1. Boshan Zhang, Jiangjiang Yu, Weizhen Chen, et al. Interface shear failure behavior between normal concrete (NC) and ultra-high performance concrete (UHPC) [J]. International Journal of Concrete Structures and Materials, 2024, 18(1): 1-16.
2. Boshan Zhang, Jiangjiang Yu, Weizhen Chen*, et al. Multi-scale investigation on the interfacial behavior of between NC and UHPC in flexural members considering influence of the interface morphology [J]. Composite Structures, 2024, 345: 118388.
3. Khan A, Chen W, Boshan Zhang*, et al. Strategies for enhancing self-healing in ultra-high performance concrete: anexperimental investigation [C]. Zhou K. Proceedings of the ICCES 2024, Switzerland: Springer, 2024, MMS173: 814-824.
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5. 张博珊, 王辉*, 陈熹. 一种考虑固相浓度作用的改进泥浆流变模型[J]. 土木工程学报, 2023, 56(S1):134-141.
6. Boshan Zhang, Jiangjiang Yu*, Chen W, et al. Failure evolution and fiber toughing mechanism of ultra-high performanceconcrete under uniaxial compression [J]. Journal of Sustainable Cement-Based Materials, 2023, 12(4):441-459.
7. Boshan Zhang, Jiangjiang Yu, Weizhen Chen*, et al. Interfacial properties between ultra-high performance concrete (UHPC) and steel: From static performance to fatigue behavior. Engineering Structures, 2022, 173: 115145.
8. Boshan Zhang, Jiangjiang Yu, Weizhen Chen*, et al. Experimental study on bond performance of NC-UHPC interfaces with different roughness and substrate strength. Materials, 2023, 16: 2708.
9. 张博珊, 蔚江江, 陈惟珍*. 翼缘约束对波形钢腹板弹性剪切屈曲的嵌固效应. 结构工程师, 2022, 38(6): 15:22.
10. Jiangjiang Yu, Boshan Zhang*, Weizhen Chen, et al. Multi-scale study on interfacial bond failure between normal concrete (NC) and ultra-high performance concrete (UHPC). Journal of Building Engineering, 2022, 57: 104808.
11. Boshan Zhang, Jiangjiang Yu, Weizhen Chen, et al. Failure evolution and fiber toughing mechanism of ultra-high performance concrete under uniaxial compression. Journal of Sustainable Cement-Based Materials, 2022: 2076264.
12. Huahuai Sun, Weizhen Chen, Shunyao Cai, Boshan Zhang*. Tracking time-varying structural responses of in-service cable-stayed bridges with model parameter errors and concrete time-dependent effects. Structures, 2022, 37: 819-832.
13. Jiangjiang Yu, Boshan Zhang*, Weizhen Chen*, Hang Liu. Multi-scale analysis on the tensile properties of UHPC considering fiber orientation. Composite Structures, 2022, 280: 114835.
14. Jiayuan He, Weizhen Chen, Boshan Zhang*, Jiangjiang Yu and Hang Liu. The Mechanical Properties and Damage Evolution of UHPC Reinforced with Glass Fibers and High-Performance Polypropylene Fibers. Materials, 2021, 14, 2455.
15. Boshan Zhang, Jiangjiang Yu, Weizhen Chen, Hui Wang, Jun Xu*. Stress states and shear failure mechanisms of girders with corrugated steel webs. Thin-walled Structures. 2020, 157: 106858.
16. Jiangjiang Yu, Boshan Zhang*, Weizhen Chen, Jiayuan He. Experimental and multi-scale numerical investigation of ultra-high performance fiber reinforced concrete (UHPFRC) with different coarse aggregate content and fiber volume fraction. Construction and Building Materials, 2020, 260: 120444.
17. Huahuai Sun, Weizhen Chen, Shunyao Cai and Boshan Zhang*. Mechanical State Assessment of In-Service Cable-Stayed Bridge Using a Two-Phase Model Updating Technology and Periodic Field Measurements. Journal of Bridge Engineering, 2020, 25(5).
18. Jun Xu, Huahuai Sun, Shunyao Cai, Wenyao Sun and Boshan Zhang. Fatigue testing and analysis of I-girders with trapezoidal corrugated web. Engineering Structures, 2019, 196: 109344.
19. Boshan Zhang, Weizhen Chen, Jun Xu*. Mechanical Behavior of Prefabricated Composite Box Girders with Corrugated Steel Webs under Static Loads. Journal of Bridge Engineering, 2018, 23(10): 04018077.
20. Boshan Zhang, Weizhen Chen, Jun Xu. Shear Behavior of Girders with Trapezoidal Corrugated Steel Webs, an Experimental Study. Stahlbau, 2018, 87(8): 810-819.
21. 刘彬, 张博珊*,装配式波形钢腹板钢箱组合箱梁扭转性能分析. 上海公路. 2019, 64-68.