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Optimal design of wave generator profile for harmonic gear drive using support function

机译:使用支持功能的谐波齿轮驱动波发生器轮廓的最佳设计

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The wave generator profile for harmonic drive was designed using a closed convex curve generated by the support function. An optimization model of the wave generator profile was established, and the objective function was defined to minimize the maximum circumferential stress of the flex spline assembled with the wave generator. Then the curvature difference of the flex spline neutral line and pure kinematic error were investigated considering different wave generator profiles. Finally, the finite element method was applied to establish the assembly model. The stress and deformation of the flex spline were analyzed, as well as the stress of the flexible bearing. Results show that the maximum circumferential stress of the flex spline with the proposed wave generator profile was significantly reduced compared to the harmonic gear with a traditional elliptic wave generator. The stress in the major axis region of the flex spline is distributed more evenly after assembly with the wave generator. And the maximum Von-Mise stress of the flexible bearing was obviously reduced, as well as the contact force for outer ring and rollers in the major axis region of the wave generator. (C) 2020 Elsevier Ltd. All rights reserved.
机译:用于谐波驱动器的波发生器轮廓使用由支撑函数产生的闭合凸曲线设计。建立了波发生器轮廓的优化模型,并且定义了目标函数以最小化与波发生器组装的柔性花键的最大圆周应力。然后考虑不同的波发生器轮廓,研究了柔性花键中性线和纯运动误差的曲率差。最后,应用有限元方法来建立装配模型。分析了柔性花键的应力和变形,以及柔性轴承的应力。结果表明,与具有传统椭圆波发生器的谐波齿轮相比,与所提出的波发生器轮廓的柔性花键的最大圆周应力显着降低。在与波发生器组装后,弹性花键的主轴区域的压力更均匀地分布。并且,柔性轴承的最大von-mise应力明显减少,以及波发生器的主轴区域中的外环和辊的接触力。 (c)2020 elestvier有限公司保留所有权利。

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