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Load distribution analysis of clearance-fit spline joints using finite elements

机译:间隙配合花键接头载荷分布的有限元分析

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摘要

Splines are widely used in mechanical drive systems to transfer rotary motion from an input to an output. Despite their wide application in rotating machinery, very little is known about their contact behavior and load distribution characteristics. In this study, a combined finite element and surface integral contact analysis model is employed in order to investigate load distribution along the spline interfaces. Three loading cases are considered: (i) purely torsional loading representing power transfer through two concentric shafts, (ii) combined torsional and radial loading representing a spur gear-shaft interface, and (iii) combined torsional, radial, and moment loading representing a helical gear-shaft interface. The effect of spline misalignment is investigated along with intentional lead crowning of the contacting surfaces. In addition to spur spline teeth, helical spline teeth are investigated. Influence of intentional mismatch of splines through a slight helix angle applied to the external spline is also investigated within a range of torque transmitted. Finally, the effects of manufacturing tooth indexing error on spline load distributions are quantified using the proposed model.
机译:花键被广泛用于机械驱动系统中,以将旋转运动从输入传递到输出。尽管它们在旋转机械中得到了广泛的应用,但对其接触行为和载荷分布特性知之甚少。在这项研究中,为了研究沿样条界面的载荷分布,采用了有限元与表面整体接触分析模型的组合。考虑了三种载荷情况:(i)代表通过两个同心轴进行动力传递的纯扭转载荷;(ii)代表正齿轮-轴界面的扭转和径向联合载荷;以及(iii)代表一个正齿轮轴的扭转,径向和力矩载荷组合斜齿轮-齿轮轴接口。样条未对准的影响以及接触表面的有意引线凸出均进行了研究。除了正花键齿外,还研究了螺旋花键齿。还研究了在传递的扭矩范围内,通过施加到外部花键的微小螺旋角,花键的故意不匹配的影响。最后,使用所提出的模型来量化制造齿的分度误差对花键载荷分布的影响。

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