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Published: Građevinar 75 (2023) 9
Paper type: Original scientific paper
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Dynamic behaviour of prestressed concrete beams considering moving loads

Xuansheng Cheng, GuangYu Dong, Xianglei Wang, Liang Ma, Guoliang Li

Abstract

Herein, the dynamic response rule of prestressed concrete beams with metal and plastic corrugated pipes with different duct grouting compactness values under moving constant concentrated loads and moving simple harmonic loads is studied. Prestressed concrete beams with metal and plastic corrugated pipes are analysed using the finite element method for the case of non-cracking. The results indicate that duct grouting compactness and forming material affect the natural vibration characteristics of prestressed concrete beams. Under identical duct grouting compactness, prestressed concrete beams with metal corrugated pipes exhibit higher frequencies compared with those with plastic corrugated pipes. The mid-span dynamic deflection of the prestressed concrete beams decreases with an increase in duct grouting compactness, which is independent of the forming material. The differences in the midspan speed and acceleration caused by the moving loads between the corrugated duct prestressed concrete beams made of metal and those made of plastic are small; this indicates that the pore-forming material has little effect on the midspan node speed and acceleration response of prestressed concrete beams.

Keywords
prestressed concrete beam, corrugated pipes, grouting compactness, nonlinear analysis, moving load, dynamic response

HOW TO CITE THIS ARTICLE:

Cheng, X. ., Dong, G., Wang, X., Ma, L., Li, G.: Dynamic behaviour of prestressed concrete beams considering moving loads, GRAĐEVINAR, 75 (2023) 9, pp. 869-881, doi: https://doi.org/10.14256/JCE.3437.2021

OR:

Cheng, X. ., Dong, G., Wang, X., Ma, L., Li, G. (2023). Dynamic behaviour of prestressed concrete beams considering moving loads, GRAĐEVINAR, 75 (9), 869-881, doi: https://doi.org/10.14256/JCE.3437.2021

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This paper is licensed under a Creative Commons Attribution 4.0 International License.
Authors:
3437 A1 WEB
Xuansheng Cheng
Lanzhou University of Technology, China
Ministry of Education Western Construction
Disaster Risk Mitigation Center
Photo of Dong Guangyu WEB
GuangYu Dong
Lanzhou University of Technology, China
Gansu Provincial Industrial Disaster Prevention and Mitigation Main Laboratory
3437 A3 WEB
Xianglei Wang
Lanzhou University of Technology, China
Ministry of Education Western Construction
Disaster Risk Mitigation Center
3437 A4 WEB
Liang Ma
Lanzhou University of Technology, China
Ministry of Education Western Construction
Disaster Risk Mitigation Center
3437 A5 WEB
Guoliang Li
Lanzhou University of Technology, China
Gansu Provincial Industrial Disaster Prevention and Mitigation Main Laboratory