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首页> 外文期刊>Journal of vibration and control: JVC >Optimization of an engine mounting system with consideration of frequency-dependent stiffness and loss factor
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Optimization of an engine mounting system with consideration of frequency-dependent stiffness and loss factor

机译:考虑到频率相关的刚度和损耗因子,优化发动机安装系统

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摘要

An engine mounting system is the primary vibration isolator of the engine from the chassis. The frequency-dependent stiffness and loss factor present a more accurate representation of a rubber mount as opposed to the frequency-independent damping model. In this article, dynamic optimization of an engine mounting system considering the frequency-dependent stiffness and loss factor is presented. The dynamic properties in all three principal directions are measured on the basis of the optimum locations and orientation angles of the individual engine mounts, which are identified to minimize the mean force transmissibility of the system for a range of frequencies, resulting in a 45% reduction in the vertical transmissibility to the installation base. In comparison, optimization based on a frequency-independent stiffness underestimated the peak transmissibility, and minimization of the vertical force transmissibility created a significant increase in other directions. The optimum parameters are applied to a small utility two-stroke engine. A significant reduction in the transmitted force and engine displacement is demonstrated.
机译:发动机安装系统是发动机与底盘之间的主要隔振器。与频率无关的阻尼模型相反,与频率有关的刚度和损耗因子代表了橡胶支座的更精确表示。在本文中,提出了一种考虑频率依赖的刚度和损耗因子的发动机安装系统的动态优化。在所有三个主要方向上的动态特性都是根据各个发动机悬置的最佳位置和方向角进行测量的,确定这些位置和方向角可以最大程度地减小系统在一定频率范围内的平均力传递率,从而降低45%垂直传输到安装基座。相比之下,基于频率独立的刚度的优化低估了峰值传递率,而垂直力传递率的最小化则导致其他方向的显着增加。最佳参数应用于小型公用二冲程发动机。证明了传递力和发动机排量的显着降低。

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