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61.
改进了车轮型面设计方法,给出了设计方法的解析数学表达式,将轮对等效锥度与轮轨型面接触状态联系起来,对设计实例进行了轮轨几何接触、非赫兹滚动接触和车辆动力学性能分析.研究结果表明:轮轨接触点能够均匀分散分布;由于接触斑面积增大约23%,最大接触压力降低约21%,使轮轨滚动接触应力降低了约20%;装备实例型面的车辆临界速度... 相似文献
62.
测力钢轨轮轨力连续输出算法 总被引:1,自引:0,他引:1
根据轮轨相互作用特点,利用地面测试数据的信息,采用阈值判断法提取有效的轮轨力数据。设计基于径向基函数神经网络的算法,用以处理不同测试单元处的轮轨力的非线性关系,用不同车轮不同作用点位置作用下的横、垂向力训练神经网络,实现了测力钢轨轮轨力的连续测试,并对3种工况进行了仿真试验。分析结果表明:既存在干扰又存在应变片损坏时的... 相似文献
63.
根据中国高速铁路的现状,在轮对内侧距选用1353、轨底坡选用1:40、钢轨选用中国高速钢轨cHN60的前提下,研究了CRH2上使用的LMa、CRH3上使用的S1002G和日本新干线圆弧车轮JP-ARC这3种踏面对CHN60轮轨的影响.研究结果表明,LMa与CHN60的轮轨接触点分布比较均匀,有利于车轮型面的保持;其次是... 相似文献
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《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(12):1797-1816
The railway industry in the UK is currently expanding the use of condition monitoring of railway vehicles. These systems can be used to improve maintenance procedures or could potentially be used to monitor current vehicle running conditions without the use of cost prohibitive sensors. This paper looks at a novel method for the online detection of areas of low adhesion in the wheel/rail contact that cause significant disruption to the running of a network, particularly in the autumn season. The proposed method uses a Kalman–Bucy filter to estimate the creep forces in the wheel–rail contact area; post-processing is then applied to provide information indicative of the actual adhesion level. The algorithm uses data that, in practice, would be available from a set of modest cost inertial sensors mounted on the vehicle bogie and wheel-sets. The efficacy of the approach is demonstrated using simulation data from a nonlinear dynamic model of the vehicle and its track interface. 相似文献
66.
《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(12):1622-1641
Wheel set flange derailment criteria for railway vehicles are derived and the influence of wheel–rail contact parameters is studied. An indirect method for wheel–rail force measurement based on these derailment evaluation criteria is proposed. Laboratory tests for the calibration of strain–force devices on the bearing box are carried out to determine the relationship between the applied force and the measured strain. The simulation package, SIMPACK, is used to develop a passenger car model to generate wheel–rail forces and vibration signals. Different cases are considered in this model to provide an accurate validation of the identified wheel–rail forces. A feasibility test is conducted in the Beijing Loop test line using a passenger car equipped with a set of strain gauges on the wheel set. The comparison of the force time history applied to the instrumented wheel set and that obtained using the indirect method is presented. 相似文献
67.
《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(2):299-321
Accurately estimating the coefficient of friction (CoF) is essential in modelling railroad dynamics, reducing maintenance costs, and increasing safety in rail operations. The typical assumption of a constant CoF is widely used in theoretical studies; however, it has been noticed that the CoF is not constant, but rather depends on various dynamic parameters and instantaneous conditions. In this paper, we present a newly developed three-dimensional nonlinear CoF model for the dry rail condition and test the CoF variation using this model with estimated dynamic parameters. The wheel–rail is modelled as a mass–spring–damper system to simulate the basic wheel–rail dynamics. Although relatively simple, this model is considered sufficient for the purpose of this study. Simulations are performed at a train speed of 20 m/s using rail roughness as an excitation source. The model captures the CoF extremes and illustrates its nonlinear behaviour and instantaneous dependence on several structural and dynamic parameters. 相似文献
68.
《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(12):1902-1917
The sleeper-passing impact has always been considered negligible in normal conditions, while the experimental data obtained from a High-speed train in a cold weather expressed significant sleeper-passing impacts on the axle box, bogie frame and car body. Therefore, in this study, a vertical coupled vehicle/track dynamic model was developed to investigate the sleeper-passing impacts and its effects on the dynamic performance of the high-speed train. In the model, the dynamic model of vehicle is established with 10 degrees of freedom. The track model is formulated with two rails supported on the discrete supports through the finite element method. The contact forces between the wheel and rail are estimated using the non-linear Hertz contact theory. The parametric studies are conducted to analyse effects of both the vehicle speeds and the discrete support stiffness on the sleeper-passing impacts. The results show that the sleeper-passing impacts become extremely significant with the increased support stiffness of track, especially when the frequencies of sleeper-passing impacts approach to the resonance frequencies of wheel/track system. The damping of primary suspension can effectively lower the magnitude of impacts in the resonance speed ranges, but has little effect on other speed ranges. Finally, a more comprehensively coupled vehicle/track dynamic model integrating with a flexible wheel set is developed to discuss the sleeper-passing-induced flexible vibration of wheel set. 相似文献
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