三缸发动机双质量飞轮扭转振动的非线性分析

Ghasem Maghsoudi Gharehbolagh, Abbas Rohani Bastami, P. Safarpour, Y. Abbaszadeh
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引用次数: 0

摘要

动力传动系统的扭转振动是影响传动系统平顺性和疲劳性的主要因素之一。这些振动是由气体压力和惯性力的周期性变化引起的。为了减少这些振动,一些车辆使用了双质量飞轮(DMF)。dmf通常被建模为用线性弹簧连接的两个圆盘。然而,大的旋转角度会使dmf的线性假设失效。研究了具有非线性DMF的三缸发动机的扭转振动问题,首次得到了实际发动机扭转激励下扭转振动非线性控制方程的解析解。值得注意的是,在以前的工作中,DMF的扭转振动方程是用数值方法求解的。解析解有助于更容易地研究DMF设计参数的影响。结果表明,在稳态条件下,解析解与数值解很好地匹配。最后进行了参数化研究,给出了设计参数对发动机转速和飞轮输出转速振荡幅值的影响。
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Nonlinear analysis of torsional vibrations of dual mass flywheel in a three-cylinder engine
Torsional vibration of the power transmission system is one of the main factors which affects ride comfort and fatigue of the driveline components. These vibrations are caused by periodic changes in the gas pressure and inertial forces. To reduce these vibrations, dual mass flywheels (DMF) are used in some vehicles. DMFs are usually modelled as two disks connected with linear springs. However large rotation angle in DMFs can invalidate linear assumption. In this research, torsional vibration of a three-cylinder engine with nonlinear DMF is investigated and an analytical solution is obtained for the governing nonlinear equations of torsional vibrations under real engine torsional excitation for the first time. It should be noted that in the previous works, the torsional vibration equations of the DMF had been solved numerically. Analytical solution helps to study the effect of design parameters of DMF more easily. It is shown that the analytical and numerical solutions are well matched in steady-state conditions. Finally, a parametric study is performed and the effects of design parameters on the oscillation amplitude of the engine speed and flywheel output speed are presented.
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来源期刊
CiteScore
4.10
自引率
11.10%
发文量
38
审稿时长
>12 weeks
期刊介绍: The Journal of Multi-body Dynamics is a multi-disciplinary forum covering all aspects of mechanical design and dynamic analysis of multi-body systems. It is essential reading for academic and industrial research and development departments active in the mechanical design, monitoring and dynamic analysis of multi-body systems.
期刊最新文献
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