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Bubble size and air content of wet fibre foams in axial mixing with macro-instabilities

机译:轴向不均匀混合时湿纤维泡沫的气泡大小和空气含量

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摘要

The air content and bubble size distribution in pure foams and in fibre foams were determined in axial mixing for varied rotation speed, liquid surface tension and wood fibre concentration. Onset of flow macro-instabilities was observed at high rotation speeds both with and without fibres. Before the instability, the bubble size decreased and air content increased with increasing rotation speed. After the instability, the air content was not only strongly affected by rotation speed but, interestingly, both the air content and bubble size increased with reduced surface tension. In both regions, the average bubble size could be explained based on the capillary number after the air content was explicitly included in the model. Added fibres reduced the bubble size in the stable mixing region and for low surface tension levels in the unstable mixing region. This was probably caused by increased shear forces due to inertia of fibres breaking up the large bubbles in the foam.
机译:在轴向混合条件下,测定纯泡沫和纤维泡沫中的空气含量和气泡大小分布,以改变转速,液体表面张力和木纤维浓度。在有和没有纤维的情况下,在高转速下都观察到流动宏观不稳定性的发生。在不稳定性之前,气泡的大小随着旋转速度的增加而减小,空气含量增加。不稳定之后,空气含量不仅受到转速的强烈影响,而且有趣的是,空气含量和气泡尺寸均随表面张力的降低而增加。在两个区域中,平均气泡大小可以在模型中明确包含空气含量后根据毛细管数来解释。添加的纤维减少了稳定混合区域中的气泡大小,并降低了不稳定混合区域中的低表面张力水平。这可能是由于纤维的惯性破坏了泡沫中的大气泡而导致的剪切力增加所致。

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