Toiya Masahiro, Stambaugh Justin, Losert Wolfgang
Institute for Research in Electronics and Applied Physics, University of Maryland, College Park, MD 20742, USA.
Phys Rev Lett. 2004 Aug 20;93(8):088001. doi: 10.1103/PhysRevLett.93.088001. Epub 2004 Aug 18.
The forces and particle motion during transient and oscillatory shear of granular material are investigated experimentally. In a shear cell of Taylor-Couette-type we find that how a granular shear flow starts depends strongly on the prior shear direction. If the shear direction is reversed, the material goes through a transient period during which the material compacts, the shear force is small, and the shear band is wide. Three-dimensional confocal imaging of particle rearrangements during shear reversal shows that bulk and surface flows are comparable. Repeated reversals, or oscillations of the shear direction, lead to additional compaction, which can be described by a stretched exponential, similar to compaction induced by tapping.
对颗粒材料在瞬态和振荡剪切过程中的力和颗粒运动进行了实验研究。在泰勒-库埃特型剪切池中,我们发现颗粒剪切流的起始方式强烈依赖于先前的剪切方向。如果剪切方向反转,材料会经历一个瞬态阶段,在此期间材料压实,剪切力较小,剪切带较宽。剪切反转过程中颗粒重排的三维共聚焦成像显示,整体流动和表面流动相当。重复反转或剪切方向的振荡会导致额外的压实,这可以用拉伸指数来描述,类似于敲击引起的压实。