Particle Technology Laboratory, Institute of Process Engineering, Department of Mechanical and Process Engineering, ETH Zurich, Sonneggstrasse 3, CH-8092 Zürich, Switzerland.
J Colloid Interface Sci. 2010 Feb 15;342(2):261-8. doi: 10.1016/j.jcis.2009.10.062. Epub 2009 Oct 29.
Soft-agglomerate restructuring, break-up (or fragmentation) and relaxation are studied in a simple shear flow by a discrete element method (DEM). The agglomerates, held together by van der Waals forces, rotate in the shear flow and are stretched into nearly linear structures (fractal dimension approaches unity) until they fracture at their weakest point resulting in lognormally-shaped fragment size distributions asymptotically. Individual fragments relax in the flow towards more compact agglomerates than the parent ones. The evolution of the average number of particles per fragment is described by generalized scaling laws between shear rate, onset (time-lag) of fragmentation, asymptotic fragment mass and size consistent with experimental and theoretical studies in the literature. The initial effective fractal dimension of the agglomerates influences the final one of the fragments.
采用离散单元法(DEM)研究了在简单剪切流中软团聚体的重构、破裂(或碎裂)和弛豫。团聚体由范德华力结合在一起,在剪切流中旋转并被拉伸成几乎线性的结构(分形维数接近 1),直到它们在最薄弱的点断裂,导致对数正态形状的碎片尺寸分布渐近。在流中,各个碎片会朝着比母团聚体更紧凑的团聚体松弛。碎片平均粒子数的演化由剪切速率、碎裂的起始(时滞)、渐近碎片质量和大小之间的广义标度定律描述,这与文献中的实验和理论研究一致。团聚体的初始有效分形维数会影响碎片的最终分形维数。