Department of Physics and Center for Nonlinear and Complex Systems, Duke University, Durham, North Carolina 27708, USA.
Phys Rev Lett. 2012 Dec 7;109(23):238302. doi: 10.1103/PhysRevLett.109.238302.
We perform an experimental study of granular impact, where intruders strike 2D beds of photoelastic disks from above. High-speed video captures the intruder dynamics and the local granular force response, allowing investigation of grain-scale mechanisms in this process. We observe rich acoustic behavior at the leading edge of the intruder, strongly fluctuating in space and time, and we show that this acoustic activity controls the intruder deceleration, including large force fluctuations at short time scales. The average intruder dynamics match previous studies using empirical force laws, suggesting a new microscopic picture, where acoustic energy is carried away and dissipated.
我们进行了一项关于颗粒冲击的实验研究,入侵者从上方撞击二维的光弹性盘床。高速视频捕捉到了入侵者的动力学和局部颗粒力响应,从而可以研究这个过程中的颗粒尺度机制。我们观察到了入侵者前缘丰富的声波行为,其在空间和时间上都有强烈的波动,并且我们表明这种声活动控制了入侵者的减速,包括短时间尺度上的大力量波动。平均入侵者动力学与使用经验力定律的先前研究相匹配,这表明了一种新的微观图景,其中声能被带走并耗散。