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Elasto-dynamic analysis of a gear pump-Part Ⅳ: Improvement in the pressure distribution modelling

机译:齿轮泵的弹性动力学分析第四部分:压力分布模型的改进

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This work concerns external gear pumps for automotive applications, which operate at high speed and low pressure. In previous works of the authors (Part Ⅰ and Ⅱ), a nonlinear lumped-parameter kineto-elastodynamic model for the prediction of the dynamic behaviour of external gear pumps was presented. It takes into account the most important phenomena involved in the operation of this kind of machine. The two main sources of noise and vibration are considered: pressure pulsation and gear meshing. The model has been used in order to foresee the influence of working conditions and design modifications on vibration generation. The model experimental validation is a difficult task. Thus, Part Ⅲ proposes a novel methodology for the validation carried out by the comparison of simulations and experimental results concerning forces and moments: it deals with the external and inertial components acting on the gears, estimated by the model, and the reactions and inertial components on the pump casing and the test plate, obtained by measurements. The validation is carried out by comparing the level of the time synchronous average in the time domain and the waterfall maps in the frequency domain, with particular attention to identify system resonances. The validation results are satisfactory global, but discrepancies are still present. Moreover, the assessed model has been properly modified for the application to a new virtual pump prototype with helical gears in order to foresee gear accelerations and dynamic forces. Part Ⅳ is focused on improvements in the modelling and analysis of the phenomena bound to the pressure distribution around the gears in order to achieve results closer to the measured values. As a matter of fact, the simulation results have shown that a variable meshing stiffness has a notable contribution on the dynamic behaviour of the pump but this is not as important as the pressure phenomena. As a consequence, the original model was modified with the aim at improving the calculation of pressure forces and torques. The improved pressure formulation includes several phenomena not considered in the previous one, such as the variable pressure evolution at input and output ports, as well as an accurate description of the trapped volume and its connections with high and low pressure chambers. The importance of these improvements are highlighted by comparison with experimental results, showing satisfactory matching.
机译:这项工作涉及用于汽车应用的外齿轮泵,该齿轮泵在高速和低压下运行。在作者的先前工作(第一部分和第二部分)中,提出了用于预测外齿轮泵动态特性的非线性集总参数动弹性模型。它考虑到了这种机器运行中最重要的现象。考虑了噪声和振动的两个主要来源:压力脉动和齿轮啮合。该模型用于预测工作条件和设计修改对振动产生的影响。模型实验验证是一项艰巨的任务。因此,第三部分通过比较关于力和力矩的模拟和实验结果,提出了一种新的验证方法:它涉及作用在齿轮上的外部和惯性分量,由模型估算,以及反作用和惯性分量通过测量获得的泵壳和测试板上的压力。通过比较时域中的时间同步平均水平和频域中的瀑布图来执行验证,尤其要注意识别系统共振。总体上,验证结果令人满意,但仍然存在差异。此外,已对评估模型进行了适当修改,以适用于带有斜齿轮的新虚拟泵原型,以预测齿轮加速度和动态力。第四部分着重于改进建模和分析与齿轮周围压力分布有关的现象,以使结果更接近于测量值。实际上,仿真结果表明,可变的啮合刚度对泵的动态性能有显着贡献,但这并不像压力现象那么重要。因此,对原始模型进行了修改,旨在改善压力和扭矩的计算。改进的压力公式包括前一种未考虑的几种现象,例如输入和输出端口处的压力变化,以及对捕集体积及其与高压腔和低压腔的连接的准确描述。通过与实验结果进行比较,强调了这些改进的重要性,显示出令人满意的匹配性。

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