Sliding Friction of Hard Sliders on Rubber: Theory and Experiment

IF 3.3 3区 工程技术 Q2 ENGINEERING, CHEMICAL
R. Xu, B. N. J. Persson
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Abstract

We present a study of sliding friction for rigid triangular steel sliders on soft rubber substrates under both lubricated and dry conditions. For rubber surfaces lubricated with a thin film of silicone oil, the measured sliding friction at room temperature agrees well with theoretical predictions obtained from a viscoelastic model originally developed for rolling friction. On the lubricated surface, the sliding friction is primarily due to bulk viscoelastic energy dissipation in the rubber. The model, which includes strain-dependent softening of the rubber modulus, accurately predicts the experimental friction curves. At lower temperatures (\(T = -20^\circ \textrm{C}\) and \(-40^\circ \textrm{C}\)), the measured friction exceeds the theoretical prediction. We attribute this increase to penetration of the lubricant film by surface asperities, leading to a larger adhesive contribution. For dry surfaces, the adhesive contribution becomes dominant. By subtracting the viscoelastic component inferred from the lubricated case, we estimate the interfacial frictional shear stress. This shear stress increases approximately linearly with the logarithm of the sliding speed, consistent with stress-augmented thermal activation mechanisms.

硬滑块在橡胶上的滑动摩擦:理论与实验
我们提出了在润滑和干燥条件下软橡胶基板上的刚性三角形钢滑块滑动摩擦的研究。对于用硅油薄膜润滑的橡胶表面,在室温下测量的滑动摩擦与最初为滚动摩擦开发的粘弹性模型的理论预测吻合得很好。在润滑表面,滑动摩擦主要是由于橡胶中的大块粘弹性能量耗散。该模型考虑了橡胶模量随应变的软化,能够准确地预测实验摩擦曲线。在较低的温度下(\(T = -20^\circ \textrm{C}\)和\(-40^\circ \textrm{C}\)),测量的摩擦超过理论预测。我们将这种增加归因于表面凸起对润滑膜的渗透,从而导致更大的粘合剂贡献。对于干燥的表面,粘合剂的贡献成为主导。通过减去从润滑情况推断的粘弹性分量,我们估计了界面摩擦剪应力。剪切应力随滑动速度的对数近似线性增加,与应力增强热激活机制一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Tribology Letters
Tribology Letters 工程技术-工程:化工
CiteScore
5.30
自引率
9.40%
发文量
116
审稿时长
2.5 months
期刊介绍: Tribology Letters is devoted to the development of the science of tribology and its applications, particularly focusing on publishing high-quality papers at the forefront of tribological science and that address the fundamentals of friction, lubrication, wear, or adhesion. The journal facilitates communication and exchange of seminal ideas among thousands of practitioners who are engaged worldwide in the pursuit of tribology-based science and technology.
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