钢筋超高性能混凝土偏压柱承载力计算方法

CALCULATION OF ULTIMATE CAPACITY OF REINFORCED ULTRA-HIGH-PERFORMANCE CONCRETE COLUMNS UNDER ECCENTRIC LOADING

  • 摘要: 本文首先建立了钢筋超高性能混凝土(ultra-high-performance concrete, UHPC)偏压柱的数值分析模型,并验证了该模型的合理性。在此基础上,开展了12 000根钢筋UHPC偏压柱非线性参数分析,重点研究了长细比、偏心率、配筋方案和UHPC强度等参数对二阶效应的影响规律。分析结果表明,我国GB 50010−2010中的弯矩放大系数低估了钢筋UHPC偏压柱的二阶效应。通过对参数分析结果的敏感性分析和回归分析,修正了弯矩放大系数计算公式。然后,开展了钢筋UHPC偏压柱正截面承载力分析,阐明了受拉区钢纤维桥联作用的贡献。分析结果表明:钢纤维桥联作用存在尺寸效应。在此基础上,研究确定了受拉区UHPC等效矩形应力图折减系数的取值。最后,结合修正的弯矩放大系数和正截面承载力计算公式,提出了钢筋UHPC偏压柱承载力计算方法。将已有文献中收集到的13根钢筋UHPC偏压柱承载力试验值与该方法计算值进行对比,两者吻合良好。

     

    Abstract: This study first establishes a numerical analysis model for ultra-high-performance concrete (UHPC) columns reinforced with steel bars, and then verifies the validity of this model. Based on this model, parametric analysis is conducted through numerical simulations of 12 000 reinforced UHPC (R-UHPC) columns under eccentric loading, focusing on the influence of slenderness ratios, eccentricity ratios, longitudinal reinforcement arrangements, and UHPC strengths on the second-order effect. The results indicate that the moment magnification factor specified in GB 50010−2010 underestimates the second-order effect of R-UHPC columns. Through sensitivity analysis and regression analysis of the parametric analysis results, a refined calculation formula for the moment magnification factor is derived. Subsequently, an analysis program of the normal section bearing capacity of R-UHPC columns under eccentric loading is developed to determine the contribution of steel fiber bridging in the tensile zone. The analytical results indicate that there is a size-dependent effect in the bridging effect of steel fibers. On this basis, the equivalent rectangular stress reduction coefficient for UHPC in the tensile zone is determined. Finally, a method for calculating the bearing capacity of R-UHPC columns under eccentric loading is proposed, which integrates the modified moment magnification factor with the formula for calculating the bearing capacity of the normal section. A comparison between the bearing capacities calculated using this method and the experimental results from 13 tested R-UHPC columns under eccentric loading collected from existing literature is conducted, showing that the two are in good agreement.

     

/

返回文章
返回