Position: > English Version > Academics > Supervisors > Content

姓名:

Name:

田俊

Jun TIAN


职称:

Job Title:

特聘教授

Professor


学历(学位)

Degree

博士研究生

Doctor


联系邮箱:

E-mail:

tianjun@dgut.edu.cn



主要研究方向及内容

Main Research area and subject

1)预应力FRP结构加固;2)超高韧性水泥基复合材料(ECC);3)侵蚀环境下混凝土修复技术;4)滨海侵蚀环境下桥梁结构的加固与耐久性提升。

1) Prestressed FRP structure reinforcement; 2) Ultra-high toughness cement-based composite material (ECC); 3) Concrete repair technology under erosion environment; 4) Strengthening and durability improvement of bridge structure under coastal erosion environment.

学术成果

Academic Achievements

[1] Jun Tian, Xiaowei Wu*, Xiao Tan, et al. Feasibility study of smart functional strain-hardening cementitious composites: Self-sensing model and experimental performance[J]. Construction and Building Materials, 2024, 436: 136850. (SCI, JCR-Q1)

[2] Tian Jun, Wu X, Yuan J, et al. Investigation on shear properties and mechanical model of FRP-ECC-concrete composite interface cast with 3D-printing pre-grooves[J]. Structures. 2024, 64: 106582. (SCI, JCR-Q2)

[3] Jun Tian, Wenchao Zhu, Xiaowei Wu*, et al. Investigation on shear performance and prediction model of CFRP-ECC-concrete composite interface suffered from anodic polarization and environmental degradation[J]. Developments in the Built Environment, 2024: 100422. (SCI, JCR-Q2)

[4] Jun Tian, Wentao Yu, Xiaowei Wu*, et al. Study on deterioration of mechanical properties and voltage-strength theoretical model of CFRP/ conductive ECC composites under coupling effect of anode polarization, load and erosion environment[J]. Case Studies in Construction Materials, 2024, e03007. (SCI, JCR-Q2)

[5] Jun Tian, Xiaowei Wu*, Xiao Tan, Wen-Wei Wang*, et al. Experimental study and analysis model of flexural synergistic effect of reinforced concrete beams strengthened with ECC[J]. Construction and Building Materials, 2022, 352: 128987. (SCI, JCR-Q1)

[6] Jun Tian, Xiaowei Wu*, Wen-Wei Wang*, et al. Experimental study and mechanics model of ECC-to-concrete bond interface under tensile loading[J]. Composite Structures, 2022: 115203. (SCI, JCR-Q1)

[7] Jun Tian, Xiaowei Wu*, Yu Zheng, et al. Investigation of interface shear properties and mechanical model between ECC and concrete[J]. Construction and Building Materials, 2019, 223: 12-27. (SCI, JCR-Q1)

[8] Jun Tian, Xiaowei Wu*, Yu Zheng, et al. Investigation of damage behaviors of ECC-to-concrete interface and damage prediction model under salt freeze-thaw cycles[J]. Construction and Building Materials, 2019, 226: 238-249. (SCI, JCR-Q1)

[9] Tian Jun, Wang Wenwei, and Du Yinfei. Damage behaviors of self-compacting concrete and prediction model under coupling effect of salt freeze-thaw and flexural load[J]. Construction and Building Materials, 2016, 119: 241-250. (SCI, JCR-Q1)

[10] Jun Tian, Xiaowei Wu*, Yu Zheng, et al. Experimental study and mixed-dimensional FE analysis of T-rib GFRP plate-concrete composite bridge decks[J]. Advances in Materials Science and Engineering, 2018, Article ID:7531912. (SCI, JCR-Q2)

[11] Zhang Weiguo, Tian Jun*, Wu Xiaowei, et al. Investigation of basic properties, microscopic characteristics, and optimized ratio prediction model of ultra-high steel fiber reinforced concrete[J]. Case Studies in Construction Materials, 2024: e03297. (SCI, JCR-Q2)

[12] Xiaowei Wu, Jingwen He, Jun Tian*, et al. Shear behaviors of engineered cementitious composites to seawater sea-sand concrete (ECC-to-SSSC) interfaces cast using 3D-printed pre-grooving formwork: Mechanical properties, characterization, and life-cycle assessment[J]. Journal of Building Engineering, 2023: 107636. (SCI, JCR-Q2)

[13] Xiaowei Wu, Jun Tian*, Hongwei Ma, et al. Investigation on interface fracture properties and nonlinear fracture model between ECC and concrete subjected to salt freeze-thaw cycles[J]. Construction and Building Materials, 2020, 259: 119785. (SCI, JCR-Q1)

[14] Zhang Weiguo, Tian Jun*, Liu Baosheng, et al. Erosive wear characteristics and damage model of polycrystalline diamond compact for enhancing mud pulser rotor[J]. Geoenergy Science and Engineering, 2023: 211873. (SCI, JCR-Q1)

[15] Du Yinfei, Liu Pusheng, Wang Jiacheng, Wang Hao, Hu Shaowei, Tian Jun*, Li Yingtao. Laboratory investigation of phase change effect of polyethylene glycol on asphalt binder and mixture performance[J]. Construction and Building Materials, 2019, 212: 1-9. (SCI, JCR-Q1)

[16] Wentong Huang, Peiyong He, Xiang Long, JunTian*, Yu Zheng, Hongwei Ma, Shaowei Hu, Xiaowei Wu. Design of a skeleton-stabilized warm mix asphalt mixture and investigation of its fatigue and fracture performance[J]. Construction and Building Materials, 2020, 248: 118618. (SCI, JCR-Q1)

[17] Du Yinfei, Wang Jiacheng, Deng Haibin, Liu Yingchen, Tian Jun*, Wu Xiaowei. Using steel fibers to accelerate the heat conduction in asphalt mixture and its performance evaluation[J]. Construction and Building Materials, 2021, 282. (SCI, JCR-Q1)



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