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Structure and Infrastructure Engineering
Maintenance, Management, Life-Cycle Design and Performance
Volume 16, 2020 - Issue 12
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Articles

Railway slab track systems: review and research potentials

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Pages 1635-1653 | Received 23 Jul 2019, Accepted 01 Nov 2020, Published online: 12 Feb 2020

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Read on this site (3)

Emil Aggestam. (2023) Comparison of the dynamic response and environmental impact between traditional and innovative railway track systems. International Journal of Rail Transportation 11:5, pages 685-704.
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Yue Shang, Maria Nogal, Haoyu Wang & A. R. M. (Rogier) Wolfert. (2023) Systems thinking approach for improving maintenance management of discrete rail assets: a review and future perspectives. Structure and Infrastructure Engineering 19:2, pages 197-215.
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Xiaolu Cui, Zhi Cheng, Zongchao Yang, Bo Huang & Zixue Du. (2022) Study on the phenomenon of rail corrugation on high-speed rail based on the friction-induced vibration and feedback vibration. Vehicle System Dynamics 60:2, pages 413-432.
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Articles from other publishers (20)

Yanbo Bai, Zhenxing He, Nengneng Bao & Penghao Li. (2023) Study on the structural stability of the rail pad and its influence on the dynamic response of the vehicle-track coupled system. Measurement 223, pages 113698.
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Emil Aggestam, Anders Ekberg & Jens C. O. Nielsen. (2023) Innovative requirements and evaluation methods for slab track design. Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit.
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Jun Wang, Zhao-Hui Lu, Xuan-Yi Zhang & Yan-Gang Zhao. (2023) Interface behaviour analysis of China railway track system Ⅱ slab ballastless track under temperature action and initial gap damage. Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit.
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Qin Hu & Yi-Jun Shen. (2023) CA mortar void identification for slab track utilizing time-domain Markov chain Monte Carlo-based Bayesian approach. Structural Health Monitoring 22:6, pages 3971-3984.
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Yavuz DurgunAhmet Güllü, Furkan Çalım, Bayezid ÖzdenAli ÖzcanBeyazıt ÖlçerErkan Şenol, Fatih ŞahinHakan Saruhan & Ercan Yüksel. (2023) Investigation of the Effect of Reinforcement Type on the Flexural Performance of Slab Tracks. Journal of Transportation Engineering, Part A: Systems 149:6.
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Christian Khachaturian, Marcus S Dersch, J Riley Edwards & Matheus Trizotto. (2022) Quantification of longitudinal fastener stiffness and the effect on fastening system loading demand. Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit 237:3, pages 347-355.
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Shaohua Wang, Hao Zheng, Lihua Tang, Zhaoyu Li, Renda Zhao, Yuqian Lu & Kean C. Aw. (2022) Vibration-based and computer vision-aided nondestructive health condition evaluation of rail track structures. Journal of Civil Structural Health Monitoring 13:1, pages 1-14.
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Xin Xin, Zunsong Ren, Yi Yin & Jinsheng Gao. (2022) Intelligent identification of mortar void in ballastless slab track using the wheelset acceleration combined with CNN-SVM. Journal of Mechanical Science and Technology 36:12, pages 5845-5857.
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Juan-juan Ren, Kai-yao Zhang, Jian-long Zheng, Hui Wei, Yi-chi Zhang, Wei Du & Wen-long Ye. (2022) Railway subgrade thermal-hydro-mechanical behavior and track irregularity under the sunny-shady slopes effect in seasonal frozen regions阴阳坡效应下季冻区铁路路基水-热-力行为与轨道不平顺规律研究. Journal of Central South University 29:11, pages 3793-3810.
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Zhipeng Lai & Lizhong Jiang. (2022) Analytical evaluation of lateral rail unevenness on high-speed railway bridge after transversal seismic shaking. Engineering Structures 267, pages 114614.
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Yan Xu, Zhendong Liu, Caijin Yang, Weihua Zhang, Weidong Zhu, Sebastian Stichel & Xiaoying Liu. (2022) Reduced-order modeling of train-curved-slab-track dynamics with the effects of fastening failures考虑扣件失效影响的缩减高速铁路车辆-曲线无砟轨道耦合动力学模型. Acta Mechanica Sinica 38:9.
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Qiangqiang Zhang, Gonglian Dai & Yu Tang. (2022) Thermal Analysis and Prediction Methods for Temperature Distribution of Slab Track Using Meteorological Data. Sensors 22:17, pages 6345.
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Özgür CAN & Ahmet Refah TORUN. (2022) Review of railway rolling noise and ground vibration and track-related mitigation measures-Recent developmentsDemiryolu yuvarlanma yüzeyi gürültüsü ve zemin titreşimi ve hat ilişkili azaltma önlemleri-güncel gelişmeler. Artıbilim: Adana Alparslan Türkeş Bilim ve Teknoloji Üniversitesi Fen Bilimleri Dergisi 5:1, pages 33-50.
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Marcus S Dersch, Matheus Trizotto, J Riley Edwards & Arthur de Oliveira. (2021) Quantification of vertical, lateral, and longitudinal fastener demand in broken spike track: Inputs to mechanistic-empirical design. Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit 236:5, pages 557-569.
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Rui Zhou, Xuan Zhu, Wei-Xin Ren, Zhixiang Zhou, Guowen Yao, Cong Ma & Yanliang Du. (2022) Thermal evolution of CRTS Ⅱ slab track under various environmental temperatures: Experimental study. Construction and Building Materials 325, pages 126699.
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Ahmet Güllü, Bayezid ÖzdenBeyazıt Ölçer, Ali İhsan Özcan, Ergün BinbirYavuz Durgun, Hakan Saruhan, Fatih ŞahinErkan Şenol, Arastoo Khajehdehi, Amir NoobakhtjooErcan Yüksel. (2021) Rapid and Easily Applicable Procedure for Full-Scale Laboratory Tests of Ballastless Slab Tracks. Journal of Transportation Engineering, Part A: Systems 147:9.
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Jun Luo, Shengyang Zhu & Wanming Zhai. (2021) An advanced train-slab track spatially coupled dynamics model: Theoretical methodologies and numerical applications. Journal of Sound and Vibration 501, pages 116059.
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Jannik S. Theyssen, Emil Aggestam, Shengyang Zhu, Jens C.O. Nielsen, Astrid Pieringer, Wolfgang Kropp & Wanming Zhai. (2021) Calibration and validation of the dynamic response of two slab track models using data from a full-scale test rig. Engineering Structures 234, pages 111980.
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Arthur de Oliveira Lima, Marcus S. Dersch, Jaeik Lee & J. Riley Edwards. (2020) Track Modulus Assessment of Engineered Interspersed Concrete Sleepers in Ballasted Track. Applied Sciences 11:1, pages 261.
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Shengyang Zhu, Jun Luo, Mingze Wang & Chengbiao Cai. (2020) Mechanical characteristic variation of ballastless track in high-speed railway: effect of train–track interaction and environment loads. Railway Engineering Science 28:4, pages 408-423.
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