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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >The Optimal Design in External Gear Pumps and Motors
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The Optimal Design in External Gear Pumps and Motors

机译:外齿轮泵和电动机的优化设计

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摘要

To improve the system performance of hydraulically assisted mechatronic systems, the research investigates the instantaneous pressure of the meshing action in the external gear pumps and motors. The undesired large pressure overshoots or spikes could be excited by virtue of the sudden volumetric change of meshing pockets. In practice, the spikes cause the gear machines to be noisy, inefficient, and have fatigue problems. The study employs the optimization theorem to analyze the nonlinear dynamical equations to define the instantaneous flow area overlapped by the wear-plate profiles and control volumes. The approach can also be applied to determine the backlash area to avoid large pressure variations between two meshing volumes. System noise may consequently be reduced and the mechanical efficiency is improved in gear machines. However, the volumetric efficiency may be compromised. Thus, all these issues have to be considered to achieve the optimal design.
机译:为了提高液压辅助机电系统的系统性能,该研究调查了外齿轮泵和电动机中啮合作用的瞬时压力。由于啮合腔的体积突然变化,可能会引起不希望的大压力超调或尖峰。实际上,尖峰导致齿轮机嘈杂,效率低下并存在疲劳问题。该研究使用优化定理分析非线性动力学方程,以定义由耐磨板轮廓和控制体积重叠的瞬时流动面积。该方法也可以用于确定间隙区域,以避免两个啮合体积之间的大压力变化。因此,可以降低系统噪声,并提高齿轮机的机械效率。但是,体积效率可能会降低。因此,必须考虑所有这些问题以实现最佳设计。

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