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Multiscale analysis of the effects of changing gravity on stress propagation in a material subject to an indenting rigid flat punch

机译:重力变化对刚性平冲头材料中应力传播的影响的多尺度分析

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The effects of changing gravity on force transmission within a particulate material that is subject to indentation on its surface by a frictionless rigid flat punch is examined. Particular attention is given to the development of the force chain network as indentation proceeds. As gravity decreased, or, as packing fraction increased, the spatial distribution of the force chain network changed from a dense, tangled network to one consisting of less tangled, longer chains. The distribution of chain lengths was found to be exponential. The magnitude of the resistance force experienced by the punch as it indents scaled with gravity, as did the magnitude of the fluctuations in the load-deflection relation. Using the force chain network, the origin of these fluctuations was examined. Consistent with experiments (Ngadi & Rajchenbach, 98; Geng & Behringer, 05; Albert, 00; Howell, 99), the fluctuations in the load-deflection graphs were found to be due to the formation and collapse of force chains. The collapse of force chains was found to be correlated with the transition from solid-like behaviour to liquid-like behaviour of the material, that is, the transition regime at which dilatation and large particle rotations occur in the material surrounding the punch corners.
机译:研究了重力变化对颗粒材料内力传递的影响,该颗粒材料通过无摩擦的刚性平冲头在其表面上产生凹痕。随着压痕的进行,特别注意力链网络的发展。随着重力的降低,或随着装填分数的增加,力链网络的空间分布从密集的,缠结的网络变为由较少缠结的较长链组成的网络。发现链长的分布是指数的。当冲头随着重力缩进时,其承受的阻力大小以及载荷-挠度关系中的波动幅度也是如此。使用力链网络,检查了这些波动的起因。与实验一致(Ngadi和Rajchenbach,98; Geng和Behringer,05; Albert,00; Howell,99),发现载荷-挠度图中的波动是由于力链的形成和破坏。发现力链的崩溃与材料的从固体状到液体状的转变有关,也就是说,在冲头拐角周围的材料中发生膨胀和大颗粒旋转的转变状态。

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