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首页> 外文期刊>HBRC Journal >The behavior of ultra-high-strength reinforced concrete columns under axial and cyclic lateral loads
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The behavior of ultra-high-strength reinforced concrete columns under axial and cyclic lateral loads

机译:超高强度钢筋混凝土柱在轴向和周期性侧向荷载作用下的性能

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In general Ultra High Strength Concrete (UHSC) is a new class of concrete that has been developed in recent decades. UHSC is characterized by extraordinary mechanical and durability properties. The UHSC-Matrix is very brittle material behavior. In this research an experimental program consists of twelve square UHSC columns is being carried out to study the behavior of UHSC columns subjected to constant axial load combined with cyclic lateral loading in order to simulate the case of seismic action. The main parameters of this program were: longitudinal reinforcement ratio, percentage of steel fiber, stirrups ratio, axial load level and concrete compressive strength. In this experimental program each specimen represents a column extending on both sides from the beam-column connection to the location of the point of inflection. Particular attention is paid to the effect of each variable on the strength enhancement, stiffness degradation, energy dissipation capacity, curvature ductility and displacement ductility of the tested columns. Valuable conclusions were obtained from the research results. By increasing the concrete compressive strength the column capacity increases accompanied by a decreasing in the ductility aspects, increasing the longitudinal steel ratio from 2% to (3.6% and 4.5%) leading to an increase in the column capacity and ductility aspect of the tested columns. Using steel fiber between (1.33–2.67)% is recommended in UHSC columns in seismic zones. The Egyptian concrete code of practice limits for the columns stirrups is suitable in seismic zones for columns subjected to a low axial load level.
机译:通常,超高强度混凝土(UHSC)是近几十年来开发的一类新型混凝土。 UHSC具有非凡的机械性能和耐用性。 UHSC-Matrix具有非常脆的材料性能。在这项研究中,正在执行一个由十二个方形UHSC柱组成的实验程序,以研究承受恒定轴向载荷和周期性侧向载荷的UHSC柱的行为,以模拟地震作用的情况。该程序的主要参数为:纵向钢筋比率,钢纤维百分比,箍筋比率,轴向载荷水平和混凝土抗压强度。在该实验程序中,每个样本代表一个从梁柱连接到拐点位置的两侧延伸的圆柱。要特别注意每个变量对被测柱的强度增强,刚度降低,能量耗散能力,曲率延性和位移延性的影响。从研究结果中得出了有价值的结论。通过提高混凝土的抗压强度,立柱承载力随之增加,同时延性方面有所降低,将纵向钢比从2%增加到(3.6%和4.5%),从而导致被测立柱的立柱承载力和延性方面有所增加。建议在地震区的UHSC柱中使用介于(1.33–2.67)%之间的钢纤维。埃及stir柱的具体操作规范限制适用于地震区域中承受低轴向载荷的柱。

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