• CN:11-2187/TH
  • ISSN:0577-6686

›› 2008, Vol. 44 ›› Issue (12): 274-279.

• 论文 • 上一篇    下一篇

车辆单筒充气磁流变减振器的阻尼力数学模型及试验仿真

贾永枢;周孔亢   

  1. 浙江工贸职业技术学院;江苏大学汽车与交通工程学院
  • 发布日期:2008-12-15

Damping Force Mathematical Model and Experiment Simulation on the Vehicle Mono-tube and Air-charged Magnetorheological Fluids Damper

JIA Yongshu;ZHOU Kongkang   

  1. Zhejiang Industry &Trade Polytechnic School of Automobile and Traffic Engineering, Jiangsu University
  • Published:2008-12-15

摘要: 介绍一种车辆单筒充气磁流变减振器的结构和工作原理,其内部的磁流变液材料是一种新型的智能材料,其流变特性可随所加载磁场强度的变化而变化,并且这一过程是可逆的,用磁流变液制成的减振器具有体积小、阻尼力大、动态范围广和频响高等优点。研究利用磁流变液的非牛顿宾汉流体模型和流体运动微分方程,建立反映单筒充气磁流变减振器阻尼力特性的数学模型;对单筒充气磁流变减振器进行台架试验,得到不同电流的减振器示功特性图;通过试验测得磁流变减振器的仿真参数,然后在Matlab软件环境下完成阻尼力数学模型的仿真;试验的示功特性与数学模型仿真进行分析比较,结果表明仿真数据与试验数据较吻合,验证了建立的单筒充气阻尼力数学模型的正确性。

关键词: 磁流变减振器, 示功特性, 阻尼力

Abstract: The structure and working principle of a vehicle mono-tube and air-charged magnetorheological fluids(MRF) damper is introduced, and the magnetorheological material in the damper is a new type of intelligent material whose rheological behavior can change with the change of the intensity of loading magnetic field, and the process is reversible. The MRF damper has the features of small volume, great damping force, wide dynamic range, and quick frequency response. The mathematical model of damping force is established by using non-Newtonian fluid model, Bingham plastic model and fluid motion differential equation. The mathematical model indicates the characteristic of damping force. Experiment is done to test the damper characteristics, and the charts of damping-displacement characteristic are obtained with different electric current. The simulation parameters of the damper are obtained through experiment, then the mathematical model of damping force is simulated in Matlab software. The simulation results are compared with testing results. The results show that they agree well, and the damping force mathematical model is proved to be right.

Key words: Damping force, Damping-displacement characteristic, Magnetorheological fluids(MRF) damper

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