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Real-Time Dynamic Observation of Micro-Friction on the Contact Interface of Friction Lining

机译:摩擦衬片接触界面上微摩擦的实时动态观察

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摘要

This paper aims to investigate the microscopic friction mechanism based on in situ microscopic observation in order to record the deformation and contact situation of friction lining during the frictional process. The results show that friction coefficient increased with the shear deformation and energy loss of the surfacee, respectively. Furthermore, the friction mechanism mainly included adhesive friction in the high-pressure and high-speed conditions, whereas hysteresis friction was in the low-pressure and low-speed conditions. The mixed-friction mechanism was in the period when the working conditions varied from high pressure and speed to low pressure and speed.
机译:本文旨在研究基于原位微观观察的微观摩擦机理,以记录摩擦衬片在摩擦过程中的变形和接触情况。结果表明,摩擦系数分别随表面的剪切变形和能量损失而增加。此外,摩擦机理主要包括在高压和高速条件下的粘合剂摩擦,而磁滞摩擦在低压和低速条件下。混合摩擦机理处于工作条件从高压和高速变化到低压和高速变化的时期。

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