【2h】

Rolling resistance of shallow granular deformation

机译:浅层颗粒变形的滚动阻力

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摘要

Experiments are conducted to measure the resistance experienced by light cylinders rolling over flat beds of granular media. Sand and glass spheres are used for the beds. The trajectories of the rolling cylinders are determined through optical tracking, and velocity and acceleration data are inferred through fits to these trajectories. The rolling resistance is dominated by a velocity-independent component, but a velocity-dependent drag exceeding the expected strength of air drag is also observed. The results are compared to a theoretical model based on a cohesionless Mohr–Coulomb rheology for a granular medium in the presence of gravity. The model idealizes the flow pattern underneath the rolling cylinder as a plastically deforming zone in front of a rigidly rotating plug attached to the cylinder, as proposed previously for cylinders rolling on perfectly cohesive plastic media. The leading-order, rate-independent rolling resistance observed experimentally is well reproduced by the model predictions.
机译:进行实验以测量轻型圆柱体在平板状颗粒介质床上滚动时遇到的阻力。床使用沙子和玻璃球。滚动缸的轨迹是通过光学跟踪确定的,而速度和加速度数据是通过拟合这些轨迹来推断的。滚动阻力主要由速度无关的分量决定,但是也观察到速度相关的阻力超过了预期的空气阻力强度。将结果与在重力作用下基于无粘性莫尔-库仑流变学的颗粒介质理论模型进行比较。该模型将滚动缸下面的流动模式理想化为附着在圆柱体上的刚性旋转塞子前面的塑性变形区,这是以前在完全粘结塑料介质上滚动的圆柱体所建议的。通过模型预测可以很好地再现实验观察到的前导,与速率无关的滚动阻力。

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