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Eliminating Friction with Friction: 2D Janssen Effect in a Friction-Driven System

机译:用摩擦消除摩擦:摩擦驱动系统中的2D Janssen效应

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The Janssen effect is a unique property of confined granular materials experiencing gravitational compaction in which the pressure at the bottom saturates with an increasing filling height due to frictional interactions with side walls. In this Letter, we replace gravitational compaction with frictional compaction. We study friction-compacted 2D granular materials confined within fixed boundaries on a horizontal conveyor belt. We find that even with high-friction side walls the Janssen effect completely vanishes. Our results demonstrate that gravity-compacted granular systems are inherently different from friction-compacted systems in at least one important way: vibrations induced by sliding friction with the driving surface relax away tangential forces on the walls. Remarkably, we find that the Janssen effect can be recovered by replacing the straight side walls with a sawtooth pattern. The mechanical force introduced by varying the sawtooth angle θ can be viewed as equivalent to a tunable friction force. By construction, this mechanical friction force cannot be relaxed away by vibrations in the system.
机译:Janssen效应是承压粒状材料经历重力压实的独特属性,其中由于与侧壁的摩擦相互作用,底部的压力随着填充高度的增加而饱和。在这封信中,我们用摩擦压实代替了重力压实。我们研究了限制在水平传送带上固定边界内的摩擦压实二维颗粒材料。我们发现,即使具有高摩擦力的侧壁,詹森效应也将完全消失。我们的结果表明,重力压缩的颗粒系统在至少一个重要方面与摩擦压缩的系统本质上是不同的:与驱动表面滑动摩擦引起的振动会消除壁上的切向力。值得注意的是,我们发现可以通过用锯齿形图案代替笔直的侧壁来恢复詹森效应。可以将通过改变锯齿角θ引入的机械力视为可调摩擦力。通过构造,该机械摩擦力不能通过系统中的振动而松弛。

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