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Force percolation transition of jammed granular systems

机译:堵塞粒状系统的力渗透过渡

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摘要

Themechanical and transport properties of jammedmaterials originate from an underlying percolating network of contact forces between the grains. Using extensive simulations we investigate the force-percolation transition of this network, where two particles are considered as linked if their interparticle force overcomes a threshold. We show that this transition belongs to the random percolation universality class, thus ruling out the existence of long-range correlations between the forces. Through a combined size and pressure scaling for the percolative quantities, we show that the continuous force percolation transition evolves into the discontinuous jamming transition in the zero pressure limit, as the size of the critical region scales with the pressure.
机译:卡住材料的机械和运输性质来自谷物之间的接触力的底层渗透网络。 使用广泛的仿真,我们研究了该网络的力渗透转变,其中如果它们的颗粒力克服阈值,则认为两个颗粒被认为是连接的。 我们表明这种转变属于随机渗透普遍性等级,从而统治力之间的远程相关性。 通过组合的尺寸和压力缩放来渗透量,我们表明连续力渗透转变在零压极限中的不连续干扰过渡演变为零压力限制,因为临界区域的尺寸与压力缩放。

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