多孔水力缓冲器工作特性研究

Study on the Working Characteristics of Porous Hydraulic Shock Absorbers

  • 摘要: 该文以多孔水力缓冲器为研究对象,根据缓冲器工作原理建立了缓冲过程数学模型。利用Python编程语言对建立的多孔水力缓冲器数学模型进行求解,然后对缓冲器动态特性进行仿真分析。通过计算得到各工况缓冲过程中冲击力、冲击速度等关键参数随时间的变化规律,并根据求解结果选出合理的缓冲器结构参数。通过搭建全尺寸控制棒水力驱动系统开展快速落棒缓冲性能试验,并基于试验结果分析缓冲器关键特性参数的变化规律;将理论计算结果与试验数据进行对比,验证了所建立缓冲过程模型的可靠性。结果表明,多孔水力缓冲器仿真数据与试验数据吻合程度较高,构建的计算模型可用于缓冲器参数选取及优化。

     

    Abstract: The study focuses on the porous hydraulic buffer as the research object, and a mathematical model of the buffering process is established based on the working principle of the buffer. The porous hydraulic buffer mathematical model established is solved by Python programming language, and the dynamic characteristics of the buffer are simulated. Through the calculation, the key parameters such as impact force and impact velocity during the buffering process under various working conditions are obtained, and the reasonable structure parameters of the buffer are selected based on the calculation results. By building a full-scale control rod hydraulic drive system and completing the rapid drop buffering performance experiment, the law of change of the key characteristic parameters of the buffer is analyzed based on the experimental results. The calculation results are compared with the experimental results to verify the buffering process model established. The results show that the simulated data of the porous hydraulic buffer is in good agreement with the experimental data, and the calculation model established can be used for the selection and optimization of the buffer parameters.

     

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