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Behavior of spirally reinforced high-strength concrete columns under axial loading.

机译:螺旋增强高强度混凝土柱在轴向荷载下的性能。

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摘要

An experimental investigation was conducted to study the behavior of spirally reinforced high strength concrete (HSC) columns subjected to axial compression loading. The main objective of the experiment was to investigate the effects of the volumetric ratio of spiral steel, the spiral spacing, the specimen size and the concrete strength on the strength and ductility performance of confined concrete. Behavior of the cover concrete, spiral reinforcement steel, and longitudinal reinforcing bars were also investigated to gain insight into the overall behavior of HSC columns. A total of 32 spirally reinforced HSC columns were tested, including ten 254 mm diameter columns with concrete strength f'c of 69.7 Mpa, nine 203 mm diameter columns with concrete strength f'c of 69.7 MPa, and thirteen 203 mm diameter columns with concrete strength f 'c of 89.8 MPa. Overall height of each specimen was four times the diameter. All of the specimens were reinforced longitudinally with five deformed reinforcement bars and laterally by various amounts of spiral reinforcement.;An increase in the volumetric ratio of spiral steel resulted in increases in the strength and ductility of confined HSC, with the improvements in ductility being more pronounced. Reductions in spiral spacing resulted in improved strength and ductility of confined HSC when the volumetric ratio of spiral steel was sufficiently large. Increases in concrete strength were found to result in decreases in the peak strength enhancement, axial strain at peak strength, spiral stress at peak strength, and deformability of the specimens. Larger diameter columns achieved better participation of the cover concrete shell and had larger strengths at low axial strains. Cover concrete began spalling at lower concrete strengths and at earlier axial strains than expected in the columns with f'c of 89.8 MPa.
机译:进行了实验研究,以研究承受轴向压缩载荷的螺旋增强高强度混凝土(HSC)柱的性能。实验的主要目的是研究螺旋钢的体积比,螺旋间距,试样尺寸和混凝土强度对承压混凝土强度和延性性能的影响。还对覆盖混凝土,螺旋钢筋和纵向钢筋的性能进行了研究,以了解HSC柱的整体性能。总共测试了32根螺旋增强HSC柱,包括10根直径254 mm的混凝土强度f'c为69.7 Mpa的柱,9根203 mm直径的混凝土强度f'c为69.7 MPa的柱和13根203 mm直径的混凝土强度f′c为89.8MPa。每个样品的总高度是直径的四倍。所有试样均通过5个变形钢筋纵向增强,并通过不同数量的螺旋增强进行横向增强;;螺旋钢体积比的增加导致密闭HSC的强度和延展性增加,延展性提高更多发音。当螺旋钢的体积比足够大时,减小螺旋间距可提高密闭HSC的强度和延展性。发现混凝土强度的增加导致峰值强度增强,峰值强度处的轴向应变,峰值强度处的螺旋应力以及样品的可变形性降低。直径较大的圆柱可以更好地参与混凝土外壳,并且在低轴向应变下具有更大的强度。与f'c为89.8 MPa的圆柱相比,在较低的混凝土强度和较早的轴向应变下,盖层混凝土开始剥落。

著录项

  • 作者

    Montgomery, David L.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Civil engineering.
  • 学位 M.A.Sc.
  • 年度 1996
  • 页码 271 p.
  • 总页数 271
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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