首页> 外文期刊>Journal of the Japanese Geotechnical Society >DEFORMATION CHARACTERISTICS OF RAILWAY ROADBED AND SUBGRADE UNDER MOVING-WHEEL LOAD
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DEFORMATION CHARACTERISTICS OF RAILWAY ROADBED AND SUBGRADE UNDER MOVING-WHEEL LOAD

机译:动轮荷载作用下铁路路基和路基的变形特性

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摘要

To develop a relevant performance-based design method for railway asphalt roadbed, the resilient and residual deformation characteristics of railway roadbed and subgrade were investigated by means of scale model tests. In the scale model tests, the difference in the mechanism between moving-wheel loading and fixed-point loading were discussed. The deformation characteristics of roadbed and subgrade in the fixed-point loading which apply cyclic vertical load at a fixed point on rails above a certain sleeper was proved to be substantially different from the trend in behaviour when moving a wheel repeatedly on a model rail as in the full scale railway track. Therefore, it was concluded that the moving-wheel loading test is necessary to investigate the deformation characteristics of railway roadbed and subgrade. On the other hand, the result of moving-wheel loading test showed that the resilient deformation characteristics do not change even residual deformation caused by repeated loading. A resilient deformation characteristic of asphalt roadbed is an important factor because the fatigue criterion of asphalt concrete is specified in terms of resilient tensile strain. The resilient deformation characteristics of asphalt roadbed, including the maximum resilient tensile strains in the asphalt concrete layer, were simulated well by linear elastic FEM analysis using exact boundary condition and relevant material parameters described in this paper.
机译:为了建立相关的基于性能的铁路沥青路基设计方法,通过比例模型试验研究了铁路路基和路基的弹性和残余变形特性。在比例模型测试中,讨论了动轮加载和定点加载之间的机理差异。事实证明,在一定轨枕以上的轨道上的固定点处施加周期性垂直载荷的定点载荷下,路基和路基的变形特性与在模型轨道上反复移动车轮时的行为趋势大不相同。完整的铁路轨道。因此,得出的结论是,为了研究铁路路基和路基的变形特性,必须进行动轮载荷试验。另一方面,动轮载荷试验的结果表明,弹性变形特性即使重复载荷引起的残余变形也不会改变。沥青路基的弹性变形特性是一个重要因素,因为沥青混凝土的疲劳准则是根据弹性拉伸应变指定的。通过线性弹性有限元分析,使用精确的边界条件和本文所述的相关材料参数,很好地模拟了沥青路基的弹性变形特性,包括沥青混凝土层中的最大弹性拉伸应变。

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