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Effects of Contact Surface Roughness of Interference Shaft/Bush Joints on its Characteristics

机译:干涉轴/衬套接头的接触面粗糙度对其特性的影响

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摘要

For determining the characteristics of interference shaft/bush joints, we usually suppose perfect surface for contact profile and a constant value for friction coefficient. It is clear that imperfect surface of shafts and bushes with irregularities is inevitable, which creates non-uniform contact stress. Exact estimation of the friction coefficient in contact surface of the interference joints is dependent on precise modeling of real profile of the contact surfaces. Friction coefficient may not be determined exactly by assuming perfect profile, leading to uniform pressures on the contact surface. Here, a method has been proposed to construct a geometrical model of joint parts and surfaces with 1-Aμm resolution. Roughness measurements have been taken to consider the surface irregularities with amplitudes lower than 1 Aμm, which may cause stress singularities. Proposed method has been applied to correlate experimental extraction strength of some interference joints with numerical results list, finally resulting in estimation of the friction coefficient. In particular, the effects of the contact surface roughness on the friction as well as the evolution of wear upon decoupling were studied.
机译:为了确定干涉轴/衬套接头的特性,我们通常假定接触面的理想表面和摩擦系数的常数为常数。显然,不规则的轴和衬套表面是不可避免的,会产生不均匀的接触应力。干涉接点接触面摩擦系数的精确估算取决于接触面真实轮廓的精确建模。摩擦系数可能无法通过假设完美轮廓来精确确定,从而导致接触表面上的压力均匀。在这里,已经提出了一种方法来构造具有1Aμm分辨率的关节零件和表面的几何模型。已进行粗糙度测量以考虑幅度小于1Aμm的表面不规则性,这可能导致应力奇异性。应用所提出的方法,将一些干涉接头的实验提取强度与数值结果列表相关联,最终得出摩擦系数的估计值。尤其是,研究了接触表面粗糙度对摩擦的影响以及去耦时磨损的发展。

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