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Seismic behavior and shear strength of tubed RC short columns

机译:钢管混凝土短柱的抗震性能和抗剪强度

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Reinforced concrete (RC) short columns are vulnerable to brittle shear failure during an earthquake. The objective of this research is to evaluate the performance enhancement of RC short columns tubed with circular or square tubes. Eight short columns were tested under combined constant axial load and cyclic lateral load. The tested specimens included three circular tubed RC (CTRC) columns and three square tubed RC (STRC) columns. Two common RC short columns including one circular RC column and one square RC column were also tested as control specimens. The test results indicated that common RC short columns suffered brittle shear failure with little ductility, while the ductility of tubed RC short columns was excellent due to the effective confinement of the outer thin tube to the core concrete. The lateral load strength of CTRC short columns increases with the increasing of axial load ratio, while the axial load ratio has little effect on the plastic deformation capacity of CTRC short columns. The shear strength increases with increasing of axial load ratio, while the plastic deformation capacity decreases with increasing of axial load ratio for STRC short columns. A circular tube prevents the core concrete from shear failure more effectively than a square tube for the tubed RC short columns. A modified ACI design method is adopted to calculate the nominal shear strength of STRC columns as well as CTRC columns based on the test and analysis results.
机译:钢筋混凝土(RC)短柱在地震期间容易发生脆性剪切破坏。这项研究的目的是评估用圆管或方管填充的RC短柱的性能增强。在恒定的轴向载荷和周期性的横向载荷的共同作用下测试了八根短柱。测试样品包括三根圆管RC(CTRC)柱和三根方管RC(ST​​RC)柱。还测试了两个普通的RC短柱,包括一个圆形RC柱和一个方形RC柱作为对照样品。测试结果表明,普通的RC短柱遭受了脆性剪切破坏,延展性很小,而管式RC短柱的延展性极好,这是由于将外部细管有效地限制在了芯混凝土上。 CTRC短柱的侧向荷载强度随轴向荷载比的增加而增加,而轴向荷载比对CTRC短柱的塑性变形能力影响很小。 STRC短柱的抗剪强度随轴向载荷比的增加而增加,而塑性变形能力随轴向载荷比的增加而减小。对于圆管RC短柱,圆管比方管能更有效地防止核心混凝土的剪切破坏。根据试验和分析结果,采用改进的ACI设计方法来计算STRC柱和CTRC柱的标称抗剪强度。

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