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Multiscale physics of rubber-ice friction

机译:橡胶冰摩擦的多尺度物理学

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摘要

Ice friction plays an important role in many engineering applications, e.g., tires on icy roads, ice breaker ship motion, or winter sports equipment. Although numerous experiments have already been performed to understand the effect of various conditions on ice friction, to reveal the fundamental frictional mechanisms is still a challenging task. This study uses in situ white light interferometry to analyze ice surface topography during linear friction testing with a rubber slider. The method helps to provide an understanding of the link between changes in the surface topography and the friction coefficient through direct visualization and quantitative measurement of the morphologies of the ice surface at different length scales. Besides surface polishing and scratching, it was found that ice melts locally even after one sweep showing the refrozen droplets. A multi-scale rubber friction theory was also applied to study the contribution of viscoelasticity to the total friction coefficient, which showed a significant level with respect to the smoothness of the ice; furthermore, the theory also confirmed the possibility of local ice melting. Published by AIP Publishing.
机译:冰摩擦在许多工程应用中起着重要作用,例如,在结冰的道路上的轮胎,破冰船运动或冬季运动设备上。尽管已经进行了大量实验以了解各种条件对冰摩擦的影响,但是揭示基本的摩擦机理仍然是一项艰巨的任务。这项研究使用原位白光干涉测量法在使用橡胶滑块进行线性摩擦测试期间分析冰的表面形貌。通过直接可视化和定量测量不同长度尺度下冰面的形态,该方法有助于提供对表面形貌变化与摩擦系数之间联系的理解。除表面抛光和刮擦外,还发现即使经过一扫就显示出冰滴,冰也会局部融化。还应用了多尺度橡胶摩擦理论来研究粘弹性对总摩擦系数的贡献,这在冰的光滑度方面显示出显着水平。此外,该理论还证实了局部冰融化的可能性。由AIP Publishing发布。

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