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A surface topography analysis of the curling stone curl mechanism

机译:卷曲石卷曲机理的表面形貌分析

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摘要

The curling motion of the curling stone on ice is well-known: if a small clockwise rotational velocity is imposed to the stone when it is released, in addition to the linear propagation velocity, the stone will curl to the right. A similar curl to the left is obtained by counter-clockwise rotation. This effect is widely used in the game to reach spots behind the already thrown stones, and the rotation also causes the stone to propagate in a more predictable fashion. Here, we report on novel experimental results which support one of the proposed theories to account for the curling motion of the stone, known as the “scratch-guiding theory”. By directly scanning the ice surface with a white light interferometer before and after each slide, we observed cross-scratches caused by the leading and trailing parts of the circular contact band of the linearly moving and rotating stone. By analyzing these scratches and a typical curling stone trajectory, we show that during most of the slide, the transverse force responsible for the sideways displacement of the stone is linearly proportional to the angle between these cross-scratches.
机译:冰壶冰壶在冰上的冰壶运动是众所周知的:如果在释放冰壶石时对其施加小的顺时针旋转速度,除了线性传播速度外,冰壶石还会向右卷曲。逆时针旋转可获得与左侧相似的卷曲。该效果在游戏中被广泛使用,以到达已经扔出的石头后面的斑点,并且旋转还使石头以更可预测的方式传播。在这里,我们报告了新颖的实验结果,这些结果支持了提出的一种理论来解释石材的卷曲运动,即所谓的“划痕导向理论”。通过在每次滑动之前和之后使用白光干涉仪直接扫描冰表面,我们观察到由线性移动和旋转的石头的圆形接触带的前部和尾部引起的划痕。通过分析这些划痕和典型的冰壶曲折轨迹,我们可以看出,在大多数滑动过程中,负责石块侧向移动的横向力与这些横划痕之间的角度成线性比例。

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