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考虑整车的刚柔多体全浮式驾驶室悬置系统参数优化设计
Parameterized Optimal Design of Fully-Float Cab Suspension System of Commercial Vehicles Based on the Theory of Rigid-Flexible Dynamics
【摘要】 在考虑车架柔性的基础上研究商用车驾驶室悬置参数优化问题。建立了基于整车的刚柔多体全浮式驾驶室悬置系统参数化模型,对驾驶室悬置系统和底盘主悬置系统进行参数匹配优化设计,提高了整车系统的平顺性。
【Abstract】 This paper studies parameterized optimal design of the cab suspension system of commercial vehicles considering the frame flexibility.The rigid-flexible multi-body model for vibration simulation of whole vehicles is established.The parameter-matching optimal design of the cab suspension system and the flex-frame suspension system is done.As a result,the smoothness of vehicles is improved.
【关键词】 振动与波;
刚柔多体;
全浮式驾驶室;
优化;
【Key words】 vibration and wave; rigid-flexible dynamics; fully-float cab; optimization;
【Key words】 vibration and wave; rigid-flexible dynamics; fully-float cab; optimization;
【基金】 汽车车身先进设计制造国家重点实验室(湖南大学)开放基金项目(编号:KLVBDM2005007)
- 【文献出处】 噪声与振动控制 ,Noise and Vibration Control , 编辑部邮箱 ,2009年04期
- 【分类号】U463.33
- 【被引频次】38
- 【下载频次】386