Abstract
Understanding the residual performance of structural members due to the impact damage is important to evaluate their damage degree and develop adequate retrofitting measures. The present work is a follow-up study on the impact resistance of round-ended concrete filled steel tubular (RE-CFST) columns by the authors, in which the residual behaviours of RE-CFST columns after being subjected to impact are presented. First, seven columns were laterally impacted and subsequently loaded to failure under axial compression. The damage pattern, load-lateral deflection relationship, and load-longitudinal strain responses were obtained. Test results showed that as the impact energy or pre-axial load increased, both the residual resistance and residual strength ratio of impacted columns decreased. Finite element models were developed to simulate the post-impact behaviours and were then verified using the experimental results. Next, a parametric investigation was performed on a series of 63 columns to analyze the effects of impactor velocity, axial-load ratio, steel ratio, slenderness ratio and cross-sectional aspect ratio on the residual axial resistance after impact. The analysis indicated that the steel ratio, slenderness ratio and cross-sectional aspect ratio have a moderate effect on the residual strength ratio. Finally, a simplified equation based on the global and local deformations was proposed to predict the residual axial resistance of RE-CFST columns exposed to impact loading.
| Original language | English |
|---|---|
| Article number | 107886 |
| Journal | Structures |
| Volume | 70 |
| DOIs | |
| State | Published - Dec 2024 |
Keywords
- CFST
- Impact
- Post-impact
- Residual axial resistance
- Round-ended
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