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The influence of AAR coupler features on estimation of in-train forces
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作者 Om Prakash Yadav Nalinaksh S.Vyas 《Railway Engineering Science》 2023年第3期233-251,共19页
Inadequate management of large in-train forces transferred through coupler systems of a railway train leads to running and structural failures of vehicles.Understanding these phenomena and their mitigation requires ac... Inadequate management of large in-train forces transferred through coupler systems of a railway train leads to running and structural failures of vehicles.Understanding these phenomena and their mitigation requires accurate estimation of relative motions and in-train forces between vehicle bodies.Previous numerical studies have ignored inertia of coupling elements and the impacts between couplers.Thus,existing models underestimate the additional dynamic variations in in-train forces.Detailed multi-body dynamic models of two AAR(Association of American Railroads)coupler systems used in passenger and freight trains are developed,incorporating coupler inertia and various slacks.Due to the modeling and simulation com-plexities involved in a full train model,with such details of coupler system,actual longitudinal train dynamics is not studied.A system comprising only two coupling units,inter-connecting two consecutive vehicles,is modeled.Considered system has been fixed at one end and an excitation force is applied at the other end,to mimic a relative force transmission through combined coupler system.Simulation results obtained from this representative system show that,noticeable influence in in-train forces are expected due to the combined effect of inertia of couplers and intermittent impacts between couplers in the slack regime.Maximum amplitude of longitudinal reaction force,transferred from draft gear housing to vehicle body,is expected to be significantly higher than that predicted using existing models of coupler system.It is also observed that the couplers and knuckles are subjected to significant longitudinal and lateral contact forces,due to the intermittent impacts between couplers.Thus,accurate estimation of draft gear reaction force and impact forces between couplers are essential to design vehicle and coupler components,respectively. 展开更多
关键词 Automatic railway coupler Draft gear Longitudinal train dynamics In-train forces coupler slack Intermittent impacts
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车钩间隙对重载列车纵向冲击动力学的影响 被引量:11
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作者 杨敏 王开云 纪天成 《交通运输工程与信息学报》 2018年第2期80-85,共6页
基于列车纵向动力学理论,分析了车钩间隙大小、大间隙车钩数量和车钩间隙分布模式对重载列车纵向冲动的影响。计算结果表明:制动过程中,车钩间隙越小,列车最大车钩力越小,当初速度为60 km/h时,列车车钩间隙为0.01m与0.018m的最大车钩力... 基于列车纵向动力学理论,分析了车钩间隙大小、大间隙车钩数量和车钩间隙分布模式对重载列车纵向冲动的影响。计算结果表明:制动过程中,车钩间隙越小,列车最大车钩力越小,当初速度为60 km/h时,列车车钩间隙为0.01m与0.018m的最大车钩力相差52.14kN;列车最大车钩力随着大间隙车钩数量的增加而显著增大,大间隙车钩数量为10的最大车钩力为799.14kN,大间隙车钩数量为100的最大车钩力为938.18kN,后者比前者增加了17.4%;在凸型分布、上升分布、均匀分布、下降分布和凹型分布5种车钩间隙分布模式中,车钩间隙按凸型分布时列车最大车钩力最小。在允许范围内,采用小间隙车钩和按凸型分布编排不同间隙车钩有益于降低列车纵向冲动。 展开更多
关键词 重载列车 纵向动力学 制动过程 车钩间隙 最大车钩力
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车钩间隙对货运列车车钩力的影响研究 被引量:1
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作者 李翱 《机械》 2011年第S1期20-21,53,共3页
分析了一定车钩间隙下牵引杆的使用对车钩力的影响。根据讨论得出,同样工况下,车钩间隙越大车钩力越大,对列车运行越不利。牵引杆的使用可有效降低车钩力。并结合实际运用情况。
关键词 车钩间隙 车钩力 牵引杆
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我国列车采用UIC技术应注意的问题 被引量:2
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作者 李岳恒 《铁道机车车辆》 2012年第6期62-67,共6页
以车钩缓冲器力学模型、特性说明链子车钩列车与自动车钩列车的区别,以及列车连接技术导致列车技术的差异。指出应根据我国列车的特点引进相应技术,某些基于无间隙车钩的专有技术在自动车钩列车上直接使用值得商榷。
关键词 链子车钩 自动车钩 车钩间隙 车钩间隙累积效应
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