[1]
Nguyen Ngoc Long, "Overcoming rutting and rutting on asphalt road surfaces: a comprehensive solution " Transport Magazine, vol. 7, pp.12-14, 2014.
Google Scholar
[2]
S. Kumar and S. Kumar Suman, "Investigating the properties of cement grouted bituminous mix with alternative grout compositions," Materials Today: Proceedings, vol. 65, pp.831-838, 2022.
DOI: 10.1016/j.matpr.2022.03.335
Google Scholar
[3]
J. Pei, J. Cai, D. Zou, J. Zhang, R. Li, X. Chen, and L. Jin, "Design and performance validation of high-performance cement paste as a grouting material for semi-flexible pavement," Construction and Building Materials, vol. 126, pp.206-217, 2016.
DOI: 10.1016/j.conbuildmat.2016.09.036
Google Scholar
[4]
Dao Van Dong, "Research on the application of semi-flexible pavement for high-grade pavement construction in Vietnam," Transport Journal, vol. 9, pp.72-76, 2019.
Google Scholar
[5]
Nguyen Manh Hung, "Initial research results on cement mortar - asphalt concrete materials," Science and Technology, vol. 5, pp.75-77, 2016.
Google Scholar
[6]
Infrasol Company. (2018). Technical report on the construction results of Vinkems Asphalsol asphalt mortar. Available: https://infrasol.vn/cong-nghe/mat-duong-ban-mem-be-tong-nhua-vua-ket-hop
Google Scholar
[7]
Nguyen Manh Hung and Cao Dinh Vu, "Kết quả nghiên cứu bước đầu vật liệu bê tông nhựa vữa xi măng tự chèn," Khoa học-Công nghệ, vol. 5, pp.75-77, 2016.
DOI: 10.58845/jstt.utt.2023.vn118
Google Scholar
[8]
Z. Zhao, L. Xu, X. Li, X. Guan, and F. Xiao, "Comparative analysis of pavement performance characteristics of flexible, semi-flexible and rigid pavement based on accelerated pavement tester," Construction and Building Materials, vol. 387, 2023.
DOI: 10.1016/j.conbuildmat.2023.131672
Google Scholar
[9]
C. Huang, J. X. Hong, J. T. Lin, C. Deng, and L. Li, "Utilization of Waste Rubber Powder in Semi-Flexible Pavement," Key Engineering Materials, vol. 599, pp.361-367, 2014.
DOI: 10.4028/www.scientific.net/kem.599.361
Google Scholar
[10]
W. Zhao and Q. Yang, "Study on the applicability of asphalt concrete skeleton in the semi-flexible pavement," Construction and Building Materials, vol. 327, 2022.
DOI: 10.1016/j.conbuildmat.2022.126923
Google Scholar
[11]
N. M. Husain, M. R. Karim, H. B. Mahmud, and S. Koting, "Effects of Aggregate Gradation on the Physical Properties of Semiflexible Pavement," Advances in Materials Science and Engineering, vol. 2014, pp.1-8, 2014.
DOI: 10.1155/2014/529305
Google Scholar
[12]
X. Guo and P. Hao, "Influential Factors and Evaluation Methods of the Performance of Grouted Semi-Flexible Pavement (GSP)—A Review," Applied Sciences, vol. 11, no. 15, pp.6700-6725, 2021.
DOI: 10.3390/app11156700
Google Scholar
[13]
W. Jiahong, "Research on Crack Resistance of Semi-flexible Pavement Materials," in E3S Web of Conferences, 2021, vol. 248, p.01020: EDP Sciences.
DOI: 10.1051/e3sconf/202124801020
Google Scholar
[14]
N. Saboo, V. Khalpada, P. K. Sahu, R. Radhakrishnan, and A. Gupta, "Optimal proportioning of grout constituents using mathematical programming for semi flexible pavement," International Journal of Pavement Research and Technology, vol. 12, no. 3, pp.297-306, 2019.
DOI: 10.1007/s42947-019-0036-x
Google Scholar
[15]
Z. Zhang, J. Li, and F. Ni, "Material innovation preparation and performance study of semi-flexible pavement materials," Case Studies in Construction Materials, vol. 17, 2022.
DOI: 10.1016/j.cscm.2022.e01355
Google Scholar
[16]
Y. Fang, X. Wang, L. Jia, C. Liu, Z. Zhao, C. Chen, and Y. Zhang, "Synergistic effect of polycarboxylate superplasticizer and silica fume on early properties of early high strength grouting material for semi-flexible pavement," Construction and Building Materials, vol. 319, 2022.
DOI: 10.1016/j.conbuildmat.2021.126065
Google Scholar
[17]
X. Liu, K. Wu, X. Cai, W. Huang, and J. Huang, "Influence of the composite interface on the mechanical properties of semi-flexible pavement materials," Construction and Building Materials, vol. 397, 2023.
DOI: 10.1016/j.conbuildmat.2023.132466
Google Scholar
[18]
Hamzani, Munirwansyah, M. Hasan, and S. Sugiarto, "Determining the properties of semi-flexible pavement using waste tire rubber powder and natural zeolite," Construction and Building Materials, vol. 266, 2021.
DOI: 10.1016/j.conbuildmat.2020.121199
Google Scholar
[19]
TCVN 8820:2011,"Standard Practice for Asphalt Concrete Mix Design Using Marshall Method". National Standard, Ha Noi, Viet Nam, 2011.
Google Scholar
[20]
National technical regulation,"National technical regulation on Domestic Water Quality". Ha Noi, 2018.
Google Scholar
[21]
TCVN 6020:2020,"Blended porland cement". Nation standard, Ha Noi, Viet Nam, 2020.
Google Scholar
[22]
M. I. Khan, M. H. Sutanto, N. I. M. Yusoff, S. E. Zoorob, W. Rafiq, M. Ali, R. Fediuk, and N. I. Vatin, "Cementitious Grouts for Semi-Flexible Pavement Surfaces-A Review," Materials (Basel), vol. 15, no. 15, Aug 8 2022.
DOI: 10.3390/ma15155466
Google Scholar
[23]
Y. J. Wang, C. Y. Guo, Y. F. Tian, and J. J. Wang, "Design of Mix Proportion of Cement Mortar with High-Performance Composite Semi-Flexible Pavement," Advanced Materials Research, vol. 641-642, pp.342-345, 2013.
DOI: 10.4028/www.scientific.net/amr.641-642.342
Google Scholar
[24]
T.-Q. Ling, Z.-J. Zhao, C.-H. Xiong, Y.-Y. Dong, Y.-Y. Liu, and Q. Dong, "The applicatio of Semi-flexible pavement on heavy traffic road," International Journal of Pavement Research and Technology, vol. 2, no. 5, pp.211-217, 2009.
Google Scholar
[25]
S. Luo, X. Yang, K. Zhong, and J. Yin, "Open-graded asphalt concrete grouted by latex modified cement mortar," Road Materials and Pavement Design, vol. 21, no. 1, pp.61-77, 2018.
DOI: 10.1080/14680629.2018.1479290
Google Scholar
[26]
M. Imran Khan, M. H. Sutanto, M. B. Napiah, M. Zahid, and A. Usman, "Optimization of Cementitious Grouts for Semi-Flexible Pavement Surfaces Using Response Surface Methodology," IOP Conference Series: Earth and Environmental Science, vol. 498, no. 1, 2020.
DOI: 10.1088/1755-1315/498/1/012004
Google Scholar
[27]
M. I. Khan, M. H. Sutanto, M. B. Napiah, S. E. Zoorob, N. I. M. Yusoff, A. Usman, and A. M. Memon, "Irradiated polyethylene terephthalate and fly ash based grouts for semi-flexible pavement: design and optimisation using response surface methodology," International Journal of Pavement Engineering, vol. 23, no. 8, pp.2515-2530, 2020.
DOI: 10.1080/10298436.2020.1861446
Google Scholar
[28]
BS EN 445:2007,"Grout for prestressing tendons. Test methods". European standard, 2007.
Google Scholar
[29]
X. Cai, Z. Leng, P. Kumar Ashish, J. Yang, and M. Gong, "Quantitative analysis of the role of temperature in the mesoscale damage process of semi flexible pavement composite through finite element method," Theoretical and Applied Fracture Mechanics, vol. 124, 2023.
DOI: 10.1016/j.tafmec.2022.103742
Google Scholar
[30]
Suhana Koting, H. Mahmud, and M. R. Karim, "Influence of superplasticizer type and dosage on the workability and strength of cementitious Grout for Semi-Flexible Pavement Application," Journal of the Eastern Asia Society for Transportation Studies, vol. 7, pp.2156-2167, 2007.
Google Scholar
[31]
TCVN 3121-11:2022,"Mortar for masonry-Test methods, Part 11: Detemination of flexural and compressive strenght of hardened mortars". National Standard, Ha Noi, Viet Nam, 2022.
Google Scholar
[32]
TCVN 13567-1:2022,"Hot mix Asphalt pavement layer-Construction and Acceptance: Part 1-Dense-Graded asphalt concrete". National Standard, Ha Noi, Viet Nam, 2022.
Google Scholar
[33]
Nguyen Bao Quoc, "Research on semi-rigid pavement using open aggregate and improved mortar for Southern conditions," Master, Civil Engineering, Ho Chi Minh City University of Technology Ho Chi Minh City, 2016.
DOI: 10.31276/vjst.65(8).20-28
Google Scholar
[34]
TCVN 8860:2011 "Asphalt Concrete – Test methods". National Standard, Ha Noi, Viet Nam, 2011.
Google Scholar
[35]
TCVN 8862:2011,"Standard test method for splitting tensile strength of aggregate material bonded by adhesive binders ". National Standard, Ha Noi, Viet Nam, 2011.
Google Scholar
[36]
K. Zhong, M. Sun, M. Zhang, Y. Qin, and Y. Li, "Interfacial and mechanical performance of grouted open-graded asphalt concrete with latex modified cement mortar," Construction and Building Materials, vol. 234, 2020.
DOI: 10.1016/j.conbuildmat.2019.117394
Google Scholar
[37]
W. Zhao and Q. Yang, "Performance characterization and life cycle assessment of semi-flexible pavement after composite modification of cement-based grouting materials by desulfurization ash, fly ash, and rubber powder," Construction and Building Materials, vol. 359, 2022.
DOI: 10.1016/j.conbuildmat.2022.129549
Google Scholar
[38]
D. H. Kumar, R. K. Chinnabhandar, K. Chiranjeevi, and A. U. R. Shankar, "Effect of aggregate gradation and bitumen type on mechanical properties of semi-flexible asphalt mixtures," Case Studies in Construction Materials, vol. 18, 2023.
DOI: 10.1016/j.cscm.2023.e02025
Google Scholar
[39]
S. Ling, Z. Chen, D. Sun, H. Ni, Y. Deng, and Y. Sun, "Optimal Design of Pouring Semi-Flexible Pavement via Laboratory Test, Numerical Research, and Field Validation," Transportation Research Record: Journal of the Transportation Research Board, vol. 2676, no. 11, pp.479-495, 2022.
DOI: 10.1177/03611981221093631
Google Scholar
[40]
D. Jiang, D. Wang, Z. Chen, L. Fan, and J. Yi, "Research on the mesoscopic viscoelastic property of semi-flexible pavement mixture based on discrete element simulation," Case Studies in Construction Materials, vol. 17, 2022.
DOI: 10.1016/j.cscm.2022.e01282
Google Scholar