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Optimum design of involute tooth profiles for K-H-V planetary drives with small teeth number differences

机译:齿数差小的K-H-V行星传动的渐开线齿形的优化设计

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The optimum design of an involute K-H-V PDSTND is restudied and remains a difficult task even using a profile shift for the design case discussed in the literature. In fact, the difficulty arises from the design with a very high efficiency and the peculiar tip interference. Because of the failure to obtain feasible designs using profile-shifted full-depth and stub teeth, another feasible design scheme is used by altering the addendums of involute profile-shifted full-depth teeth. In this study, the objective function of the optimum design is a weighted combination of two main performance factors, i.e., the reciprocal of the contact ratio and the working pressure angle. The optimization problem is solved using a combined-mutation differential evolution algorithm. The performance can be improved using the afore-mentioned design scheme; however, there is still room for improvements. Therefore, the use of different modules in mesh for involute profile-shifted full-depth teeth with variation in addendum is proposed and the corresponding meshing equation is derived. The findings show that further improvements on the performance can be achieved.
机译:对渐开线K-H-V PDSTND的最佳设计进行了重新研究,即使针对文献中讨论的设计案例使用了轮廓偏移,仍然是一项艰巨的任务。实际上,困难是由于效率很高的设计和特殊的尖端干扰而引起的。由于无法使用轮廓偏移的全深度和短齿获得可行的设计,因此通过更改渐开线轮廓偏移的全深齿的齿顶使用了另一种可行的设计方案。在这项研究中,最佳设计的目标函数是两个主要性能因素的加权组合,即接触比和工作压力角的倒数。使用组合变异差分进化算法解决了优化问题。使用上述设计方案可以提高性能;但是,仍有改进的空间。因此,提出了在齿顶上渐开线变化的渐开线变位全深度齿在网格中使用不同模块的方法,并推导了相应的网格方程。研究结果表明,可以进一步提高性能。

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