Performance of High-Strength Concrete (HSC) Columns Confined with Rectilinear Reinforcement

A. Azizinamini, M. Saatcioglu
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引用次数: 3

Abstract

Strength and deformability of High-Strength Concrete (HSC) columns are presented based on recent experimental and analytical research. HSC columns under concentric compression and under combined axial compression and lateral load reversals are discussed. Experimentally observed column strengths are compared with those computed based on the provisions of ACI 318 (1) building code and analytical models proposed for HSC columns. The results indicate that the rectangular stress block currently used for normal-strength concrete is not applicable to HSC, especially for columns under high compression where the overall response is dominated by concrete. A triangular and a modified rectangular stress block is presented. Column capacity under concentric compression is illustrated with due considerations given to early spalling of cover concrete. Axial and lateral deformabilities of HSC columns are discussed with emphasis placed on the parameters of confinement. It is shown that HSC columns conforming to the current building code requirements may exhibit ductile behavior under moderate and low levels of axial compression. Higher grade lateral reinforcement can be utilized effectively to confine HSC columns to produce improved inelastic deformability under higher levels of axial compression.
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钢筋约束下高强混凝土柱的性能研究
根据近年来的试验和分析研究,提出了高强混凝土柱的强度和变形能力。讨论了同心压缩和轴压与侧向荷载联合作用下的HSC柱。根据ACI 318(1)建筑规范的规定和提出的HSC柱分析模型计算的柱强度与试验观测值进行了比较。结果表明,目前用于标准强度混凝土的矩形应力块不适用于高强度混凝土,特别是在混凝土主导整体响应的高压缩条件下的柱。提出了一个三角形和一个改进的矩形应力块。柱在同心压缩下的承载力,适当考虑了覆盖层混凝土的早期剥落。讨论了钢筋混凝土柱的轴向和侧向变形能力,重点讨论了约束参数。结果表明,符合现行建筑规范要求的HSC柱在中低水平轴压下可能表现出延性行为。在较高水平的轴压作用下,可以有效地利用较高等级的侧配筋来约束钢混凝土柱,从而提高其非弹性变形能力。
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