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Multidisciplinary Design Optimization of a Swash-Plate Axial Piston Pump

机译:斜盘式轴向柱塞泵的多学科设计优化

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This work proposes an MDO (multidisciplinary design optimization) procedure for a swash-plate axial piston pump based on co-simulation and integrated optimization. The integrated hydraulic-mechanical model of the pump is built to reflect its actual performance, and a hydraulic-mechanical co-simulation is conducted through data exchange between different domains. The flow ripple of the pump is optimized by using a MDO procedure. A CFD (Computational Fluid Dynamics) simulation of the pump’s flow field is done, which shows that the hydrodynamic shock of the pump is improved after optimization. To verify the MDO effect, an experimental system is established to test the optimized piston pump. Experimental results show that the simulated and experimental curves are similar. The flow ripple is improved by the MDO procedure. The peak of the pressure curve is lower than before optimization, and the pressure pulsation is reduced by 0.21 MPa, which shows that the pressure pulsation is improved with the decreasing of the flow ripple. Comparing the experimental and simulation results shows that MDO method is effective and feasible in the optimization design of the pump.
机译:这项工作提出了基于协同仿真和集成优化的斜盘轴向柱塞泵的MDO(多学科设计优化)程序。建立了泵的集成液压-机械模型以反映其实际性能,并通过不同域之间的数据交换进行了液压-机械联合仿真。泵的流量波动通过使用MDO程序进行了优化。对泵的流场进行了CFD(计算流体动力学)仿真,结果表明,优化后可以改善泵的流体动力冲击。为了验证MDO效果,建立了一个实验系统来测试优化的活塞泵。实验结果表明,仿真曲线与实验曲线相似。通过MDO程序可以改善流量波动。压力曲线的峰值低于优化前,压力脉动降低了0.21 MPa,这表明压力脉动随流动波纹的减小而改善。实验与仿真结果对比表明,MDO方法在泵的优化设计中是有效可行的。

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