Computer simulation of random loose packings of micro-particles in presence of adhesion and friction
arXiv:1511.02315 · doi:10.1016/j.powtec.2016.08.068
Abstract
With a novel 3D discrete-element method specially developed with adhesive contact mechanics, random loose packings of uniform spherical micron-sized particles are fully investigated. The results show that large velocity, large size or weak adhesion can produce a relatively dense packing when other parameters are fixed, and these combined effects can be characterized by a dimensionless adhesion parameter ( ). Four regimes are identified based on the value of : RCP regime with ; RLP regime with ; adhesion regime with and an asymptotic regime with . Force distribution of these adhesive loose packings follows for small forces and for big forces, respectively, which shares a similar form with that in packings without adhesion but results in distinct exponents of , . A local mechanical equilibrium analysis shows that adhesion enhances both sliding and rolling resistance so that fewer neighbours are needed to satisfy the force and torque balance.
12 pages, 10 figures