UHPC约束混凝土组合柱轴压机理与承载力计算

AXIAL COMPRESSIVE MECHANISM AND BEARING CAPACITY CALCULATION OF UHPC CONFINED CONCRETE COMPOSITE COLUMNS

  • 摘要: 因外围UHPC内钢纤维的“桥接”作用,使得UHPC与约束箍筋共同工作,改善了UHPC约束混凝土(UHPC confined concrete,UCC)组合柱的轴压性能。为了量化UHPC及箍筋对内部混凝土的约束效果,建立轴压承载力计算方法,搜集了49个UCC组合柱的试验数据,并结合产生不同约束效果的箍筋界面位置、UHPC壁厚和界面粗糙度参数,对7个UCC组合柱进行了轴压试验,揭示了受压破坏机理;依环向变形理论和厚壁圆筒理论,分析了内部混凝土和外围UHPC的内力与变形特征,根据环向应变协调关系及受力平衡方程,计算外围UHPC对内部混凝土的约束力,基于统一强度理论和损伤比强度准则,提出了围压状态内部混凝土和拉压状态外围UHPC的竖向压应力计算方法,通过叠加原理建立了UCC组合柱的轴压承载力计算公式,计算了56个UCC组合柱的轴压承载力,计算结果与试验结果比值的平均值为0.96,标准差和变异系数均为0.11,表明建立的UCC组合柱轴压承载力计算公式具有较好的计算精度。

     

    Abstract: The behavior of UHPC confined concrete (UCC) composite columns can be improved by the synergistic operation of UHPC and restraint stirrups due to the "bridge" effect of steel fibers embedded in the outer UHPC. In order to quantify the confining effect of the outer UHPC and the stirrups on the inner concrete, and to develop a calculation method for axial compression capacity, an analysis was conducted on the test data of 49 UCC composite columns. Furthermore, seven UCC composite columns, which exhibit various degrees of confining effects, were subjected to compression tests. These tests considered variables such as the interface position of the stirrups, the wall thickness of UHPC and the interface roughness. The failure mechanism due to axial compression was revealed. Utilizing the principles of circumferential deformation and the theory of thick-walled cylinders, an analysis was conducted on the internal force and deformation characteristics of the inner concrete and the outer UHPC. The binding force exerted by the outer UHPC on the inner concrete was computed based on the circumferential strain coordination and the force balance equation. A novel method for calculating the vertical compressive stress of concrete in a confined state and UHPC in a tension state was proposed. The formula for calculating the axial compressive capacity of UCC composite columns was derived based on the superposition principle. It was then applied to computing the axial compressive capacity of 56 UCC composite columns, indicating that the calculation formula for the compressive capacity of UCC composite columns exhibits a high degree of accuracy.

     

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