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Novel Methods for Modeling and Online Measurement of Effective Bulk Modulus of Flowing Oil

机译:流动油有效散装模量的建模和在线测量的新方法

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摘要

Oil is a key medium for transmitting power and coupling information in the hydraulic transmission system. Accurate calculation and measurement of the dynamic compressibility of the oil have profound significance to the system performance analysis. The present study primarily focuses on the effect of steady pressure on the bulk modulus of static oil. However, changing pressure and flowing oil are the general working conditions in most of hydraulic apparatus. There are few researchers paying attention to the influence of pressure on the compressibility of flowing oil. Considering the log-normal distribution of bubble size in oil, an improved static oil model (Model B) is developed to calculate the bulk modulus of the motionless oil under the dynamic pressure. Then, by deriving Model B, this paper proposes an original flowing oil model (Model C) to determine the effective bulk modulus of flowing oil. Finally, based on the inherent pressure pulsation of the axial piston pump, an innovative online method for measurement of the bulk modulus of flowing oil is presented as it has the advantage of avoiding interference with flow stability. It has been proved that the changes in the flow velocity corresponds to the crucial effect on the effective bulk modulus of flowing oil, especially under the low-flow and low-pressure operation conditions. Those results and analysis provide promoting support for identifying and determining the effective bulk modulus of oil, analyzing the system stiffness, improving the control accuracy, as well as optimizing the mathematical models.
机译:油是用于在液压传动系统中传输电力和耦合信息的关键介质。精确的计算和测量油的动态可压缩性对系统性能分析具有深远的重要性。本研究主要集中在稳定压力对静电油模量的影响。然而,改变压力和流动的油是大多数液压装置中的一般工作条件。少数研究人员注意压力对流动油压缩性的影响。考虑到油的泡沫尺寸的日志正态分布,开发了一种改进的静态油模型(型号B)以计算动态压力下的无动油的体积模量。然后,通过推导模型B,本文提出了原始流动的油模型(型号C),以确定流动油的有效体积模量。最后,基于轴向活塞泵的固有压力脉动,提出了一种用于测量流动油模量的创新的在线方法,因为它具有避免干扰流动稳定性的优点。事实证明,流速的变化对应于对流动油的有效体积模量的关键影响,尤其是在低流量和低压操作条件下。这些结果和分析提供了促进识别和确定有效散装量的油模量,分析系统刚度,提高控制精度,以及优化数学模型的促进支持。

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