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首页> 外文期刊>Journal of Modern Transportation >Development of a vehicle–track interaction model to predict the vibratory benefits of rail grinding in the time domain
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Development of a vehicle–track interaction model to predict the vibratory benefits of rail grinding in the time domain

机译:车辆-轨道相互作用模型的开发,以预测时域钢轨磨削的振动效益

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Abstract Imperfections in the wheel–rail contact are one of the main sources of generation of railway vibrations. Consequently, it is essential to take expensive corrective maintenance measures, the results of which may be unknown. In order to assess the effectiveness of these measures, this paper develops a vehicle–track interaction model in the time domain of a curved track with presence of rail corrugation on the inner rail. To characterize the behavior of the track, a numerical finite element model is developed using ANSYS software, while the behavior of the vehicle is characterized by a unidirectional model of two masses developed with VAMPIRE PRO software. The overloads obtained with the dynamic model are applied to the numerical model and then, the vibrational response of the track is obtained. Results are validated with real data and used to assess the effectiveness of rail grinding in the reduction of wheel–rail forces and the vibration generation phenomenon.
机译:摘要轮轨接触不良是产生铁路振动的主要原因之一。因此,必须采取昂贵的纠正性维护措施,其结果可能是未知的。为了评估这些措施的有效性,本文开发了在内部轨道上存在轨道波纹的弯曲轨道时域中的车轨相互作用模型。为了表征轨道的行为,使用ANSYS软件开发了数值有限元模型,而车辆的行为则由使用VAMPIRE PRO软件开发的两个质量的单向模型进行了表征。动态模型获得的过载被应用于数值模型,然后获得轨道的振动响应。结果得到了真实数据的验证,并用于评估轨道磨削在减小轮轨力和振动产生现象方面的有效性。

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