Forsyth AJ, Rhodes MJ
Department of Chemical Engineering, Monash University, Wellington Road, Clayton, Victoria, 3168, Australia
J Colloid Interface Sci. 2000 Mar 1;223(1):133-138. doi: 10.1006/jcis.1999.6630.
The van der Waals interaction between perfectly spherical, infinitely hard spheres is well understood. Unfortunately, real powder particles are not infinitely hard and rarely spherical. Those particles that are approximately spherical are often covered in small asperities. It is often believed that the size of these asperities dominates the cohesive force between powder particles. This paper rigorously examines this phenomenon and demonstrates the regimes over which the asperities dominate the cohesive force and when the particle size dominates. Deformation of particles is also investigated with a simple model and is shown to produce a significant increase in cohesive force. We demonstrate that previous simple models for calculating the effect of deformation are inadequate, as they ignore effects that can be as large as the correction they suggest. This can lead to an underestimation of the cohesive force by a factor of approximately 2. Copyright 2000 Academic Press.
完美球形、无限硬球体之间的范德华相互作用已得到很好的理解。不幸的是,实际的粉末颗粒并非无限硬,而且很少是球形的。那些近似球形的颗粒表面往往布满小凸起。人们通常认为这些凸起的大小主导着粉末颗粒之间的内聚力。本文对这一现象进行了严格研究,证明了凸起主导内聚力的范围以及颗粒尺寸主导内聚力的情况。还通过一个简单模型研究了颗粒的变形,结果表明变形会使内聚力显著增加。我们证明,以前用于计算变形影响的简单模型并不充分,因为它们忽略了与它们所建议的修正一样大的影响。这可能导致内聚力被低估约2倍。版权所有2000年学术出版社。