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Field Test Study on the dynamic response of the cement-improved expansive soil subgrade of a heavy-haul railway

机译:重载铁路水泥改良膨胀土路基动力响应的现场试验研究

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摘要

To study the adaptability of cement-improved expansive soil as a heavy-haul railway subgrade filling material, based on a test section of the Inner Mongolia-Jiangxi railway cement-improved expansive soil embankment, cyclic vibration tests were conducted under different axle load, train speed and service environment conditions. By analysing dynamic parameters such as dynamic stress, acceleration and dynamic displacement at different subgrade positions, the train dynamic load distribution and attenuation law in the cement-improved subgrade were obtained, and the axle load, train speed and rainfall effects on the dynamic cement-improved subgrade response were analysed. The dynamic parameters are linearly attenuated along the subgrade depth and lateral direction in the same filling structure layer. The dynamic stress attenuation at the bottom of the subgrade surface layer is approximately 49%, and that at the bottom of the lowermost subgrade layer is 76%. The attenuation of the coarse-grained filler is larger than that of the cement-improved expansive soil; the dynamic parameter values at various subgrade positions increase linearly with increasing train speed and axle load. The closer the vibration source is, the larger the dynamic parameter increment; the change in the subgrade water content has a certain effect on the subgrade's dynamic response characteristics. In the immersed state, the subgrade dynamic parameter value is greater than the natural state value, and the subgrade accumulated deformation will be promoted after subgrade immersion in water.
机译:为了研究水泥改良膨胀土作为重载铁路路基填料的适应性,以内蒙古江西铁路水泥改良膨胀土路堤的试验段为基础,在不同轴荷,列车作用下进行了循环振动试验。速度和服务环境条件。通过分析不同路基位置处的动应力,加速度和动位移等动态参数,得出水泥改良路基的列车动载荷分布和衰减规律,以及轴载荷,列车速度和降雨对动力水泥的影响。分析了改善的路基响应。在同一填充结构层中,动力参数沿路基深度和横向线性衰减。路基表层底部的动应力衰减约为49%,最下层路基底部的动应力衰减约为76%。粗粒填料的衰减大于水泥改良膨胀土的衰减。随着列车速度和车轴负荷的增加,路基各个位置的动态参数值线性增加。振动源越近,动态参数增量越大;路基含水量的变化对路基的动力响应特性有一定影响。在沉浸状态下,路基动力参数值大于自然状态值,将路基浸入水中会促进路基的累积变形。

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