General theory of frictional heating with application to rubber friction

天然橡胶 消散 材料科学 机械 传热 动能 热的 接触面积 复合材料 摩擦系数 热力学 经典力学 物理
作者
G. Fortunato,V. Ciaravola,A. Furno,B. Lorenz,B. N. J. Persson
出处
期刊:Journal of Physics: Condensed Matter [IOP Publishing]
卷期号:27 (17): 175008-175008 被引量:36
标识
DOI:10.1088/0953-8984/27/17/175008
摘要

The energy dissipation in the contact regions between solids in sliding contact can result in high local temperatures which may strongly effect friction and wear. This is the case for rubber sliding on road surfaces at speeds above 1 mm s−1. We derive equations which describe the frictional heating for solids with arbitrary thermal properties. The theory is applied to rubber friction on road surfaces and we take into account that the frictional energy is partly produced inside the rubber due to the internal friction of rubber and in a thin (nanometer) interfacial layer at the rubber-road contact region. The heat transfer between the rubber and the road surface is described by a heat transfer coefficient which depends on the sliding speed. Numerical results are presented and compared to experimental data. We find that frictional heating results in a kinetic friction force which depends on the orientation of the sliding block, thus violating one of the two basic Leonardo da Vinci 'laws' of friction.

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