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VIBRATION TEST AND ANALYSIS OF URBAN LIGHT RAIL BUS

机译:城市轻轨客车振动试验与分析

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With the accelerated pace of city development and urban population increases, urban public transport is facing a severe challenge. In particular the rapid development of automobile industry and the extensive use of the car cause a traffic jam, make more serious pollution and also make great difficulty for people travel. In view of foreign advanced technology, combined with China's reality, the development of urban rail traffic is an important way to solve this problem. Urban light rail traffic has a lot of characteristics such as short construction period, low cost, fast and flexible installation. So, urban planning and construction departments think much of it. But the noise pollution of light rail traffic also caused widespread concern. In this article, we tested and analyzed the vibration characteristics of light rail bus by using noise and vibration measurement and analysis system. We concluded that the vibration of light rail bus has a great relationship with vibration of the motor and gear box installed on the bus. Traction motor vibration occurs mainly in the middle and low frequency range. The vibration acceleration level at the speed of 80 kilometers per hour is higher than the vibration acceleration level at the speed of 60 kilometers per hour. The vibration of gear box is higher than that of motor vibration. The control of the gear box vibration is crucial to reduce the noise and vibration of urban light rail traffic bus. The results of this study provide basis for design of vibration and noise reduction of the urban light rail bus.
机译:随着城市发展步伐的加快和城市人口的增加,城市公共交通面临着严峻的挑战。特别是汽车工业的飞速发展和汽车的广泛使用造成了交通拥堵,造成了更严重的污染,也给人们出行带来了很大的困难。鉴于国外的先进技术,结合中国的实际情况,发展城市轨道交通是解决这一问题的重要途径。城市轻轨交通具有建设周期短,成本低,安装快捷灵活的特点。因此,城市规划建设部门对此非常重视。但是,轻轨交通的噪声污染也引起了广泛关注。在本文中,我们使用噪声和振动测量与分析系统对轻轨客车的振动特性进行了测试和分析。我们得出的结论是,轻轨公交车的振动与安装在公交车上的电动机和变速箱的振动有很大关系。牵引电机的振动主要发生在中低频范围。每小时80公里的速度时的振动加速度水平要高于每小时60公里的速度时的振动加速度水平。齿轮箱的振动高于电动机的振动。齿轮箱振动的控制对于降低城市轻轨交通公交车的噪声和振动至关重要。研究结果为城​​市轻轨客车的减振降噪设计提供了依据。

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