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Comparative study on wheel–rail dynamic interactions of side-frame cross-bracing bogie and sub-frame radial bogie

机译:侧架交叉支撑转向架和子架径向转向架轮-轨动力相互作用的比较研究

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Abstract Improving freight axle load is the most effective method to improve railway freight capability; based on the imported technologies of railway freight bogie, the 27?t axle load side-frame cross-bracing bogie and sub-frame radial bogie are developed in China. In order to analyze and compare dynamic interactions of the two newly developed heavy-haul freight bogies, we establish a vehicle–track coupling dynamic model and use numerical calculation methods for computer simulation. The dynamic performances of the two bogies are simulated separately at various conditions. The results show that at the dipped joint and straight line running conditions, the wheel–rail dynamic interactions of both bogies are basically the same, but at the curve negotiation condition, the wear and the lateral force of the side-frame cross-bracing bogie are much higher than that of the sub-frame radial bogie, and the advantages become more obvious when the curve radius is smaller. The results also indicate that the sub-frame radial bogie has better low-wheel–rail interaction characteristics.
机译:摘要改善货运轴荷是提高铁路货运能力的最有效方法。基于铁路货运转向架的进口技术,在中国开发了27t轴载荷侧架交叉支撑转向架和子架径向转向架。为了分析和比较两个新开发的重型货运转向架的动力相互作用,我们建立了车轨耦合动力学模型并使用数值计算方法进行计算机仿真。在不同条件下分别模拟了两个转向架的动态性能。结果表明,在浸渍关节和直线行驶条件下,两个转向架的轮轨动力相互作用基本相同,但在曲线协商条件下,侧架交叉支撑转向架的磨损和侧向力它们比副车架的径向转向架要高得多,并且当弯道半径较小时,其优势变得更加明显。结果还表明,副车架径向转向架具有更好的低轮轨相互作用特性。

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