裂以及与从滴落到喷射的过渡相关的动力学。高速数字视频成像揭示了通过周期性增长和分离大型终端液滴而发生过渡和破裂的新情况。讨论了潜在的机制,并提出了破坏机制的基本理论。最终液滴生长和轨迹的动力学主要受毛细,重力和惯性力的质量和动量平衡支配,而液滴分离事件则受连接液滴的粘弹性韧带变薄过程的动力学控制。受到恒定轴向力的韧带变薄过程是由表面张力驱动的,并受到溶解的聚合物分子的粘弹性的抵抗。对这种转变的分析提供了一种新的实验方法,可以在添加微量的大分子时探测溶液的流变特性。

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