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Modeling and optimization of the delivery fluctuation of gear pumps

机译:齿轮泵输出波动的建模和优化

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Presented work aims to minimize the delivery fluctuation of a gear pump through geometrical optimisation of the tooth flank. Therefore, instead of examining various configurations, which would reduce the flow ripple ad hoc, the current study suggests the dependence the delivery fluctuation to the tooth flank profile. Taking into account the secondary derivative of the tooth profile, the optimisation process is able to also affect the secondary delivery fluctuation, which is connected to the compression of the fluid over the meshing cycle. Bezier-Bernstein polynomial curves were used to model the tooth flank in order to satisfy the objective function. A dependency between the total length of the path of contact curve and the flow ripple was found. It is stated in this work that for every design point on a closed path of gear set, there is a threshold on the contact length, over which the resulted flow ripple starts to deviate from the optimum value. That conclusion was used to further enhance the optimisation algorithm. The presented optimum gear profile design was evaluated through a comparative study between every design point and the corresponding solution of the existing state of the art in terms of delivery fluctuation.
机译:目前的工作旨在通过齿面的几何优化来最大程度地减少齿轮泵的输送波动。因此,当前的研究表明,输送波动与齿面轮廓的相关性与其代替研究各种结构(这将减少临时的流动波纹)有关。考虑到齿形的二次导数,优化过程还能够影响二次输送波动,该波动与啮合周期中流体的压缩有关。为了满足目标函数,使用Bezier-Bernstein多项式曲线对齿面建模。发现了接触曲线路径的总长度与流动波纹之间的相关性。这项工作表明,对于齿轮组封闭路径上的每个设计点,在接触长度上都有一个阈值,在该阈值上,导致的流量波动开始偏离最佳值。该结论用于进一步增强优化算法。通过对每个设计点与现有技术的相应解决方案之间的对比研究,就交付波动进行了评估,从而评估了提出的最佳齿轮轮廓设计。

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