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首页> 外文期刊>Journal of Modern Transportation >Identifying the relationship between suspension parameters of underframe equipment and carbody modal frequency
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Identifying the relationship between suspension parameters of underframe equipment and carbody modal frequency

机译:确定底架设备的悬架参数与车身模态频率之间的关系

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Abstract As a critical component of the railway vehicle, underframe equipment has a great influence on the ride comfort of railway vehicles due to their big mass and active vibration. Therefore, study on the relationship between suspension parameters of underframe equipment and the modal frequency of carbody is extremely crucial for controlling the ride quality of railway vehicles. In this paper, a finite element model of the carbody was developed to investigate the effects of the suspension location, the mass of the suspension equipment, and the suspension frequency on the mode of the carbody. Then, the matching relationship between the suspension parameters and the modal frequency of the carbody was studied through the transfer function. In addition, roller rig tests were performed to verify the numerical simulation model of the carbody. The results show that the suspension parameters of the underframe equipment have a great influence on the mode of the carbody, especially for the frequency of the first bending mode. To improve the frequency of carbody high-frequency bending and reduce energy transfer, equipment with a large mass should be suspended toward the middle of the carbody. The weight of the equipment strongly affects the first bending frequency and energy transfer of the carbody. The frequency of heavy suspended equipment should be sufficiently low to increase the transmissibility of high frequencies and improve the vibration characteristics of the carbody. Although the bending frequency of the carbody can be improved effectively by increasing the suspension stiffness of the suspension equipment, in order to reduce carbody vibration effectively, the suspension frequency of the equipment should be slightly lower than the carbody bending frequency.
机译:摘要底架设备是铁路车辆的重要组成部分,其质量大,振动大,对铁路车辆的乘坐舒适性影响很大。因此,研究底架设备的悬架参数与车身的模态频率之间的关系对于控制铁路车辆的行驶质量至关重要。本文建立了车身的有限元模型,以研究悬架位置,悬架设备的质量以及悬架频率对车身模式的影响。然后,通过传递函数研究了悬架参数与车身模态频率的匹配关系。此外,还进行了轮架试验,以验证车身的数值模拟模型。结果表明,底架设备的悬架参数对车身的模式有很大的影响,特别是对于第一弯曲模式的频率。为了提高车身高频弯曲的频率并减少能量传递,应将质量较大的设备悬挂在车身中间。设备的重量严重影响车身的首次弯曲频率和能量传递。重型悬挂设备的频率应足够低,以增加高频的透射率并改善车身的振动特性。尽管可以通过增加悬架设备的悬架刚度来有效地改善车身的弯曲频率,但是为了有效地减小车身的振动,设备的悬架频率应略低于车身的弯曲频率。

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