基于板壳理论的锈蚀板柱节点变形及冲切承载力计算模型

COMPUTATIONAL MODEL OF DEFORMATION AND PUNCHING SHEAR CAPACITY OF CORRODED SLAB-COLUMN CONNECTION UPON PLATE AND SHELL THEORY

  • 摘要: 为了高效、准确地计算钢筋锈蚀的板柱节点变形能力和冲切承载力,该文基于板壳理论建立了其荷载-挠度曲线计算模型,利用该模型可以计算锈蚀板柱节点的变形、开裂荷载以及冲切承载力。通过将板柱节点的试验结果与该模型及不同规范中计算模型的计算结果进行对比,结果表明:该文提出的计算模型能较准确地计算锈蚀板柱节点的荷载-挠度曲线、开裂荷载及极限承载力;相对于规范ACI 318−19、GB 50010−2010和CSA A23.3−14计算模型,该文模型的计算精度更高。

     

    Abstract: To calculate the deformation and punching shear capacity of a slab-column connection with corroded steel bars efficiently and accurately, a load-deflection curve computational model was established by the basis of the plate and shell theory. The computational model in this study can be used to calculate the deformation, cracking load, and punching shear capacity of the corroded slab-column connections. The test results of slab-column connections were compared with the calculation results of the computational model in this study and different standards. The results show that: the computational model proposed can predict the load-deflection curves, cracking loads and punching shear capacity of slab-column corroded connections accurately; compared with the punching shear capacity calculated by ACI 318−19, GB 50010−2010 and CSA A23.3−14, the computational model proposed has better calculation accuracy.

     

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