U型筋-预制键槽装配整体式混凝土梁-柱子结构抗连续倒塌机理研究

LOAD RESISTING MECHANISMS OF U-SHAPED BEAM TROUGH ASSEMBLED MONOLITHIC PRECAST CONCRETE BEAM-COLUMN SUBSTRUCTURES TO RESIST PROGRESSIVE COLLAPSE

  • 摘要: 为探究U型筋-预制键槽装配整体式预制混凝土梁-柱结构在中柱失效后的倒塌抗力机制,本次研究制作了两个两跨梁-柱子结构模型且按1/2比例缩尺。试验采用Pushdown加载方式,系统地探究了在倒塌过程中该类结构的力学性能和破坏模式。试验结果表明:随着跨高比的增大,梁 -柱节点的塑性转动速率逐渐降低,从而有效地延缓了受拉区钢筋的断裂。此外,跨高比越小,受压拱机制作用下的第一峰值荷载越高,但对结构的 极限荷载影响有限。为进一步探究试验中未考虑但对结构有较大影响的参数,利用有限元软件LS-DYNA进行了建模与参数分析。在验证有限元模型精度的基础上,对不同种类的后浇混凝土以及U型键槽中U型筋的数量进行了拓展参数分析。分析结果表明:当后浇层采用超高性能混凝土时,压拱阶段的第一峰值荷载和最大水 平压力分别增加了16%和26%;当中节点U型键槽中的U型筋数量增加时,压拱阶段的第一峰值荷载和悬链线阶 段的极限荷载分别提升了4%和18%,同时最大水平拉力也增加了11%。值得注意的是,随着U型筋数量的增多,结构的最终破坏模式由U型筋的拉断转变为U型键槽的粘结失效;然而,提高边缘节点U型筋数量对构件的整体抗力几乎没有影响。

     

    Abstract: To investigate the load-resisting mechanism of U-shaped beam trough assembled monolithic precast concrete beam-column structures during the progressive collapse triggered by middle column removal scenario, two two-span, half-scale beam-column structural models were fabricated in this study. Using a pushdown loading method, a systematic examination of the mechanical properties and failure modes of this type of structure during collapse was conducted. The experimental results indicate that as the span-depth ratio increases, the plastic rotation rate at the beam-column joint gradually decreases, effectively delaying the rupture of strands in the tension zone. Additionally, a smaller span-depth ratio results in a higher first peak load under the influence of compressive arch action, but has a limited impact on the ultimate load capacity of the structure. To further explore the parameters which were not considered in the experiments but have a significant influence on the structure, modeling and parametric analysis were performed using the finite element software LS-DYNA. Based on the verified finite element model, extended parametric analysis was conducted on different types of post-cast concrete and different number of U-shaped reinforcements in the U-shaped beam trough. The analysis results show that when ultra-high-performance concrete is used for the post-cast layer, the first peak load during the compressive arch action phase and the maximum horizontal pressure increases by 16% and 26%, respectively. As the number of U-shaped reinforcements in the middle joint's U-shaped beam trough increases, the first peak load during the compressive arch action phase and the ultimate load capacity during the catenary action phase increases by 4% and 18%, respectively, while the maximum horizontal tension also increases by 11%. It is worth noting that as the number of U-shaped reinforcements increases, the ultimate failure mode of the structure shifts from the rupture of the U-shaped reinforcement to bond failure of the U-shaped beam trough. However, increasing the number of U-shaped reinforcements at the peripheral joints has minimal impact on the overall load-resisting capacity of the members.

     

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