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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part E. Journal of Process Mechanical Engineering >Analysis of contact and bending stiffness for Curvic couplings considering contact angle and surface roughness
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Analysis of contact and bending stiffness for Curvic couplings considering contact angle and surface roughness

机译:考虑接触角和表面粗糙度的曲率联轴器接触和弯曲刚度分析

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摘要

This paper develops a method for calculating the contact and bending stiffness of a Curvic coupling, and investigates stiffness changes according to the coupling shape and surface roughness characteristics. The surface of the on-site Curvic coupling is chosen as reference for a most accurate simulation. The three parameters representing the surface roughness characteristics-the standard deviation of the asperity height distribution, the average radius of asperities, and the density of asperity on the nominal contact area-are calculated with a profile of the coupling surface through a random process: the contact problem between rough surfaces is tackled using the Greenwood-Williamson model, the Curvic coupling is modeled assuming that it has as many teeth as possible within the machining limits depending on the contact angle, and the tangential stiffness resulting from the contact angle is calculated by dividing into the stick and slip regions, and is taken into account in terms of total stiffness. With this, results showed that using Curvic couplings reduces stiffness than using flat disc couplings because of the contact angle, and that the standard deviation of rough surface height is the most crucial surface parameter affecting stiffness.
机译:本文开发了一种用于计算曲面耦合的接触和弯曲刚度的方法,并根据耦合形状和表面粗糙度特性来研究刚度变化。选择在现场曲面耦合的表面作为参考,用于最精确的模拟。表示表面粗糙度特性的三个参数 - 粗糙度高度分布的标准偏差,平均粗糙度半径以及标称接触面积上的粗糙度的密度 - 用耦合表面通过随机过程计算:使用Greenwood-Williamson型号来解决粗糙表面之间的接触问题,假设曲面耦合假设它在加工限制内具有尽可能多的齿,这取决于接触角,并且由接触角产生的切向刚度是计算的除以杆和滑动区域,并在总刚度方面考虑。由此,结果表明,由于接触角,使用曲面耦合减少了比使用平面盘联轴器的刚度,并且粗糙表面高度的标准偏差是影响刚度的最重要的表面参数。

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