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通过颗粒参数和流动条件控制椭球填充聚合物乳液中的液滴取向。

Controlling the Orientation of Droplets in Ellipsoid-Filled Polymeric Emulsions with Particle Parameters and Flow Conditions.

机构信息

College of polymer science and engineering, State key laboratory of polymer materials engineering of China, Sichuan University , No. 24 South Section 1, Yihuan Road, Chengdu 610065, China.

School of Aeronautics and Astronautics, Sichuan University , No. 24 South Section 1, Yihuan Road, Chengdu 610065, China.

出版信息

Langmuir. 2017 Oct 10;33(40):10577-10587. doi: 10.1021/acs.langmuir.7b02240. Epub 2017 Sep 28.

Abstract

The effect of particle parameters [aspect ratio (AR) and concentration] and flow conditions (gap spacing and shear rate) on droplet orientation deformation behavior in polystyrene (PS) particle-filled binary polymeric emulsions is investigated by using a rheo-optical technique and confocal microscopy. Interesting vorticity orientation behavior is achieved by tailoring experimental conditions to yield rigid anisotropic droplets during slow confined shear flow. PS ellipsoids with a high AR are found to reside both at the fluid interface in a monolayer side-on state and inside droplets, leading to the formation of rigid anisotropic droplets because of the interfacial/bulk jamming effect at appropriate particle concentrations. In unconfined bulk samples, droplets with a vorticity orientation can also be observed under the wall migration effect and confinement effect arising from nearby droplets. However, the overly strong wall confinement effect remarkably facilitates the coalescence of vorticity-aligned droplets during slow shear, eventually leading to the formation of a long stringlike phase aligning along the flow direction. High shear rates generate refined droplets with lower particle coverage and weak rigidity, which restrain the formation of anisotropic droplets and thus suppress the droplet vorticity orientation.

摘要

采用流变光学技术和共焦显微镜研究了颗粒参数(纵横比(AR)和浓度)和流动条件(间隙间距和剪切速率)对聚苯乙烯(PS)颗粒填充二元聚合物乳液中液滴取向变形行为的影响。通过调整实验条件,在缓慢受限剪切流中得到刚性各向异性液滴,从而实现了有趣的涡度取向行为。高纵横比的 PS 椭球体既存在于单层侧位的流体界面处,也存在于液滴内部,由于在适当的颗粒浓度下存在界面/体相阻塞效应,导致形成了刚性各向异性液滴。在无约束的块状样品中,由于壁移效应和附近液滴产生的约束效应,也可以观察到具有涡度取向的液滴。然而,过度强烈的壁约束效应显著促进了缓慢剪切过程中涡度对齐液滴的聚结,最终导致形成沿流动方向排列的长串状相。高剪切速率产生具有较低颗粒覆盖率和较弱刚性的细化液滴,这抑制了各向异性液滴的形成,从而抑制了液滴的涡度取向。

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