考虑脏污材质的有砟道床力学行为及变形机理

Journal Article (2021)
Authors

Zhihai Zhang (Beijing Jiaotong University)

Hong Xiao (Beijing Jiaotong University)

Meng Wang (China Academy of Railway Sciences)

Guang peng Liu (Beijing Jiaotong University)

H Wang (TU Delft - Mechanics and Physics of Structures)

Research Group
Mechanics and Physics of Structures
To reference this document use:
https://doi.org/10.1007/s11771-021-4812-9
More Info
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Publication Year
2021
Language
Chinese (Traditional)
Research Group
Mechanics and Physics of Structures
Issue number
9
Volume number
28
Pages (from-to)
2857-2874
DOI:
https://doi.org/10.1007/s11771-021-4812-9

Abstract

In order to study the interaction between various fouling particles and ballast, a multi-layer and multi-scale discrete element model (DEM) including the sleeper, ballast bed and the surface layer of subgrade was developed. Two typical fouling particles, the hard particles (sand) and soft ones (coal fines), are considered. A support stiffness test of the ballast bed under various fouling conditions was conducted to calibrate the microscopic parameters of the contact model. With the model, the influence of fouling particles on the mechanical behavior and deformation of the ballast bed was analyzed from macro and micro perspectives. The results show that the increase in the strength of the fouling particles enlarges the stiffness of the ballast bed. Hard particles increase the uniformity coefficient of the contact force bond γ of ballast by 50.4%. Fouling particles increase the average stress in the subgrade, soft particles by 2 kPa and hard particles by 1 kPa. Hard particles can reduce the elasticity, plastic deformation and energy dissipation in the track structure. As the fouling particle changes from hard to soft, the proportion of the settlement in ballast bed increases to 40.5% and surface layer of swbgrade settlement decreases to 59.5%. Thus, the influence of fouling particles should be considered carefully in railway design and maintenance.

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