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A study on the dynamics and vibration behavior of an axial piston pump using combined MBD/FE approach

机译:轴向活塞泵使用MBD / Fe方法的动力学和振动特性研究

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In the present work a combined multibody dynamics(MBD) and finite element(FE) approach is developed for modeling the dynamics and vibration behaviour of an axial piston type hydraulic pump. A MBD model of the pumping mechanism is developed to predict the dynamic excitation forces at the bearings and control piston locations. The dynamic excitation forces in the frequency domain are obtained using fast fourier transform (FFT) with a rectangular type windowing function. A detailed FE model of the pump is developed consisting of the internal components, housing, and end cover. The dominant mode shapes and natural frequencies of the pump assembly are studied. The forced vibration behaviour of the pump is predicted by using the dynamic excitation forces from the MBD model. The numerical results are compared with the experimental results and a good agreement is found. Further, numerical studies are carried out to study the influence of component mass and stiffness on the vibration response.
机译:在本作工作中,开发了一种组合的多体动力学(MBD)和有限元(FE)方法,用于建模轴向活塞式液压泵的动力学和振动特性。开发了一种泵送机构的MBD模型,以预测轴承和控制活塞位置处的动态励磁力。使用具有矩形型窗口函数的快速傅里叶变换(FFT)获得频域中的动态激励力。泵的详细FE模型由内部部件,外壳和端盖组成。研究了泵组件的主要模式形状和自然频率。通过使用来自MBD模型的动态激励力来预测泵的强制振动行为。数值结果与实验结果进行比较,发现了良好的一致性。此外,进行数值研究以研究组分质量和刚度对振动响应的影响。

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