Optimization of vane pump structure based on modal characteristic analysis

Jinping Chi
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引用次数: 0

Abstract

In order to ensure the good stability and reliability of the vane pump, the modal characteristics of the mechanical structure were studied and analyzed through finite element simulation and impact modal testing. Based on the stiffness criterion, an optimization plan was proposed for the structure of the vane pump without reducing the natural frequency. Adopting tetrahedral adaptive mesh method, the mesh quality of the modal simulation model was verified to ensure the accuracy and efficiency of the calculation. In modal testing, force sensors and acceleration sensors were arranged reasonably. The excitation signal would be transmitted to the integrated vibration testing system for processing, and modal analysis and processing would be carried out through LMS Test Lab. Based on curve fitting, the spectrum and modal parameters of the tested structure could be obtained. The influence of different curvature radius of cover plates on natural frequencies were studied, and the results show that increasing the curvature radius within a certain range can enhance stiffness and improve processability.
基于模态特性分析的叶片泵结构优化
为了确保叶片泵具有良好的稳定性和可靠性,通过有限元模拟和冲击模态测试对机械结构的模态特性进行了研究和分析。根据刚度准则,在不降低固有频率的前提下,提出了叶片泵结构的优化方案。采用四面体自适应网格方法,验证了模态仿真模型的网格质量,确保了计算的准确性和效率。在模态测试中,合理布置了力传感器和加速度传感器。激振信号将被传输到综合振动测试系统进行处理,并通过 LMS 测试实验室进行模态分析和处理。通过曲线拟合,可以得到被测结构的频谱和模态参数。研究了盖板不同曲率半径对固有频率的影响,结果表明,在一定范围内增加曲率半径可增强刚度,改善加工性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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