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Measurement of Water Film Thickness Due to Sipe Edges of Studless Tires

机译:无钉轮胎刀槽花纹边缘引起的水膜厚度的测量

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摘要

Water on an icy surface is wiped by the rubber sipe edges of studless tires. However, it has been proposed that water on an icy surface forms a thin film rather than being removed completely. Nonetheless, there have been relatively few studies on the contact conditions of rubber sipe edges and the formation of a water film due to wiping. In this study, the frictional properties and contact areas of model sipes of studless tires were measured. In addition, the thickness of the water film formed on the tread surface was estimated by optical interferometry. Three types of styrene butadiene rubber with different levels of hardness were used as rubber specimens. The experiment was conducted by varying both the number of rubber edges and the slope angle between the rubber specimens and the vertical direction of a glass disk. The coefficient of friction tended to decrease with increasing sliding speed at all slope angles, and the value of the coefficient of friction was decreased as the slope angle became large. Moreover, the contact area between the rubber edges and a glass disk with a slope angle of 0° tended to increase as the sliding speed increased. The thickness of the water film formed after wiping ranged from 0.98 to 1.70μm, and it increased as the slope angle increased.
机译:无钉轮胎的橡胶刀槽花纹边缘擦拭结冰表面上的水。然而,已经提出,冰表面上的水形成薄膜而不是被完全除去。但是,关于橡胶刀槽花纹边缘的接触条件和由于擦拭而形成水膜的研究相对较少。在这项研究中,测量了无钉轮胎模型刀槽花纹的摩擦性能和接触面积。另外,通过光学干涉法估计形成在胎面表面上的水膜的厚度。使用三种具有不同硬度水平的丁苯橡胶作为橡胶样品。通过改变橡胶边缘的数量和橡胶样品之间的倾斜角以及玻璃盘的垂直方向进行实验。在所有倾斜角下,摩擦系数都随着滑动速度的增加而减小,并且随着倾斜角变大,摩擦系数的值减小。而且,随着滑动速度的增加,橡胶边缘与倾斜角为0°的玻璃盘之间的接触面积趋于增加。擦拭后形成的水膜厚度为0.98至1.70μm,并且随着倾斜角度的增加而增加。

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