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Optimization of straight-sided spline design

机译:直边花键设计的优化

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Spline connection of shaft and hub is commonly applied when large torque capacity is needed together with the possibility of disassembly. The designs of these splines are generally controlled by different standards. In view of the common use of splines, it seems that few papers deal with splines and the subject of improving the design. The present paper concentrates on the optimization of splines and the predictions of stress concentrations, which are determined by finite element analysis (FEA). Using different design modifications, that do not change the spline load carrying capacity, it is shown that large reductions in the maximum stress are possible. Fatigue life of a spline can be greatly improved with up to a 25% reduction in the maximum stress level. Design modifications are given as simple analytical functions (modified super elliptical shape) with only two active design parameters and the designs are practical realizable. Some generality is found in the design parameters.
机译:当需要大扭矩容量以及可能拆卸时,通常使用轴和毂的花键连接。这些花键的设计通常由不同的标准控制。鉴于样条线的普遍使用,似乎很少有论文涉及样条线和改进设计的主题。本文集中于样条的优化和应力集中的预测,这是通过有限元分析(FEA)确定的。通过使用不改变花键负载能力的不同设计修改,可以最大程度地减小最大应力。花键的疲劳寿命可以大大提高,最大应力水平最多降低25%。仅通过两个有效的设计参数就可以将设计修改作为简单的分析函数(修改后的超椭圆形)给出,并且可以实际实现设计。在设计参数中找到了一些通用性。

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