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Hybrid method to analysis the dynamic behavior of the ring gear for the internal gear motors and pumps

机译:用于分析内齿轮电动机和泵的齿圈动态行为的混合方法

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Prediction of the ring gear trajectory inside its housing is a fundamental issue for analysis of the dynamic behavior of the internal gear motors/pumps. However, it is not easy because of lots of phenomenon happening inside motors/pumps. The mobility method introduced by Booker proves that it can predict well the trajectory of the journal bearing by considering the effect of hydrodynamic lubrication regime of the oil film. Unlike journal bearings, the oil film in the internal gear motors/pumps is the combination of two simultaneous regimes; e.g., hydrodynamic and hydrostatic lubrication. This paper presents a hybrid method by adding the effect of hydrostatic lubrication into the original mobility method. A test rig is then designed and built up to validate the simulation results. The theoretical and experimental results have a reasonable agreement. Comparison the calculation and experimental results points out that the deviation of the eccentricity for mobility method is about 14.5 %. Meanwhile, the deviation for the hybrid method is about 3 %. Meaning that with hybrid mobility method increases the accuracy of calculation of the ring gear orbit.
机译:其外壳内的环形齿轮轨迹的预测是用于分析内齿轮电动机/泵的动态行为的基本问题。然而,由于电动机/泵内发生了许多现象,这并不容易。预订引入的移动方法证明,通过考虑油膜流体动力润滑制度的影响,它可以通过考虑轴承的轨迹来预测轴颈轴承的轨迹。与轴颈轴承不同,内齿轮电机/泵中的油膜是两个同时制度的组合;例如,流体动力学和静水压润滑。本文通过将静水润滑效果添加到原始迁移率法中来呈现混合方法。然后设计测试钻机并建立以验证仿真结果。理论和实验结果具有合理的协议。比较计算和实验结果指出,移动方法的偏心率的偏差约为14.5%。同时,混合方法的偏差约为3%。意思是,通过混合移动方法增加戒指轨道轨道的计算精度。

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