Component-Based Modeling of Timber Beam–Column Moment Connection Exposed to Fire

Tongchen Han & Solomon Tesfamariam

Journal of Performance of Constructed Facilities2025https://doi.org/10.1061/jpcfev.cfeng-4990article
ABDC C
Weight
0.44

What the paper says

A computationally efficient and simplified numerical modeling approach, component-based method, is proposed for timber beam–column connection exposed to standard fire. A two-dimensional heat transfer model is developed to quantify the temperature field of the section, and a simplified mechanical model is established to simulate the corresponding structural response. For the simplified mechanical model, the shear plane of the connection is simplified into component-based nonlinear springs with temperature-dependent properties derived from the analytical resistance model. First, the heat transfer analysis results and structural response of the high-fidelity models are calibrated against experimental results. Subsequently, the strength degradation of the simplified model under elevated temperature is calibrated with the high-fidelity model. Finally, the sequential analysis results of calibrated simplified models are validated against experimental results. The proposed component-based modeling approach efficiently captures the behavior of beam-column connections exposed to fire while significantly reducing computational costs compared to high-fidelity models. Furthermore, a parametric study is carried out to investigate the influence of the relative thickness of side members on fire resistance time and failure modes of the connection.

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https://doi.org/https://doi.org/10.1061/jpcfev.cfeng-4990

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@article{tongchen2025,
  title        = {{Component-Based Modeling of Timber Beam–Column Moment Connection Exposed to Fire}},
  author       = {Tongchen Han & Solomon Tesfamariam},
  journal      = {Journal of Performance of Constructed Facilities},
  year         = {2025},
  doi          = {https://doi.org/https://doi.org/10.1061/jpcfev.cfeng-4990},
}

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Evidence weight

0.44

Balanced mode · F 0.40 / M 0.15 / V 0.05 / R 0.40

F · citation impact0.32 × 0.4 = 0.13
M · momentum0.57 × 0.15 = 0.09
V · venue signal0.50 × 0.05 = 0.03
R · text relevance †0.50 × 0.4 = 0.20

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