Hu, Z.; Li, X.; Xu, H.; Tang, Z.; Lei, B.
Feasibility of Industrial High-Titanium Heavy Slag for Thermally Induced Self-Healing Asphalt Pavement Materials: Road Performance and Thermal Conductivity Analysis. Buildings 2026, 16, 1333.
https://doi.org/10.3390/buildings16071333
AMA Style
Hu Z, Li X, Xu H, Tang Z, Lei B.
Feasibility of Industrial High-Titanium Heavy Slag for Thermally Induced Self-Healing Asphalt Pavement Materials: Road Performance and Thermal Conductivity Analysis. Buildings. 2026; 16(7):1333.
https://doi.org/10.3390/buildings16071333
Chicago/Turabian Style
Hu, Zhijian, Xiaobao Li, Hanqi Xu, Zijiang Tang, and Bin Lei.
2026. "Feasibility of Industrial High-Titanium Heavy Slag for Thermally Induced Self-Healing Asphalt Pavement Materials: Road Performance and Thermal Conductivity Analysis" Buildings 16, no. 7: 1333.
https://doi.org/10.3390/buildings16071333
APA Style
Hu, Z., Li, X., Xu, H., Tang, Z., & Lei, B.
(2026). Feasibility of Industrial High-Titanium Heavy Slag for Thermally Induced Self-Healing Asphalt Pavement Materials: Road Performance and Thermal Conductivity Analysis. Buildings, 16(7), 1333.
https://doi.org/10.3390/buildings16071333