Columns in traditional Chinese timber structures barely rest on stone bases, and the column foot joints are capable of resisting moment around any direction. This study numerically investigated the spatial rotational behaviour of intact and damaged columns based on experiments. Unidirectional cyclic loading tests were carried out on two intact and three damaged column foot joint specimens. A fibre element-based numerical model for the column foot joints was developed and validated by use of the unidirectional loading test results. Numerical analyses were performed based on the fibre element-based model to obtain the rotational behaviour of the intact and damaged column foot joints under spatial loading. The analyses indicated that the moment–rotation curve of an intact column foot joint under spatial loading was on an umbrella-shaped surface. The damage at the column foot not only unidirectionally decreased the moment-resisting capacity of a column foot joint but also resulted in a rotational performance degradation valley on the moment–rotation surface of the joint. The rotational behaviour of both the intact and damaged column foot joints under spatial loading was highly non-linear. This developed fibre element-based model can be further utilised to analyse the structural performance of traditional timber structures under three-dimensional excitations.
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August 2024
Research Article|
October 15 2024
Spatial rotational behaviour of intact and damaged column foot joints: numerical modelling
Ya-Jie Wu;
Ya-Jie Wu
Associate Professor, School of Civil Engineering, Xi’an University of Architecture and Technology, Xi’an, China
Professor, Key Lab of Structural Engineering and Earthquake Resistance, Ministry of Education (Xi’an University of Architecture and Technology), Xi’an, China
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Wei Meng;
Wei Meng
Master student, School of Civil Engineering, Xi’an University of Architecture and Technology, Xi’an, China; Key Lab of Structural Engineering and Earthquake Resistance, Ministry of Education (Xi’an University of Architecture and Technology), Xi’an, China
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Wen-Shao Chang;
Wen-Shao Chang
Professor, Lincoln School of Architecture and the Built Environment, University of Lincoln, Lincoln, UK
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Qi-Fang Xie;
Qi-Fang Xie
Professor, School of Civil Engineering, Xi’an University of Architecture and Technology, Xi’an, China (corresponding author: xieqfgh@xauat.edu.cn)
Professor, School of Civil Engineering and Transportation, Northeast Forestry University, Harbin, China
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Li-Peng Zhang
Li-Peng Zhang
Assistant Professor, School of Civil Engineering, Xi’an University of Architecture and Technology, Xi’an, China
PhD scholar, Key Lab of Structural Engineering and Earthquake Resistance, Ministry of Education (Xi’an University of Architecture and Technology), Xi’an, China
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Publisher: Emerald Publishing
Received:
May 04 2024
Accepted:
June 25 2024
Online ISSN: 1757-9449
Print ISSN: 1757-9430
Emerald Publishing Limited: All rights reserved
2024
Proceedings of the Institution of Civil Engineers - Engineering History and Heritage (2024) 177 (3): 74–82.
Article history
Received:
May 04 2024
Accepted:
June 25 2024
Citation
Wu Y, Meng W, Chang W, Xie Q, Zhang L (2024), "Spatial rotational behaviour of intact and damaged column foot joints: numerical modelling". Proceedings of the Institution of Civil Engineers - Engineering History and Heritage, Vol. 177 No. 3 pp. 74–82, doi: https://doi.org/10.1680/jenhh.24.00007
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