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兵工学报 ›› 2023, Vol. 44 ›› Issue (S1): 67-78.doi: 10.12382/bgxb.2023.0752

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列车碰撞事故下轮轨动态作用机理与脱轨抑制技术

刘腾, 周雄飞, 王成全, 敬霖*()   

  1. 西南交通大学 轨道交通运载系统全国重点实验室, 四川 成都 610031
  • 收稿日期:2023-08-14 上线日期:2023-12-08
  • 通讯作者:
  • 基金资助:
    国家自然科学基金项目(12122211); 国家自然科学基金项目(11772275); 四川省自然科学基金项目(2022NSFSC0035); 牵引动力国家重点实验室自主课题(2023TPL-T12)

Wheel-rail Interaction Mechanism and Derailment Suppression Technology for Train Collision Accidents

LIU Teng, ZHOU Xiongfei, WANG Chengquan, JING Lin*()   

  1. State Key Laboratory of Rail Transit Vehicle System, Southwest Jiaotong University, Chengdu 610031, Sichuan, China
  • Received:2023-08-14 Online:2023-12-08

摘要:

随着铁路运营里程的不断增长,列车碰撞事故难以完全避免,且一旦发生将会造成严重的人员伤亡和财产损失。为尽可能减小列车碰撞事故中的脱轨风险,考虑车辆端部吸能装置和轮轨接触状态,建立三编组列车碰撞有限元模型,仿真模拟列车碰撞可移动障碍物和刚性墙引起的轮对动态响应;讨论不同运行速度和碰撞角度对列车脱轨行为的影响规律,提出一种安装在转向架上具备横垂向限位作用的脱轨抑制装置,分析对比安装脱轨抑制装置前后轮对的运动姿态、位移、侧滚角以及轮轨作用力。研究结果表明:列车碰撞后以横移/抬升耦合作用的形式脱轨;脱轨抑制装置可在一定程度上调整碰撞事故后轮对的运动姿态,限制轮对横移、抬升和侧滚运动,并承担部分轮轨作用力,导致轮轨迅速恢复正常接触状态,具备较好的脱轨抑制能力。

关键词: 列车碰撞, 有限元分析, 脱轨机理, 限位装置, 铁路安全

Abstract:

With the continuous increase of operating mileage of railway, the accidents induced by train collision are difficult to avoid entirely, which will cause heavy casualties and property losses once an accident happens. A finite element model of three-marshalling train is established to reduce the risk of the train derailment in collision accident as much as possible, in which the energy absorption device at the end of train and the wheel-rail contact state are considered. The dynamic responses of the wheelset caused by the train colliding with a movable obstacle and a rigid wall are simulated, respectively. The influences of train speed and collision angle on train derailment behavior are discussed. Furthermore, a derailment suppression device, which has the functions of lateral and vertical limits, installed on the bogie is proposed. The motion attitude, displacement and roll angle of wheelset, and the wheel-rail contact force before and after the installation of the derailment suppression device are analyzed and compared. The results show that the train derails in the form of lateral movement/lift coupling after the collision;the derailment suppression device can be used to adjust the motion posture of wheelset to a certain extent after the collision accident, and also limit the lateral movement, lifting and rolling motion of wheelset. The part of the wheel-rail contact force can be borne by the derailment suppression device, which causes the wheel-rail system to quickly recover to the normal contact state. The proposed device was demonstrated to have a certain derailment suppression ability. The obtained results can provide theoretical basis and technical support for collision passive safety design.

Key words: train collision, finite element analysis, derailment mechanism, limiting device, railway safety

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