Development of a new modified TSRST test to measure the thermal stress of asphalt supporting layer in the slab track system
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[1] F. Xiao,et al. Numerical and experimental investigation of reduced temperature effect on asphalt concrete waterproofing layer in high-speed railway , 2023 .
[2] F. Xiao,et al. Characterizing Thermal Fatigue Behaviors of Asphalt Concrete Waterproofing Layer in High-Speed Railway using Customized Overlay Test , 2022, International Journal of Fatigue.
[3] D. Cai,et al. Mechanical properties of track-asphalt concrete-subgrade bed structure system under both temperature and train loading , 2022, Construction and Building Materials.
[4] Q. Fu. A full-section asphalt concrete waterproof sealing structure for the high-speed railway subgrade , 2022, Railway Sciences.
[5] F. Xiao,et al. Evolution evaluation of high-speed railway asphalt concrete waterproofing layer during laboratory freeze–thaw cycles , 2022, Construction and Building Materials.
[6] M. Jaczewski,et al. Field Evaluation of High Modulus Asphalt Concrete Resistance to Low-Temperature Cracking , 2022, Materials.
[7] Hong Zhang,et al. Design and performance evaluation of Bi-block precast rubberized epoxy asphalt trackbed for railway , 2021, Construction and Building Materials.
[8] Feipeng Xiao,et al. Application of asphalt based materials in railway systems: A review , 2021 .
[9] Q. Luo,et al. Monitoring of train-induced responses at asphalt support layer of a high-speed ballasted track , 2021 .
[10] Qian Su,et al. Assessment of the Selection of Asphalt Binder for Full Cross-Section Asphalt Waterproof Layer in High-Speed Railway Ballastless Track , 2021 .
[11] J. M. Castillo-Mingorance,et al. High performance bituminous sub-ballast for improving the structural behaviour and durability of railway track substructure , 2021, Materials and Structures.
[12] Xiaopei Cai,et al. Deformation Law and Control Limit of CRTSIII Slab Track under Subgrade Frost Heave , 2021, Applied Sciences.
[13] V. Zania,et al. Numerical modeling of a ballastless track mockup based on asphalt , 2021 .
[14] J. Rose,et al. Geometric composition, structural behavior and material design for asphalt trackbed: A review , 2020 .
[15] Zhihao Yang,et al. Novel anti-frost subgrade bed structures a high speed railways in deep seasonally frozen ground regions: Experimental and numerical studies , 2020 .
[16] H. Benedetto,et al. Designs, Application and Performances of Asphalt/Bituminous Trackbeds in European, Asian, and African Countries , 2020 .
[17] Y. Kim,et al. A dissipated pseudo strain energy-based failure criterion for thermal cracking and its verification using thermal stress restrained specimen tests , 2020 .
[18] Xianhua Chen,et al. Numerical study and in-situ measurement of temperature features of asphalt supporting layer in slab track system , 2020 .
[19] Guotao Yang,et al. Modelling and in-situ measurement of dynamic behavior of asphalt supporting layer in slab track system , 2019 .
[20] Xiaoping Ji,et al. Attenuation of acoustic wave excited by piezoelectric aggregate in asphalt pavement and its application to monitor concealed cracks , 2019, Construction and Building Materials.
[21] Ogoubi Cyriaque Assogba,et al. Low-temperature performance of asphalt mixture based on statistical analysis of winter temperature extremes: A case study of Harbin China , 2019, Construction and Building Materials.
[22] M. Pszczola,et al. Influence of cooling rate and additives on low-temperature properties of asphalt mixtures in the TSRST , 2019, Construction and Building Materials.
[23] A. Arabzadeh,et al. Thermal fatigue behavior of asphalt concrete: A laboratory-based investigation approach , 2019, International Journal of Fatigue.
[24] P. Jaskula,et al. Asphalt concrete subjected to long-time loading at low temperatures – Deviations from the time-temperature superposition principle , 2019, Construction and Building Materials.
[25] Haoyu Wang,et al. Assessing the effects of subgrade frost heave on vehicle dynamic behaviors on high-speed railway , 2019, Cold Regions Science and Technology.
[26] Martins Zaumanis,et al. Comparison of two low-temperature cracking tests for use in performance-based asphalt mixture design , 2018, International Journal of Pavement Engineering.
[27] Bagdat Teltayev,et al. Predicting thermal cracking of asphalt pavements from bitumen and mix properties , 2018 .
[28] A. Bouzid,et al. Compression Creep and Thermal Ratcheting Behavior of High Density Polyethylene (HDPE) , 2018, Polymers.
[29] Hainian Wang,et al. Characterising the asphalt concrete fracture performance from X-ray CT Imaging and finite element modelling , 2018 .
[30] M. Sol-Sánchez,et al. Review of the design and maintenance technologies used to decelerate the deterioration of ballasted railway tracks , 2017 .
[31] Audrius Vaitkus,et al. Methods and Criteria for Evaluation of Asphalt Mixture Resistance to Low Temperature Cracking , 2017 .
[32] H. Baaj,et al. 3D Analysis and Modelling of Thermal Stress Restrained Specimen Test (TSRST) on Asphalt Mixes with RAP and Roofing Shingles , 2016 .
[33] Munir D. Nazzal,et al. Study of the thermal stress development of asphalt mixtures using the Asphalt Concrete Cracking Device (ACCD) , 2016 .
[34] Kelvin C. P. Wang,et al. Asphalt Concrete for High-Speed Railway Infrastructure and Performance Comparisons , 2016 .
[35] R. Tarefder,et al. Coefficients of Thermal Contraction and Expansion of Asphalt Concrete in the Laboratory , 2015 .
[36] Qinglin Wu,et al. High Density Polyethylene Composites Reinforced with Hybrid Inorganic Fillers: Morphology, Mechanical and Thermal Expansion Performance , 2013, Materials.
[37] Fernando Moreno-Navarro,et al. UGR-FACT test for the study of fatigue cracking in bituminous mixes , 2013 .
[38] Mika Suvanto,et al. Cellulose reinforced high density polyethylene composites — Morphology, mechanical and thermal expansion properties , 2013 .
[39] Adam Zofka,et al. Revising Thermal Stresses in the TSRST for Low-Temperature Cracking Prediction , 2009 .