柔性副车架建模及对整车性能影响研究——考虑发动机高频激励

Liang Xu, Shuaihe Zhao, G. Xin, Rui Guo, Haiyan Song, Xin Jia
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引用次数: 1

摘要

副车架是隔离汽车底盘免受发动机高频激励的重要部件,对汽车的性能有很大的影响。目前对副车架对车辆性能影响的研究主要针对车辆的减振降噪性能,缺乏对车辆操纵稳定性和发动机高频激振力的准确描述的研究。本文的特点是更准确地描述了发动机在副车架激振力中的作用,更全面地研究了副车架对整车性能的影响。首先,建立了含高频激励随气缸压力变化的发动机动态模型,并采用模态法建立了柔性副车架模型;然后将它们集成到车辆仿真模型中。仿真在加速度共振、平顺性和操纵稳定性条件下进行。通过仿真分析了副车架不同关键设计参数(质量、结构刚度、安装刚度和阻尼系数)对副车架对车辆的隔振性能、车辆平顺性和操纵稳定性的影响。本研究可以加深我们对发动机高频激励下副车架及其悬置系统对整车性能影响的认识,为其设计提供有效参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on the modeling and influence of flexible sub-frame on vehicle performance: Considering the high frequency excitation of the engine
The sub-frame which insulates the vehicle chassis from the high frequency excitation of the engine has a great influence on vehicle performance. Currently, the research on the influence of sub-frame on vehicle performance mainly aims at the vehicle vibration attenuation and noise reduction performance, and there is a lack of research on vehicle handling stability and the accurate description of the high frequency excitation force of the engine. This paper is characterized by a more accurate description of the role of the engine in the sub-frame excitation force, as well as a more comprehensive study of the impact of the sub-frame on vehicle performance. Firstly, the dynamic engine model with high frequency excitation changing with cylinder pressure is built, and the flexible sub-frame model is built by modal method. Then they are integrated into the vehicle simulation model. The simulation is conducted in the conditions of acceleration resonance, ride comfort and handling stability. Through the simulation this paper analyses the influence of the different key design parameters (mass, structure stiffness, mounting stiffness and damping coefficient) of sub-frame on the vibration isolation performance of sub-frame to vehicle, vehicle ride comfort and handling stability. This research may improve our understanding of the impact of the sub-frame and its mount system on the vehicle performance under the high frequency excitation of the engine, so as to provide an effective reference for their design.
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