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Naipeng Tang (唐乃膨)
Naipeng Tang (唐乃膨)
Chongqing Jiaotong University
Verified email at cqjtu.edu.cn - Homepage
Title
Cited by
Cited by
Year
Characterizing SBS modified asphalt with sulfur using multiple stress creep recovery test
W Huang, N Tang
Construction and Building Materials 93, 514-521, 2015
1102015
Effect of aging on chemical and rheological properties of SBS modified asphalt with different compositions
G Hao, W Huang, J Yuan, N Tang, F Xiao
Construction and Building Materials 156, 902-910, 2017
1072017
Chemical and rheological investigation of high-cured crumb rubber-modified asphalt
N Tang, W Huang, F Xiao
Construction and Building Materials 123, 847-854, 2016
1002016
Investigation of influence factors on low temperature properties of SBS modified asphalt
P Lin, W Huang, Y Li, N Tang, F Xiao
Construction and Building Materials 154, 609-622, 2017
912017
Rheological, chemical and aging characteristics of high content polymer modified asphalt
P Lin, C Yan, W Huang, Y Li, L Zhou, N Tang, F Xiao, Y Zhang, Q Lv
Construction and Building Materials 207, 616-629, 2019
822019
Effect of crumb rubber degradation on components distribution and rheological properties of Terminal Blend rubberized asphalt binder
W Huang, P Lin, N Tang, J Hu, F Xiao
Construction and Building Materials 151, 897-906, 2017
692017
Evolution of components distribution and its effect on low temperature properties of terminal blend rubberized asphalt binder
B Li, W Huang, N Tang, J Hu, P Lin, W Guan, F Xiao, Z Shan
Construction and Building Materials 136, 598-608, 2017
662017
Performance characteristics of Terminal Blend rubberized asphalt with SBS and polyphosphoric acid
P Lin, W Huang, N Tang, F Xiao
Construction and Building Materials 141, 171-182, 2017
622017
Chemical and microscopic investigation of co-pyrolysis of crumb tire rubber with waste cooking oil at mild temperature
R Dong, M Zhao, W Xia, X Yi, P Dai, N Tang
Waste management 79, 516-525, 2018
612018
Development of a novel binder rejuvenator composed by waste cooking oil and crumb tire rubber
X Yi, R Dong, N Tang
Construction and Building Materials 236, 117621, 2020
482020
Characterization of crumb tire rubber lightly pyrolyzed in waste cooking oil and the properties of its modified bitumen
R Dong, M Zhao, N Tang
Construction and Building Materials 195, 10-18, 2019
462019
Evaluation of the temperature effect on Rolling Thin Film Oven aging for polymer modified asphalt
C Yan, W Huang, N Tang
Construction and Building Materials 137, 485-493, 2017
452017
Chemical and rheological evaluation of aging characteristics of terminal blend rubberized asphalt binder
N Tang, Q Lv, W Huang, P Lin, C Yan
Construction and Building Materials 205, 87-96, 2019
422019
Rheological characterisation of terminal blend rubberised asphalt binder containing polymeric additive and sulphur
N Tang, W Huang, J Hu, F Xiao
Road Materials and Pavement Design 19 (6), 1288-1300, 2018
422018
Understanding the low temperature properties of Terminal Blend hybrid asphalt through chemical and thermal analysis methods
P Lin, W Huang, N Tang, F Xiao, Y Li
Construction and Building Materials 169, 543-552, 2018
372018
Effect of aging on morphology, rheology, and chemical properties of highly polymer modified asphalt binders
N Tang, W Huang, G Hao
Construction and Building Materials 281, 122595, 2021
352021
Investigation of Gilsonite-, polyphosphoric acid-and styrene–butadiene–styrene-modified asphalt binder using the multiple stress creep and recovery test
N Tang, W Huang, M Zheng, J Hu
Road Materials and Pavement Design 18 (5), 1084-1097, 2017
332017
Anti-Aging potential of sulphur in terminal blend rubberized asphalt binder
N Tang, R Dong
Construction and Building Materials 250, 118858, 2020
282020
The effect of sea salt solution erosion on cohesion, chemical and rheological properties of SBS modified asphalt
R Zhang, N Tang, H Zhu
Construction and Building Materials 318, 125923, 2022
262022
Emission behavior of crumb rubber modified asphalt in the production process
N Tang, Z Zhang, R Dong, H Zhu, W Huang
Journal of Cleaner Production 340, 130850, 2022
252022
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Articles 1–20