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Novel approach to studying the influence of surface structure on tribological properties of carbon fabric reinforced phenolic composites
Affiliation:1. School of Materials Science and Engineering, Shaanxi University of Science and Technology, Xi?an Shaanxi 710021, P.R. China;2. Culture and Communication School, Shaanxi University of Science and Technology, Xi?an Shaanxi 710021, P.R. China
Abstract:In order to make clear the engagement behavior, the numerical research is conducted to explore the influence of interface pressure on the tribological properties of carbon fabric reinforced phenolic composites. It is found that the dynamic friction torque is a linear function of interface pressure by curve fitting. And then the coefficient of dynamic friction is derived as an inverse proportional function of interface pressure. To demonstrate the results, the contact model is presented based on Gaussian surface asperity height distribution and the assumption of elastic deformation. Meanwhile, the asperity contact area is considered as the critical factor.
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