工程类
接口(物质)
磁道(磁盘驱动器)
轴
汽车工程
接触力
车辆动力学
传输(电信)
系统动力学
动力传输
传动系统
结构工程
机械工程
功率(物理)
计算机科学
电气工程
物理
肺表面活性物质
量子力学
吉布斯等温线
化学工程
人工智能
作者
Zaigang Chen,Wanming Zhai,Kaiyun Wang
标识
DOI:10.1080/00423114.2016.1254260
摘要
A gear transmission system is a key element in a locomotive for the transmission of traction or braking forces between the motor and the wheel–rail interface. Its dynamic performance has a direct effect on the operational reliability of the locomotive and its components. This paper proposes a comprehensive locomotive–track coupled vertical dynamics model, in which the locomotive is driven by axle-hung motors. In this coupled dynamics model, the dynamic interactions between the gear transmission system and the other components, e.g. motor and wheelset, are considered based on the detailed analysis of its structural properties and working mechanism. Thus, the mechanical transmission system for power delivery from the motor to the wheelset via gear transmission is coupled with a traditional locomotive–track dynamics system via the wheel–rail contact interface and the gear mesh interface. This developed dynamics model enables investigations of the dynamic performance of the entire dynamics system under the excitations from the wheel–rail contact interface and/or the gear mesh interface. Dynamic interactions are demonstrated by numerical simulations using this dynamics model. The results indicate that both of the excitations from the wheel–rail contact interface and the gear mesh interface have a significant effect on the dynamic responses of the components in this coupled dynamics system.
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