首页> 外文会议>International Conference on Mechanical Engineering and Mechanics vol.2; 20051026-28; Nanjing(CN) >Design Analysis and Optimization to Dynamic Characteristic of Engine Mounting System
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Design Analysis and Optimization to Dynamic Characteristic of Engine Mounting System

机译:发动机悬置系统动态特性的设计分析与优化

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摘要

The engine is the important source of excitation of the vehicle, which seriously influences the level of automotive vibration. The ideal engine mounting system should isolate engine vibration caused by engine disturbance force in engine speed range and prevent vehicle body bounce from road excitation. In recent years, the requirements of vibration and noise level isolation for vehicle became more and more, and the modern vehicle designs have a trend for lighter bodies and more power-intensive engines. As a result, it makes body rigidity reduce, engine excitation amplify and vehicle interior noise and vibration characteristic worsen. This paper the summarized optimum design method of the engine mounting system and gave the optimum calculations against the problem of vibration for a vehicle. In the optimum process, with the mounts rigidity as the design variable, with the systematic natural frequency as the constraint condition and with the decoupling of the vibration mode in z and θ_x direction as the objective function, the optimum design of the dynamic characteristic of the engine mounting system is made by using a complex method. The date shows the vibration level of test vehicle is effectively reduced. The dynamic characteristics of the mounting system are improved effectively through optimization design for the mounting parameters and the vibration state of vehicle gets better improvement.
机译:发动机是车辆励磁的重要来源,严重影响了汽车的振动水平。理想的发动机安装系统应隔离由发动机转速范围内的发动机干扰力引起的发动机振动,并防止车身因道路激励而反弹。近年来,对车辆的振动和噪声水平隔离的要求变得越来越高,并且现代的车辆设计具有轻量化的车身和功率消耗更大的发动机的趋势。结果,它使车身刚度降低,发动机激励放大并且车辆内部噪声和振动特性变差。本文总结了发动机安装系统的最佳设计方法,并针对车辆的振动问题进行了优化计算。在最佳过程中,以安装架的刚度为设计变量,以系统固有频率为约束条件,以z和θ_x方向的振动模式解耦为目标函数,对电机的动态特性进行了优化设计。发动机安装系统是通过复杂的方法制成的。日期显示测试车辆的振动水平已有效降低。通过对安装参数的优化设计,有效改善了安装系统的动态特性,使车辆的振动状态得到了更好的改善。

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