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Simulation Calculation of Friction Factor of the End Face for Mechanical Seals Based on Fractal Theory

机译:基于分形理论的机械密封末端摩擦系数的仿真计算

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In order to study the effects of operating parameters and surface topography on friction factors between the end faces for mechanical seals, a friction factor fractal model between end faces for contact mechanical seals was established based on the contact fractal model and the average film thickness fractal model, adopting fractal parameters to represent surface topography, separating friction into viscous shear friction of liquid film and contact friction of asperities, and representing the effect of actual rough surface on viscous shear stress of liquid film by introducing the contact factor. The influencing factors of friction factor for B104a-70 mechanical seal were analyzed by simulating. Results showed that the friction factor between the surfaces increases with the increases of spring pressure when the end faces are coarser, while the friction factor decreases slightly with the increases of spring pressure when the end faces are smoother. The friction factor between the faces decreases with the increases of the sealed fluid pressure, which increases approximate linearly with the increases of rotating speed, and it increases with the increases of fractal dimension of end faces and the decreases of the characteristic scale factor.
机译:为了研究操作参数和表面形貌对机械密封件端面之间的摩擦因子的影响,基于接触分形模型和平均膜厚度分形模型建立了接触机械密封件端面之间的摩擦因子分形模型采用分形参数来表示表面形貌,将摩擦分离成液体膜的粘性剪切摩擦,并通过引入接触因子来表示实际粗糙表面对液体膜粘性剪切应力的影响。通过模拟分析了B104A-70机械密封的摩擦因子的影响因素。结果表明,当端面粗糙时,表面之间的摩擦系数随着弹簧压力的增加而增加,而当端面更平滑时,摩擦因子随着弹簧压力的增加而减小。面部之间的摩擦系数随着密封的流体压力的增加而降低,这随着旋转速度的增加而直线地线性增加,并且随着端面的分形尺寸的增加和特征比例因子的减小而增加。

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