Mechanical Research on Reinforced Concrete Materials
Author:
Affiliation:
1. Key Laboratory of Impact and Safety Engineering, Ningbo University, Ministry of Education, Ningbo 315211, China
Abstract
Funder
National Natural Science Foundation of China
Publisher
MDPI AG
Subject
General Materials Science
Link
https://www.mdpi.com/1996-1944/16/21/6892/pdf
Reference12 articles.
1. Dong, K., Jiang, K., and Ruan, W. (2023). The Strain Rate Effects of Coral Sand at Different Relative Densities and Moisture Contents. Materials, 16.
2. Wu, Y., Wang, J., Liu, F., Mu, C., Xia, M., and Yang, S. (2023). A Research Investigation into the Impact of Reinforcement Distribution and Blast Distance on the Blast Resilience of Reinforced Concrete Slabs. Materials, 16.
3. Ma, X., Sun, J., Zhang, F., Yuan, J., Yang, M., Meng, Z., Bai, Y., and Liu, Y. (2023). Mechanical Behaviour Evaluation of Full Iron Tailings Concrete Columns under Large Eccentric Short-Term Loading. Materials, 16.
4. Zhang, X., Wu, X., and Wang, Y. (2023). Corrosion-Effected Bond Behavior between PVA-Fiber-Reinforced Concrete and Steel Rebar under Chloride Environment. Materials, 16.
5. Wang, F., Hua, J., Xue, X., Wang, N., Yan, F., and Feng, D. (2023). Effect of Superfine Cement Modification on Properties of Coral Aggregate Concrete. Materials, 16.
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