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High-Speed Train-Track-Bridge Dynamic Interaction considering Wheel-Rail Contact Nonlinearity due to Wheel Hollow Wear

机译:考虑车轮轨道接触非线性的高速火车轨道 - 桥式动态相互作用

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Wheel hollow wear is a common form of wheel-surface damage in high-speed trains, which is of great concern and a potential threat to the service performance and safety of the high-speed railway system. At the same time, rail corridors in high-speed railways are extensively straightened through the addition of bridges. However, only few studies paid attention to the influence of wheel-profile wear on the train-track-bridge dynamic interaction. This paper reports a study of the high-speed train-track-bridge dynamic interactions under new and hollow worn wheel profiles. A nonlinear rigid-flexible coupled model of a Chinese high-speed train travelling on nonballasted tracks supported by a long-span continuous girder bridge is formulated. This modelling is based on the train-track-bridge interaction theory, the wheel-rail nonelliptical multipoint contact theory, and the modified Craig–Bampton modal synthesis method. The effects of wheel-rail nonlinearity caused by the wheel hollow wear are fully considered. The proposed model is applied to predict the vertical and lateral dynamic responses of the high-speed train-track-bridge system under new and worn wheel profiles, in which a high-speed train passing through a long-span continuous girder bridge at a speed of 350?km/h is considered. The numerical results show that the wheel hollow wear changes the geometric parameters of the wheel-rail contact and then deteriorates the train-track-bridge interactions. The worn wheels can increase the vibration response of the high-speed railway bridges.
机译:车轮中空磨损是高速列车的常见轮廓损坏的形式,这对高速铁路系统的服务性能和安全性具有很大的关注和潜在的威胁。同时,高速铁路中的轨道走廊通过添加桥梁广泛地伸直。然而,只有很少的研究会注意轮廓磨损对火车轨道 - 桥梁动态相互作用的影响。本文报道了新的和中空磨损轮廓下的高速火车轨道动态相互作用。制定了由长跨度连续梁桥支撑的非稳定轨道上的中国高速列车的非线性刚性耦合模型。该建模基于火车轨道 - 桥接相互作用理论,轮轨无线多点关系接触理论,以及改进的CRAIG-BAMPTON模态合成方法。完全考虑由车轮中空磨损引起的轮轨非线性的影响。应用拟议模型以预测新的和磨损的轮廓下的高速列车轨道桥系统的垂直和横向动力响应,其中通过长跨度连续梁桥的高速列车以速度考虑了350 km / h。数值结果表明,车轮中空磨损改变了轮轨接触的几何参数,然后脱离了火车轨道桥相互作用。磨损的车轮可以增加高速铁路桥的振动响应。

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