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An Approximate Formula to Calculate the Restoring and Damping Forces of an Air Spring With a Small Pipe

机译:用小管计算空气弹簧的恢复力和阻尼力的近似公式

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This paper proposes a simple expression for calculating the restoring and damping forces of an air spring equipped with a small pipe. Air springs are commonly used in railway vehicles, automobiles, and various vibration isolators. The air spring discussed in this study consists of two tanks connected by a long pipe. Using a pipe instead of an orifice enables flexibility in the arrangement of the two tanks. In addition, this makes it possible to manufacture a thin air spring. A vertical translational oscillating system, which consists of a single mass supported by this type of air spring, looks like a single-degree-of-freedom (SDOF) system. However, it may have two resonance points. In this paper, we propose a vibratory model of a system supported by the air spring. With the proposed model it is possible to correctly reproduce the two resonance points of a system consisting of a single mass supported by this type of air spring. In our analysis, assuming that the vibration amplitude is small and the flow through the pipe is laminar, we derive the spring constant and damping coefficient of an air spring subjected to a simple harmonic motion. Then, we calculate the frequency response curves for the system and compare the calculated results with the experimental values. According to the experiment, there is a remarkable amplitude dependency in this type of air spring, so the frequency response curves for the system change with the magnitude of the input amplitude. It becomes clear that the calculation results are in agreement with the limit case when the input amplitude approaches zero. We use a commercially available air spring in this experiment. Our study is useful in the design of thin air spring vibration isolators for isolating small vibrations.
机译:本文提出了一个简单的表达式,用于计算配备小管的空气弹簧的恢复力和阻尼力。空气弹簧通常用于铁路车辆,汽车和各种隔振器中。本研究中讨论的空气弹簧由两个通过长管连接的储罐组成。使用管道代替孔口可以灵活地布置两个水箱。另外,这使得可以制造薄的空气弹簧。垂直平移振荡系统由一个由这种类型的空气弹簧支撑的单个质量组成,看起来像一个单自由度(SDOF)系统。但是,它可能有两个共振点。在本文中,我们提出了一个由空气弹簧支撑的系统的振动模型。利用所提出的模型,可以正确地再现一个系统的两个共振点,该系统包括由这种空气弹簧支撑的单个质量。在我们的分析中,假设振动幅度较小并且流经管道的流体为层流,我们可以得出经受简单谐波运动的空气弹簧的弹簧常数和阻尼系数。然后,我们计算系统的频率响应曲线,并将计算结果与实验值进行比较。根据实验,这种类型的空气弹簧具有显着的振幅依赖性,因此系统的频率响应曲线随输入振幅的大小而变化。很明显,当输入幅度接近零时,计算结果与极限情况一致。在本实验中,我们使用市售的空气弹簧。我们的研究对于设计薄空气弹簧隔振器以隔离小振动非常有用。

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  • 来源
    《Journal of Vibration and Acoustics》 |2013年第5期|051029.1-051029.9|共9页
  • 作者单位

    Department of Mechanical Engineering, University of Hyogo 2167 Shosha, Himeji Hyogo 671-2280,Japan;

    Department of Mechanical Engineering, University of Hyogo 2167 Shosha, Himeji Hyogo 671-2280,Japan;

    Department of Mechanical Engineering, University of Hyogo 2167 Shosha, Himeji Hyogo 671-2280,Japan;

    Department of Mechanical Engineering, University of Hyogo 2167 Shosha, Himeji Hyogo 671-2280,Japan;

    Tokkyokiki Corporation 10-133 Minamihatsushima-cho, Amagasaki, Hyogo 660-0833, Japan;

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