Zeng, W.; Ge, Z.; Shan, L.; Liao, H.; Xiao, Q.; Xu, X.
A Source-Aware and Physically Interpretable Data-Driven Framework for Predicting Semi-Circular Bending (SCB) Fracture Energy of Fiber-Reinforced Asphalt Mixtures. Materials 2026, 19, 2172.
https://doi.org/10.3390/ma19102172
AMA Style
Zeng W, Ge Z, Shan L, Liao H, Xiao Q, Xu X.
A Source-Aware and Physically Interpretable Data-Driven Framework for Predicting Semi-Circular Bending (SCB) Fracture Energy of Fiber-Reinforced Asphalt Mixtures. Materials. 2026; 19(10):2172.
https://doi.org/10.3390/ma19102172
Chicago/Turabian Style
Zeng, Wu, Zhiyou Ge, Lingyan Shan, Huanwang Liao, Qing Xiao, and Xunqian Xu.
2026. "A Source-Aware and Physically Interpretable Data-Driven Framework for Predicting Semi-Circular Bending (SCB) Fracture Energy of Fiber-Reinforced Asphalt Mixtures" Materials 19, no. 10: 2172.
https://doi.org/10.3390/ma19102172
APA Style
Zeng, W., Ge, Z., Shan, L., Liao, H., Xiao, Q., & Xu, X.
(2026). A Source-Aware and Physically Interpretable Data-Driven Framework for Predicting Semi-Circular Bending (SCB) Fracture Energy of Fiber-Reinforced Asphalt Mixtures. Materials, 19(10), 2172.
https://doi.org/10.3390/ma19102172