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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >The influence of nanobubbles on the interaction forces between alumina particles and ceramic foam filters
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The influence of nanobubbles on the interaction forces between alumina particles and ceramic foam filters

机译:纳米泡对氧化铝颗粒与陶瓷泡沫过滤器相互作用的影响

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摘要

With decreasing wettability and rough surfaces the adhesion forces between the interacting surfaces shift to higher values. This is due to capillary bridging by nanobubbles which are sitting on one or both rough surfaces and cause capillary interactions. For particles, the coverage with such bubbles for different wettability and gas oversaturation is shown. Also, it is possible to identify three general types of force distance curves: curves with no capillary interactions, curves with capillary interactions but no repulsion during approach and curves with capillary interactions and a small repulsion just before snap-in. Possible reasons for repulsion are analysed and a calculation of Hamaker constants is presented. Furthermore, well-known models for adhesion on rough surfaces are compared with the experimental data. (C) 2019 Published by Elsevier B.V.
机译:随着润湿性和粗糙表面减小,相互作用表面之间的粘附力转移到更高的值。 这是由于纵向腹部腹桥,纳米骨毂坐在一个或两个粗糙表面上并引起毛细胞相互作用。 对于颗粒,显示出用于不同润湿性和气体过饱现的这种气泡的覆盖率。 此外,可以识别三种一般类型的力距离曲线:没有毛细胞相互作用的曲线,毛细血管相互作用的曲线,但在接近和毛细管相互作用的曲线和曲线中没有排斥,并且在快速前携带毛细血管相互作用和小的排斥。 分析了排斥的可能原因,并提出了哈布沙常数的计算。 此外,与实验数据进行比较粗糙表面上的众所周知的模型。 (c)2019年由elestvier b.v发布。

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