4.7 Article

Mechanical property and damage evolution of concrete interface of ballastless track in high-speed railway: Experiment and simulation

Journal

CONSTRUCTION AND BUILDING MATERIALS
Volume 187, Issue -, Pages 460-473

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.conbuildmat.2018.07.163

Keywords

Railway slab track; Concrete interface; Damage evolution; Fatigue; Digital image correlation; Cohesive zone model

Funding

  1. National Natural Science Foundation of China [11790283, 51708457, 51778194]
  2. Applied Basic Research Foundation of Sichuan Province [2017JY0215]
  3. 111 Project [B16041]

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The interface damage of ballastless tracks in high-speed railway is considered as one of the most critical damage problems, however, the mechanical property and damage evolution of the concrete interface of ballastless tracks are rarely ascertained, and maintenance of the interface damage has been a heavy burden on the modern railway networks. This work aims to reveal the damage constitutive relationship and fatigue performance of the concrete interface of double-clock ballastless track based on experimental tests and simulation analysis. Firstly, by making the composite specimen composed of half track-slab concrete and half supporting-layer concrete and by designing experiment programs for the interface cracking test, the full-field evolution of strain distribution of the specimen under monotonic splitting loading is obtained based on the digital image correlation (DIC) technique, and the key parameters of a cohesive zone model for describing the interface stress-displacement relationship is determined. Subsequently, the interface damage evolution is investigated by applying cyclic splitting loads, and the interface fatigue S-N curve is acquired and validated by comparing with relevant references. It is found that the fatigue life of the concrete interface can be easily predicted with only knowing its secondary growth rate of the opening displacement amplitude. Furthermore, to elucidate the practical application of the experiment data and proposed models, the interface damage evolution of the double-block ballast less track under monotonic and cyclic temperature gradient loads are investigated, respectively. Simulation results show that much attentions should be paid to the negative temperature gradient load (below 60 degrees C/m) that could cause initiation of interface cracks. The proposed fatigue S-N curve enable a convenient and effective prediction for the interface fatigue damage of ballastless track with different service state under random loading cycles. (C) 2018 Elsevier Ltd. All rights reserved.

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