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A Model Investigation on the Pressure Transducer Dynamics for Measurements in Lubricating Vane Pumps: Influence of Dissolved Air and of Transducer/Tubing Geometry

机译:润滑叶片泵测量压力传感器动力学的模型研究:溶解空气和换能器/管几何的影响

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Variable-displacement lubricating pumps are an attractive solution for reducing fuel consumption and emissions in motorcycle engines. In this prospective, modeling and experimental analysis are very useful means for a deeper understanding of pump operation and for effectively implementing pump control. Zero-dimensional simulation results of a 7-vane pump were compared with the experimental data of dynamic piezo-resistive pressure transducers fitted into the casing of a pump prototype, which was operated under steady-state conditions at different rotational speeds and eccentricity values. The experimental data exhibit oscillations which were explained by taking into account the pressure transducers dynamics, as a result of the transducer location in the pump casing, of the air dissolved in the hydraulic fluid and of the geometry of the tubing/transducer system. The investigation shows that the transducer dynamics deteriorate as the diameter or length of the connections increase and as the dissolved air quantity increases.
机译:可变排量润滑泵是一种有吸引力的解决方案,用于降低摩托车发动机的燃料消耗和排放。在这种前瞻性,建模和实验分析是非常有用的手段,用于更深入地了解泵操作和有效地实现泵控制。将7-叶片泵的零尺寸模拟结果与装配到泵原型的壳体的动态压电型压力换能器的实验数据进行比较,该泵原型的壳体在不同的转速和偏心率值下在稳态条件下操作。通过考虑压力换能器动力学来解释的实验数据表现出振荡,其由于泵壳中的换能器位置而溶解在液压流体中的空气和管道/换能器系统的几何形状的导致。调查表明,随着连接的直径或长度增加并且随着溶解空气量增加,换能器动力学变质。

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