摘要
为了在车辆-轨道耦合动力学仿真中能更真实反映轮轨接触状态,利用迹线法原理和轨廓分区法,在考虑轮对的横移、浮沉、摇头、侧滚和左右钢轨的横移、浮沉、侧滚的条件下,分别计算轨顶和轨侧区域与车轮的最小轮轨间隙量,以此来判断轮轨的真实接触状态:正常的一点接触、非正常的一点接触、两点接触和车轮完全悬浮,并根据非线性赫兹接触理论分别求得两接触点处的轮轨法向力。轮轨接触关系仿真结果表明根据轮轨接触关系计算方法得出的轮轨接触关系符合车辆在实际线路上的运行状态。
In order to reflect really wheel-rail contact states, the displacement, bouncing, yaw, roll of wheelsets and the displacement,bouncing, roll of rails were considered, wheel-rail normal forces at two contact points were respectively calculated by nonlinear Hertz contact theory, the minimum gap between rail and wheel was calculated by trochoid method and divided rail outline method, so that wheel-rail real contact states, such as natural one-point contact, nonnatural one- point contact, two-point contact and wheel complete lift, were easily judged. Simulation result of wheel-rail contact relation shows that judged wheel-rail relation accords with real wheel-rail contact relation, the method is feasible. 2 tabs, 4 figs, 11 refs.
出处
《交通运输工程学报》
EI
CSCD
北大核心
2006年第4期10-13,共4页
Journal of Traffic and Transportation Engineering
基金
高等学校博士学科点专项科研基金项目(20030613004)
国家创新优秀群体基金项目(50521503)
关键词
车辆工程
轮轨接触
轨廓分区
全面计算
轮轨法向力
vehicle engineering
wheel-rail contact
divided rail outline
total calculation
wheelrail normal force