Lv, S.; Ge, D.; Wang, Z.; Wang, J.; Liu, J.; Ju, Z.; Peng, X.; Fan, X.; Cao, S.; Liu, D.;
et al. Performance Assessment of Self-Healing Polymer-Modified Bitumens by Evaluating the Suitability of Current Failure Definition, Failure Criterion, and Fatigue-Restoration Criteria. Materials 2023, 16, 2488.
https://doi.org/10.3390/ma16062488
AMA Style
Lv S, Ge D, Wang Z, Wang J, Liu J, Ju Z, Peng X, Fan X, Cao S, Liu D,
et al. Performance Assessment of Self-Healing Polymer-Modified Bitumens by Evaluating the Suitability of Current Failure Definition, Failure Criterion, and Fatigue-Restoration Criteria. Materials. 2023; 16(6):2488.
https://doi.org/10.3390/ma16062488
Chicago/Turabian Style
Lv, Songtao, Dongdong Ge, Ziyang Wang, Jinping Wang, Jing Liu, Zihao Ju, Xinghai Peng, Xiyan Fan, Shihao Cao, Dingyuan Liu,
and et al. 2023. "Performance Assessment of Self-Healing Polymer-Modified Bitumens by Evaluating the Suitability of Current Failure Definition, Failure Criterion, and Fatigue-Restoration Criteria" Materials 16, no. 6: 2488.
https://doi.org/10.3390/ma16062488
APA Style
Lv, S., Ge, D., Wang, Z., Wang, J., Liu, J., Ju, Z., Peng, X., Fan, X., Cao, S., Liu, D., Zhang, W., & Borges Cabrera, M.
(2023). Performance Assessment of Self-Healing Polymer-Modified Bitumens by Evaluating the Suitability of Current Failure Definition, Failure Criterion, and Fatigue-Restoration Criteria. Materials, 16(6), 2488.
https://doi.org/10.3390/ma16062488