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Two approaches for optimum design of motorcycle engine mount systems

机译:摩托车发动机悬置系统优化设计的两种方法

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摘要

This article examines the dynamic response of a motorcycle engine mounting system used for vibration isolation. The engine is modelled as a rigid body connected to the frame by rubber mounts as well as tie-links The suspension dynamics is included in the model through the attachment point with the motorcycle swing-arm, The forced excitations include shaking forces due to engine imbalance transmitted to the frame as well as loads caused by irregularity of the road profile Two optimization-based procedures are implemented to design an engine mount system, The first procedure minimizes the load transmitted to the frame while constraining the engine displacement due to dynamic loads within a defined envelope The second procedure changes the natural frequencies of the system (by altering mount parameters) so as to avoid certain predefined ranges of operating frequencies. Both optimization procedures use engine mount stiffness, location, and orientation as design variables. Three numerical examples are presented to illustrate the effectiveness of the proposed techniques in optimizing the performance of an engine mounting system.
机译:本文研究了用于隔振的摩托车发动机安装系统的动态响应。发动机被建模为通过橡胶支座和拉杆连接至车架的刚性车身。悬架动力学通过与摩托车摆臂的连接点包括在模型中。由于发动机失衡,强制激励包括振动力传递到车架以及道路轮廓不平整所导致的载荷实施了两个基于优化的过程来设计发动机安装系统,第一个过程将传递到车架的载荷减至最小,同时限制了发动机内部由于动态载荷而产生的发动机排量。定义的包络线第二步(通过更改安装参数)更改系统的固有频率,从而避免某些预定的工作频率范围。两种优化程序都将发动机支架的刚度,位置和方向用作设计变量。给出了三个数值示例,以说明所提出的技术在优化发动机安装系统性能方面的有效性。

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