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Avoiding clogs: the shape of arches and their stability against vibrations

机译:避免木屐:拱门的形状和他们对振动稳定性

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摘要

A distinctive feature of discrete solids is their ability to form arches. These mechanically stable structures alter the isotropy of granular packings and can arrest the motion of grains when, for example, they flow through a bottleneck. Breaking arches can be achieved by means of an external vibration, which effectively eliminates clogging. Indeed, these phenomena and procedures are quite common in industrial applications. Nevertheless, there are not rigorous, well founded criteria to determine the most efficient way to break arches and restore the flow of grains. This happens in part because it is not known which are the relevant characteristics that boost the arch strength. In the experiment presented here, we have carried out a statistical analysis of the arches that block the exit orifice at the bottom of a two dimensional silo, and described theirgeometrical properties. We then submit the silo to an external vibration. We find that the larger the outlet size, the weaker the arches that clog it. This dependence is just the outcome of a more complicated process that involves geometrical defects inthe arch. The defects a are quantitatively defined in terms of contact angles and we show that this is a key factor regarding the endurance of arches.
机译:离散实体的一个显着特征是其形成拱形的能力。这些机械稳定的结构改变了颗粒状填充物的各向同性,并且例如在它们通过瓶颈流动时可以阻止颗粒的运动。可以通过外部振动来实现拱起,从而有效地消除堵塞。实际上,这些现象和程序在工业应用中非常普遍。然而,目前还没有严格,完善的标准来确定最有效的破拱和恢复谷物流的方法。之所以会发生这种情况,部分原因是未知的是哪些特征会增强足弓强度。在此处介绍的实验中,我们对阻塞了二维筒仓底部出口的拱门进行了统计分析,并描述了它们的几何特性。然后,我们将筒仓置于外部振动下。我们发现,出口尺寸越大,阻塞其的拱形越弱。这种依赖性仅仅是涉及弓形几何缺陷的更复杂过程的结果。缺陷a根据接触角进行了定量定义,我们证明这是有关拱形耐久性的关键因素。

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