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ADHESIVE FRICTION BEHAVIOR OF ROUGH RUBBER SURFACES SLIDING AGAINST SMOOTH RIGID SURFACES

机译:粗橡胶表面滑动抗滑刚性表面的粘合剂摩擦行为

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摘要

A model for the characterization and prediction of the adhesional friction experienced by a rough rubber surface sliding against a smooth rigid surface using fracture mechanics based peeling behavior is supported by experimental results. The friction is characterized by the strain energy release rate associated with the unpeeling of the asperities. This peeling energy of the rubber and rigid surface interface is used to derive a general relation for the frictional shear stress. Peeling characteristics are first found using rolling experiments, then this information is used to predict the results of sliding experiments. The velocity dependence of the friction is explained by relation to the dynamic viscoelastic properties of the rubber. The experiments compare favorably with the theoretical prediction derived using the model.
机译:通过实验结果支持使用裂缝力学的剥离行为的粗糙橡胶表面滑动抗滑刚性表面的粗橡胶表面经历的表征和预测的模型。通过实验结果支持剥离行为。 摩擦的特征在于与粗糙度的未剥离相关的应变能释放速率。 这种橡胶和刚性表面界面的剥离能量用于导出摩擦剪切应力的一般关系。 首先使用滚动实验发现剥离特性,然后使用该信息来预测滑动实验的结果。 摩擦的速度依赖性通过橡胶的动态粘弹性来解释。 实验比较使用模型的理论预测比较。

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