Analysis of mechanical properties and deformation characteristics of debonding-repaired slab track

IF 3.4 2区 工程技术 Q2 TRANSPORTATION SCIENCE & TECHNOLOGY International Journal of Rail Transportation Pub Date : 2023-09-26 DOI:10.1080/23248378.2023.2261478
Wei Du, Juanjuan Ren, Wengao Liu, Kaiyao Zhang, Shijie Deng, Guihong Xu
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Abstract

ABSTRACTTo investigate the influence of debonding-repair materials on interface damage and deformation characteristics in track structures, a finite element model was established to represent CRTS III prefabricated slab track with debonding repairment under various conditions. The mechanical properties and deformation law of the track structure under the combined loads of train and temperature gradient were analysed under intact interlayer, debonding without repairment, and debonding-repaired conditions. Results show that both the interface damage area and stress increase in line with the temperature gradient, and that positive temperature gradients have a greater effect on interface damage than negative temperature gradients. In addition, the interface damage area and stress increase can be effectively slowed down with debonding repairment materials. Specifically, under a temperature gradient of 90°C/m, the failure rate of interfacial bonds is 21.2%, 29.6%, and 2.1% for conditions of intact interlayer, debonding without repairment, and debonding with repairment, respectively. In debonding conditions, the maximum vertical displacements along the lateral and longit udinal direction increase about 1.1 times ~ 2.3 times under positive temperature gradients more than the intact interlayer condition. Further, the pattern and peak vertical deformation for track slab are basically the same between the intact interlayer and the repaired debonding conditions. The calculation results indicate that the repair measures can alleviate interfacial adhesive deterioration and reduce the deformation of the track structures.KEYWORDS: Slab trackdebonding repairmenttemperature loadinterface damagedeformation characteristics Disclosure statementNo potential conflict of interest was reported by the author(s).Additional informationFundingThe research is supported by the National Key R&D Program of China (No. 2021YFF0502100), the National Natural Science Foundation of China (No. 52022085, 52278461), and the Sichuan Province Youth Science and Technology Innovation Team (No. 2022JDTD0015), whose support are gratefully acknowledged. The results and opinions presented are those of the authors and do not necessarily reflect those of the sponsoring agencies.
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脱胶修补板坯轨道力学性能及变形特性分析
摘要为了研究脱粘修复材料对轨道结构界面损伤及变形特性的影响,建立了不同条件下CRTS III预制板轨道脱粘修复有限元模型。分析了完整夹层、不修补脱粘和修补脱粘三种情况下轨道结构在列车和温度梯度联合荷载作用下的力学性能和变形规律。结果表明:界面损伤面积和应力均随温度梯度增大而增大,且正温度梯度对界面损伤的影响大于负温度梯度;此外,脱粘修复材料可以有效减缓界面损伤面积和应力增加。其中,在90℃/m的温度梯度下,界面键的失效率分别为21.2%、29.6%和2.1%,分别为夹层完整、脱粘不修复和脱粘修复。在脱粘条件下,正温度梯度下沿横向和纵向的最大垂直位移比层间完整条件下增加1.1 ~ 2.3倍。此外,轨道板在完整夹层和修复剥离条件下的垂直变形形态和峰值基本相同。计算结果表明,修复措施可以缓解轨道结构的界面胶粘剂劣化,减少轨道结构的变形。关键词:板坯轨道剥离修复温度载荷界面损伤变形特征披露声明作者未报告潜在利益冲突。本研究得到国家重点研发计划项目(No. 2021YFF0502100)、国家自然科学基金项目(No. 52022085, 52278461)和四川省青少年科技创新团队(No. 2022JDTD0015)的支持,在此表示感谢。本文的结果和观点仅代表作者的观点,并不一定反映赞助机构的观点。
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来源期刊
International Journal of Rail Transportation
International Journal of Rail Transportation TRANSPORTATION SCIENCE & TECHNOLOGY-
CiteScore
6.90
自引率
15.00%
发文量
51
期刊介绍: The unprecedented modernization and expansion of rail transportation system will require substantial new efforts in scientific research for field-deployable technologies. The International Journal of Rail Transportation (IJRT) aims to provide an open forum for scientists, researchers, and engineers in the world to promote the exchange of the latest scientific and technological innovations in rail transportation; and to advance the state-of-the-art engineering and practices for various types of rail based transportation systems. IJRT covers all main areas of rail vehicle, infrastructure, traction power, operation, communication, and environment. The journal publishes original, significant articles on topics in dynamics and mechanics of rail vehicle, track, and bridge system; planning and design, construction, operation, inspection, and maintenance of rail infrastructure; train operation, control, scheduling and management; rail electrification; signalling and communication; and environmental impacts such as vibration and noise. The editorial policy of the new journal will abide by the highest level of standards in research rigor, ethics, and academic freedom. All published articles in IJRT have undergone rigorous peer review, based on initial editor screening and anonymous refereeing by independent experts. There are no page charges and colour figures are included in the online edition free of charge.
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