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直线电机地铁车辆铝基复合材料制动盘动力学性能分析
引用本文:周开磊,蔡吴斌,池茂儒,罗贇.直线电机地铁车辆铝基复合材料制动盘动力学性能分析[J].机车电传动,2021(1):53-58.
作者姓名:周开磊  蔡吴斌  池茂儒  罗贇
作者单位:西南交通大学牵引动力国家重点实验室,四川 成都 610031
摘    要:利用多体动力学软件建立了直线电机地铁车辆动力学模型,采用Simpack和Simulink联合仿真的方法,考虑实际作用在车辆上的牵引力、制动力和电磁力,以工程实际需要为背景,对比分析了该地铁车辆将铸铁制动盘更换为铝基复合材料制动盘前后,在惰行、牵引、制动工况运行时的电机气隙、电机和轴箱振动以及各项动力学指标.研究结果表明...

关 键 词:直线电机  地铁车辆  城市轨道交通  电磁力  铝基复合材料  制动盘  动力学性能

Dynamic Performance Analysis of Aluminum Matrix Composite Brake Disc for Linear Metro Vehicle
ZHOU Kailei,CAI Wubin,CHI Maoru,LUO Yun.Dynamic Performance Analysis of Aluminum Matrix Composite Brake Disc for Linear Metro Vehicle[J].Electric Drive For Locomotive,2021(1):53-58.
Authors:ZHOU Kailei  CAI Wubin  CHI Maoru  LUO Yun
Institution:(State Key Laboratory of Traction Power,Southwest Jiaotong University,Chengdu,Sichuan 610031,China)
Abstract:The dynamic model of a linear motor metro vehicle was established by using multi-body dynamics software. Using Simpack and Simulink co-simulation method and considering the actual traction force, braking force and electromagnetic force on the vehicle, based on the actual needs of the project, the air gap of motor, vibration of motor and axle box as well as various dynamic indexes during coasting, traction and braking of the metro vehicle before and after replacing the cast iron brake disc with the aluminum matrix composite brake disc were analyzed. The results showed that the vibration of the motor and axle box was little influenced by the change of the brake disc, the nonlinear critical speed of the vehicle was slightly increased, the stability and comfort index of the vehicle was little difference, and the lateral force and derailment coefficient of the vehicle were little different before and after the change of the brake disc;Due to the light weight of the replaced aluminum composite brake disc and the reduction of non-sprung mass, the wheel rail vertical force and wheel load reduction rate were improved.
Keywords:linear motor  metro vehicle  urban rail transit  electromagnetic force  aluminum matrix composites  brake disc  dynamic performance
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