Yin, H.; Yuan, T.; Li, Z.; Yin, Z.; Yao, H.; Wang, F.
Temperature-Rise Suppression Concrete Incorporating Steel-Encapsulated SAP–Water Phase-Change Aggregates: Semi-Adiabatic Characterization, Adiabatic Temperature-Rise Prediction and Finite Element Assessment. Materials 2026, 19, 2630.
https://doi.org/10.3390/ma19122630
AMA Style
Yin H, Yuan T, Li Z, Yin Z, Yao H, Wang F.
Temperature-Rise Suppression Concrete Incorporating Steel-Encapsulated SAP–Water Phase-Change Aggregates: Semi-Adiabatic Characterization, Adiabatic Temperature-Rise Prediction and Finite Element Assessment. Materials. 2026; 19(12):2630.
https://doi.org/10.3390/ma19122630
Chicago/Turabian Style
Yin, Heng, Tianheng Yuan, Zongjin Li, Zhenzhen Yin, Hong Yao, and Fuqiang Wang.
2026. "Temperature-Rise Suppression Concrete Incorporating Steel-Encapsulated SAP–Water Phase-Change Aggregates: Semi-Adiabatic Characterization, Adiabatic Temperature-Rise Prediction and Finite Element Assessment" Materials 19, no. 12: 2630.
https://doi.org/10.3390/ma19122630
APA Style
Yin, H., Yuan, T., Li, Z., Yin, Z., Yao, H., & Wang, F.
(2026). Temperature-Rise Suppression Concrete Incorporating Steel-Encapsulated SAP–Water Phase-Change Aggregates: Semi-Adiabatic Characterization, Adiabatic Temperature-Rise Prediction and Finite Element Assessment. Materials, 19(12), 2630.
https://doi.org/10.3390/ma19122630