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耦合车轮导向机理分析及导向性能对比研究 被引量:1

ANALYSIS OF COUPLING WHEEL STEERING MECHANISM AND COMPARATIVE STUDY OF STEERING PERFORMANCE
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摘要 不同耦合方式的车轮,其车辆的导向性能有明显不同.建立传统轮对、独立旋转车轮、纵向耦合轮对和弹性阻尼耦合轮对转向架动力学模型,分析其导向机理及纵向蠕滑力的产生,通过仿真确定不同耦合方式车轮车辆的曲线通过规律.计算结果表明传统轮对能够产生同位车轮大小相等、方向相反的纵向蠕滑力且导向能力最优;独立旋转车轮不能产生纵向蠕滑力,通过曲线时只能依靠轮缘进行导向;纵向耦合轮对产生同侧前后大小相等、方向相反的纵向蠕滑力,导向能力优于独立旋转车轮;弹性阻尼耦合轮对产生的纵向蠕滑力规律与传统轮对纵向蠕滑力规律基本一致,其导向性能略差于传统轮对,优于纵向耦合轮对. The steering performances of wheels with different coupling modes are obviously different.The dynamicsmodels of a bogie with traditional wheelset,independent rotating wheel,longitudinal coupling wheel and elastic damp-ing coupling wheelset were established,respectively,and the guiding mechanism and the generation of longitudinalcreep forces were analyzed.The results showed that the traditional wheelset can produce longitudinal creep forces withthe same size and opposite direction and has the best guiding ability.Independent rotating wheels cannot generate longi-tudinal creep forces,and the guidance can be fulfilled only by the wheel edge when the train passes through curvedlines.The longitudinal coupling wheel also can generate longitudinal creep forces with the same size and opposite direc-tion,and its guiding ability is better than the independent rotating wheel.The generating mechanism of the longitudinalcreep forces produced by the elastic damping coupling wheelset is almost consistent with that of the traditional wheelset,and its guiding performance is slightly worse than the traditional wheelset,but better than the longitudinal couplingwheel.
作者 靳晓亮 戚壮 刘鹏飞 王美琪 刘永强 Jin Xiaoliang;Qi Zhuang;Liu Pengfei;Wang Meiqi;Liu Yongqiang(School of Mechanical Engineering,Shijiazhuang Tiedao University,Shijiazhuang 050043,China)
出处 《动力学与控制学报》 2020年第3期62-70,共9页 Journal of Dynamics and Control
基金 国家自然科学基金重大项目(11790282,11702179) 河北省高等学校青年拔尖人才计划项目(BJ2017001) 河北省自然科学基金青年科学基金项目(A2018210064)。
关键词 传统轮对 独立旋转车轮 耦合轮对 纵向蠕滑力 导向机理 导向性能 traditional wheelset independent rotating wheel coupling wheelset longitudinal creep force steering mechanism steering performance
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