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Numerical investigation of the behavior of stone ballast mixed by steel slag in ballasted railway track

机译:钢渣混合钢渣中的石碴的行为的数值研究

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Recently, implementing steel slag ballast has been proposed as an appropriate material to substitute stone ballast. In this regard, one of the technical concerns is the behavior of steel slag ballast in both time and frequency domains that needs to be assessed, properly. Furthermore, the combination of stone ballast and steel slag is unavoidable in steel slag ballasted tracks during track maintenance concerning the limitation of steel slag resources. Therefore, this paper suggests an optimal stone ballast-steel slag (SB-SS) combination regarding the dynamic behavior of five SB-SS combinations as 0%SS, 25%SS, 50%SS, 75%SS and 100%SS by weight of ballast using a finite element method (FEM) model of a 50-meter test track. Moreover, using elasticity modulus and Moher-coulomb parameters obtained via a series of plate load and shear strength tests for each SB-SS combination turns FEM model to be more close to the real test track results.Experimental results show that adding steel slag particles to stone ballast increases elasticity modulus and friction angle of ballast layer resulting in the improvement of mechanical behavior of railway track. Consequently, the maximum deflections and root mean square (RMS) of accelerations decrease by increasing steel slag content. Analyzing free vibration of ballast layer combinations reveals that damping ratios of 100%SS ballast layer is the maximum value as 0.25 followed by 75%SS, 50%SS, 25%SS and 0%SS combinations. Moreover, the dominant frequencies of each ballast layer combinations determine that 0% SS, 25%SS and 50%SS coincides within the track excitation frequency range made by wheel sets, while 75% SS and 100%SS are out of which. Finally, according to all results, 75%SS ballast layer is proposed as the optimal SB-SS combination. (C) 2020 Elsevier Ltd. All rights reserved.
机译:最近,已经提出了实施钢渣镇流器作为替代石镇流器的适当材料。在这方面,技术问题之一是钢渣镇流器在需要正确评估的时间和频率域中的行为。此外,在轨道维护期间,钢渣块的组合是不可避免的,在钢结构资源限制的轨道维护期间。因此,本文表明,最佳的石镇缩棒渣(SB-SS)关于五种SB-SS组合的动态行为为0%SS,25%SS,50%SS,75%SS和100%SS重量用50米测试轨道的有限元法(FEM)模型的镇流器。此外,使用通过一系列板载和每个SB-SS组合的板载和剪切强度试验获得的弹性模量和Moher-Coulomb参数将FEM模型更接近真实的测试轨道结果。实验结果表明,将钢渣颗粒添加到石镇载提高了镇流器层的弹性模量和摩擦角,从而提高了铁路轨道的力学行为。因此,通过增加钢渣含量,加速度的最大偏转和均方根(RMS)降低。分析镇流器层组合的自由振动表明,100%SS镇流器层的阻尼比是0.25的最大值,然后是75%SS,50%SS,25%SS和0%SS组合。此外,每个镇流器层组合的主导频率确定0%SS,25%SS和50%SS在轮式组制造的轨道激励频率范围内重合,而75%SS和100%SS不存在。最后,根据所有结果,提出了75%SS镇流器层作为最佳SB-SS组合。 (c)2020 elestvier有限公司保留所有权利。

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