Implementation of Intelligent Prefabricated Construction for Pre-stressed T-Beams on Mountainous Highways

Guofang Ju

Prestress Technology ›› 2024, Vol. 2 ›› Issue (2) : 41 -57.

PDF (1775KB)
Prestress Technology ›› 2024, Vol. 2 ›› Issue (2) :41 -57. DOI: 10.59238/j.pt.2024.02.004
Product Research and Development
research-article
Implementation of Intelligent Prefabricated Construction for Pre-stressed T-Beams on Mountainous Highways
Author information +
History +
PDF (1775KB)

Abstract

Intelligent bridge assembly is currently one of the key directions for bridge development in China. Dif-ferent structures and schemes are suitable for urban and mountainous construction requirements. Taking the Tongzi to Xinpu Expressway as the background engineering, this paper systematically organizes the prefabricated construction-related processes and comprehensively introduces of intelligent prefabrication process of prestressed T-beams.

Keywords

prestress / intelligent prefabrication / steel frame / prestress tensioning / grouting

Cite this article

Download citation ▾
Guofang Ju. Implementation of Intelligent Prefabricated Construction for Pre-stressed T-Beams on Mountainous Highways. Prestress Technology, 2024, 2 (2) : 41-57 DOI:10.59238/j.pt.2024.02.004

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Pan, C. Concrete Pouring of Prefabricated T-beams in Bridge Engineering Construction Technology. Transpo World 2023, 192-194, doi:10.3969/j.issn.1006-8872(s).2023.17.062.

[2]

Shi, L. Highway Bridge Prefabricated T-beam Construction Technology. Transpo World 2020, 146-147, doi:10.16248/j.cnki.11-3723/u.2020.14.065.

[3]

Zonta, D.; Pozzi, M.; Colombo, A.; Inaudi, D.; Figini, A. Advances in Manufacture of Smart Prestressed Reinforced Concrete elements. In Proceedings of the Proceedings of the 3rd European Workshop Structural Health Monitoring 2006, 471-478.

[4]

Chen, G. Application of BIM Technology in the Optimization of Prefabricated T-beam Reinforcement Design. Western China Communication Science & Technology 2022, 112-114, doi:10.13282/j.cnki.wccst.2022.01.030.

[5]

Dai, X.; Wu, X.; Zhang, T. Research on the Precision Control Technology of Short-line Segmental Prefabricated As-sembly Bridge. In Proceedings of the 3rd International Conference on Energy Equipment Science and Engineering (ICEESE 2017).

[6]

Zheng, H. Study on the Construction Technology of Post-tensioned Pre-stressed T-beam. Concrete 2012, 118-120,123, doi:10.3969/j.issn.1002-3550.2012.10.037.

[7]

Yin, F.; Chen, X.; Zhou, Y.; Wang, X.; Yuan, X. Research on Key Technologies of Prefabricated Assem-bled Construc-tion Nodes for Shanghai Riverside Channel. Prestress Technology 2024, 1,30-43, doi:10.59238/j.pt.2023.03.003.

[8]

Wang, C.; Shen, Y.; Chen, J. Review of Research and Application of Prefabricated and Assembled Concrete Bent Caps. Prestress Technology 2024, 1,1-14, doi:10.59238/j.pt.2023.03.001.

[9]

Tang, J. On Steam Conditioning Technology for Prefabricated T-Girders for Highway Bridge Projects. The Technology and Management of Transportation System 2023, 4,117-119.

[10]

Leng, G. Application of Intelligent Tensioning and Compaction System in Prefabricated T-Girders. Transpo World 2023, 150-152, doi:10.3969/j.issn.1006-8872(s).2023.22.047.

[11]

Gu, S.; Li, C.; Zhao, C.; Zheng, C. Fine Design and Construction Technology of 30 m Prefabricated T Beam Steel-binding Tire Frame. Engineering and Technological Research 2022, 7,27-29, doi:10.19537/j.cnki.2096-2789.2022.14.008.

[12]

Chen, K.; Zhang, Y.; You, B.; Li, M. Minimizing Carbon Emission of Prefabricated Reinforced Concrete T-Beams Using BIM and Two-Stage Metaheuristic Searching. Journal of Computing in Civil Engineering 2024, 38,doi:10.1061/JCCEE5.CPENG-5485.

[13]

Zhang, Y.; Qin, Y.; Tan, T. Discussion on Application of Reinforcement Technology for Corrugated Pipe Blockage of Prestressed Bridge. Structural Engineers 2022, 38,148-154, doi:10.15935/j.cnki.jggcs.2022.05.006.

PDF (1775KB)

1211

Accesses

0

Citation

Detail

Sections
Recommended

/