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    波折钢腹板耗能梁段梁柱节点滞回性能

    Hysteretic performance of beam-column joints of corrugated steel web energy-dissipation beam section

    • 摘要: 采用已验证的有限元数值方法,建立BCJ-RCS的有限元模型并开展低周往复加载分析,研究其滞回性能及应力应变发展规律;进一步探究了耗能梁段翼缘宽厚比、腹板高厚比、腹板波形比、腹板半波数等参数对BCJ-RCS滞回曲线、骨架曲线及等效阻尼系数的影响。结果表明:该新型梁柱节点的滞回曲线饱满,具有良好的耗能能力;在往复加载过程中,塑性应变集中于耗能梁段,梁柱等主构件均未发生屈服,成功实现震后可更换的设计目标;耗能梁段翼缘宽厚比与腹板高厚比对BCJ-RCS抗震性能的影响较为显著,而腹板波形比与腹板半波数的影响较小。

       

      Abstract: The finite element model of BCJ-RCS was established by using the verified finite element numerical method, and the low-cycle reciprocating loading analysis was carried out to study its hysteretic performance and stress-strain development law. The effects of flange width-to-thickness ratio, web height-to-thickness ratio, web waveform ratio and web half-wave number on BCJ-RCS hysteresis curve, skeleton curve and equivalent damping coefficient were further explored. The results show that the hysteretic curve of the new beam-column joint was full and had good energy dissipation capacity. In the process of reciprocating loading, the plastic strain was concentrated in the energy-consuming beam section, and the main components such as beams and columns were not yielded, and the design goal of replaceability after earthquake was successfully achieved. The width-to-thickness ratio of the flange and the height-to-thickness ratio of the web had a significant effect on the seismic performance of BCJ-RCS, while the web waveform ratio and the half-wave number of the web had little effect.

       

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