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Vibration Analysis of a Single-Cylinder Reciprocating Compressor considering the Coupling Effects of Torsional Vibration

机译:考虑扭转振动耦合效应的单缸往复式压缩机振动分析

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摘要

A piston slap is one of the main vibration sources of the reciprocating machinery. Much work has been done in this field, most of which was based on a constant rotating speed. However, in practice, the speed of a crankshaft may always fluctuate due to the uneven load or excitation. The inertia forces of moving components are much different at the fluctuating rotating speed comparing with that at a constant speed. In this paper, the piston slap and the induced vibration are analyzed based on the instantaneous angular speed measured on a single-cylinder reciprocating compressor. Firstly, the dynamics of a crank-connecting rod mechanism is analyzed based on the measured instantaneous angular speed which contains the torsional vibration of the air compressor. The time histories of piston slap impact forces considering and without considering torsional vibration are compared. Then, in order to correlate the piston slap impact with the slap-induced vibration, the corresponding transfer functions between the middle stroke of the outer surface of the cylinder liner and the excitation points are measured. And the excitation force on the main bearing is also taken into account to bring the simulation closer to the experimental results. The effects of a torsional vibration on the vibration of the cylinder liner are analyzed, and the simulation results show that the torsional vibration is a factor that must be taken into account in the vibration analysis of the single-cylinder reciprocating compressor.
机译:活塞拍击是往复机械的主要振动源之一。在该领域已经做了很多工作,其中大部分是基于恒定的转速。然而,实际上,由于不均匀的负载或激励,曲轴的速度可能总是波动。与恒定速度相比,在波动的转速下,运动部件的惯性力相差很大。在本文中,基于在单缸往复式压缩机上测量的瞬时角速度,分析了活塞的拍击和引起的振动。首先,基于测得的瞬时角速度来分析曲柄连杆机构的动力学,该瞬时角速度包含空气压缩机的扭转振动。比较了在考虑和不考虑扭转振动的情况下活塞拍击力的时间历程。然后,为了使活塞拍击冲击与拍击引起的振动相关,测量了汽缸套外表面的中间行程与激励点之间的相应传递函数。并且还考虑了主轴承上的激励力,以使仿真更接近实验结果。分析了扭转振动对气缸套振动的影响,仿真结果表明,扭转振动是单缸往复式压缩机振动分析中必须考虑的因素。

著录项

  • 来源
    《Shock and vibration》 |2019年第3期|3904595.1-3904595.9|共9页
  • 作者单位

    Harbin Engn Univ Coll Power & Energy Engn Harbin 150001 Heilongjiang Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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