Forces Between Slurry Particles Due To Surface Tension

J. Woodrow, H. Chilton , R.I. Hawes
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引用次数: 13

Abstract

Equations are derived defining the shape of small bubbles or drops which may form between pairs of slurry particles, immersed in a liquid vehicle; the system considered is axially symmetric. The resultant bubble or drop shapes are also presented graphically.

The force which a bubble or drop may transmit between particles is derived and evaluated for some particular cases of interest.

In a system with only two components, any bubble must contain the vapour phase of the liquid vehicle, at reduced pressure. Such a bubble can only exist if the contact angle, measured in the liquid phase, exceeds 90° and it will always exert a cohesive force, holding the slurry particles in contact.

Three component systems can be formed with bubbles or immiscible liquid drops joining adjacent slurry particles, provided that the contact angle is greater than zero, and they may transmit a cohesive force. This was demonstrated qualitatively by experiments with glass particles in water which flocculated heavily when shaken in air and dispersed when de-aerated, or when the contact angle was reduced to zero.

When a liquid metal slurry is exposed to neutron irradiation, gas may be generated, and may cause flocculation by this mechanism. Degassing may prove to be difficult.

由于表面张力,浆料颗粒之间的力
推导了定义浸泡在液体载体中的泥浆颗粒对之间可能形成的小气泡或小液滴形状的方程;所考虑的系统是轴对称的。生成的气泡或水滴形状也用图形表示。对于一些感兴趣的特殊情况,推导和评估了气泡或液滴在粒子之间传递的力。在只有两个组分的系统中,任何气泡都必须在减压下包含液体载体的气相。只有在液相中测量的接触角超过90°时,这样的气泡才会存在,并且它会始终发挥粘结力,使浆体颗粒保持接触。只要接触角大于零,气泡或不相混的液滴加入相邻的浆料颗粒,可以形成三组分体系,并且它们可以传递粘结力。这可以通过玻璃颗粒在水中的实验定性地证明,这些玻璃颗粒在空气中摇晃时絮凝严重,在脱气或接触角降至零时分散。液态金属浆体在中子辐照下会产生气体,并由此产生絮凝作用。脱气可能被证明是困难的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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