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Analytical and experimental study of sleeper SAT S 312 in slab track Sateba system

机译:板式轨道Sateba系统中轨枕SAT S 312的分析和实验研究

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In this paper, a simple prediction tool based on a two-dimensional model is developed for a slab track system composed of two rails with rail pads, sleepers with sleeper pads, and a concrete base slab. The track and the slab are considered as infinite beams with bending stiffness, loss factor and mass per unit length. The track system is represented by its impedance per unit length of track and the ground by its line input impedance calculated using a two-dimensional elastic half-space ground model based on the wave approach. Damping of each track component is modelled as hysteretic damping and is taken into account by using a complex stiffness. The unsprung mass of the vehicle is considered as a concentrated mass at the excitation point on the rail head. The effect of the dynamic stiffness of the sleeper pads on the vibration isolation is studied in detail, the vibration isolation provided by the track system being quantified by an insertion gain in dB per one-third octave band. The second part of this paper presents an experimental test rig used to measure the dynamic stiffness of the sleeper pads on a full width section of the track (two rails). The experimental set-up is submitted to vertical as well as horizontal static loads (via hydraulic jacks) and an electrodynamic shaker is used for dynamic excitation of the system. The determination of the dynamic stiffness of the sleeper pads is based on the approach called the "direct method". The limitations of the experimental set-up are discussed. The measurement results for one type of sleeper pad are presented. (c) 2006 Elsevier Ltd. All rights reserved.
机译:本文针对平板轨道系统,开发了一种基于二维模型的简单预测工具,该系统由两个带轨垫的钢轨,带轨枕的轨枕和混凝土基础平板组成。轨道和平板被视为具有抗弯刚度,损耗因子和单位长度质量的无限大梁。轨道系统由其每单位轨道长度的阻抗和地面表示,由其线路输入阻抗表示​​,该输入阻抗是使用基于波浪方法的二维弹性半空间接地模型计算得出的。每个轨道组件的阻尼都被建模为滞后阻尼,并通过使用复杂的刚度予以考虑。车辆的未悬挂质量被认为是在轨头上激励点处的集中质量。详细研究了轨枕垫的动态刚度对隔振的影响,轨道系统提供的隔振通过每三分之一倍频程的dB插入增益来量化。本文的第二部分提供了一个实验测试装置,用于测量轨道全宽部分(两个轨道)上的轨枕垫的动态刚度。实验设置将承受垂直和水平静态载荷(通过液压千斤顶),并使用电动振动筛对系统进行动态激励。枕垫的动态刚度的确定基于称为“直接方法”的方法。讨论了实验设置的局限性。给出了一种类型的枕木的测量结果。 (c)2006 Elsevier Ltd.保留所有权利。

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