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Wall slipping behavior of foam with nanoparticle-armored bubbles and its flow resistance factor in cracks

机译:纳米颗粒铠装泡沫泡沫的壁滑行为及其在裂缝中的流动阻力因子

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摘要

In this work, wall slipping behavior of foam with nanoparticle-armored bubbles was first studied in a capillary tube and the novel multiphase foam was characterized by a slipping law. A crack model with a cuboid geometry was then used to compare with the foam slipping results from the capillary tube and also to evaluate the flow resistance factor of the foam. The results showed that the slipping friction force F FR in the capillary tube significantly increased by addition of modified SiO2 nanoparticles, and an appropriate power law exponents by fitting F FR vs. Capillary number, Ca, was 1/2. The modified nanoparticles at the surface were bridged together and formed a dense particle “armor” surrounding the bubble, and the interconnected structures of the “armor” with strong steric integrity made the surface solid-like, which was in agreement with the slip regime associated with rigid surface. Moreover, as confirmed by 3D microscopy, the roughness of the bubble surface increased with nanoparticle concentration, which in turn increased the slipping friction force. Compared with pure SDBS foam, SDBS/SiO2 foam shows excellent stability and high flow resistance in visual crack. The resistance factor of SiO2/SDBS foam increased as the wall surface roughness increased in core cracks.
机译:在这项工作中,首先在毛细管中研究了带有纳米粒子铠装泡沫的泡沫的壁滑行为,并且该新型多相泡沫具有滑移定律的特征。然后使用具有长方体几何形状的裂纹模型与毛细管的泡沫滑移结果进行比较,并评估泡沫的流阻系数。结果表明,通过添加改性的SiO2纳米颗粒,毛细管中的滑动摩擦力F FR显着增加,并且通过拟合F FR与毛细管数Ca的合适幂律指数为1/2。表面的改性纳米粒子桥接在一起,形成围绕气泡的致密粒子“铠装”,“铠装”的相互连接的结构具有很强的空间完整性,使表面呈固体状,这与相关的滑移机制相符表面坚硬。而且,如通过3D显微镜所证实的,气泡表面的粗糙度随着纳米颗粒浓度而增加,这继而增加了滑动摩擦力。与纯SDBS泡沫相比,SDBS / SiO2泡沫在视觉裂纹方面显示出出色的稳定性和高流动性。 SiO2 / SDBS泡沫的阻力因数随芯裂纹壁表面粗糙度的增加而增加。

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