On some mechanical characteristics of the ballast in assessing the stress-strain behaviour of railway tracks

BRIСS Transport Pub Date : 2023-06-28 DOI:10.46684/2023.2.3
V. I. Smirnov, S. A. Vidyushenkov
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Abstract

   On the basis of recent research, a review has been carried out on the experimental determination of the mechanical parameters of the materials used as ballast material. Considerable attention is given to the well-founded selection of input data for the calculation, i. e. quantitative characteristics of the elastic properties of the materials used to form the ballast layer, which is treated as a continuous medium. It appears that this approach makes it possible to assess correctly the influence of grain (grain size distribution) distribution, ballast layer thickness and material type on the stability of a railway track to vertical and horizontal disturbances. The data of this review show that material properties and particle size have a signifi cant impact on elastic moduli and in finite-element modelling of static strength problems, grain-size distribution and material properties are only taken into account through these moduli. Experimental results show a non-linear dependence of the elastic moduli on the stress behaviour of the ballast prism, which is related to a densifi cation of the medium in compression. However, it is established that, after a suffi ciently large number of loading cycles, the medium can be treated as linearly elastic. In general, the results of the research allow establishing requirements for damping, geometric and granulometric parameters of the ballast prism.
铁路轨道应力-应变特性评定中道砟的一些力学特性
在国内外研究成果的基础上,对压载材料力学参数的实验测定进行了综述。对于计算输入数据的合理选择,即用于形成压载层的材料的弹性特性的定量特征给予了相当大的关注,压载层被视为连续介质。这种方法可以正确地评估颗粒(粒度分布)分布、道砟层厚度和物料类型对铁路轨道在垂直和水平扰动下稳定性的影响。本综述的数据表明,材料性能和颗粒尺寸对弹性模量有显著影响,在静强度问题的有限元建模中,颗粒尺寸分布和材料性能仅通过这些模量考虑。实验结果表明,压舱棱镜的应力特性与弹性模量呈非线性关系,这与压缩介质的致密化有关。然而,可以确定的是,在足够大的加载循环次数之后,介质可以被视为线性弹性。总的来说,研究结果允许建立阻尼,几何和颗粒参数的压载棱镜的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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