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Strengthening of non-seismically designed beam-column joints by ferrocement jackets with chamfers

机译:带有倒角的铁皮夹克加强非抗震设计的梁柱节点

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摘要

This paper presents a strengthening method that involves the use of ferrocement jackets and chamfers to relocate plastic hinge for non-seismically designed reinforced concrete exterior beam-column joints. An experimental study was conducted to assess the effectiveness of the proposed strengthening method. Four half-scale beam-column joints, including one control specimen and three strengthened specimens, were prepared and tested under quasi-static cyclic loading. Strengthening schemes include ferrocement jackets with or without skeleton reinforcements and one or two chamfers. Experimental results have indicated that the proposed strengthening method is effective to move plastic hinge from the joint to the beam and enhance seismic performance of beam-column joints. Shear stress and distortion within the joint region are also reduced significantly in strengthened specimens. Skeleton reinforcements in ferrocement provide limited improvement, except on crack control. Specimen strengthened by ferrocement jackets with one chamfer exhibits slight decrease in peak strength and energy dissipation but with increase in ductility as compared with that of two chamfers. Finally, a method for estimating moment capacity at beam-column interface for strengthened specimen is developed. The proposed method gives reasonable prediction and can ensure formation of plastic hinge at predetermined location in the beam.
机译:本文提出了一种加固方法,该方法包括使用非金属抗震设计的钢筋混凝土外梁-柱节点的钢制夹套和倒角来重新定位塑料铰链。进行了一项实验研究,以评估所提出的加固方法的有效性。准备了四个半尺度的梁柱节点,包括一个控制样本和三个加强样本,并在准静态循环荷载下进行了测试。加固方案包括带有或不带有骨架增强件和一个或两个倒角的铁皮夹克。实验结果表明,所提出的加固方法可以有效地将塑料铰链从节点移动到梁上,并提高梁柱节点的抗震性能。在加强的样品中,关节区域内的剪切应力和变形也显着降低。除裂缝控制外,钢筋混凝土中的骨架增强材料提供的改进有限。与两个倒角相比,带有一个倒角的铁皮夹克加固的试样的峰值强度和能量耗散略有下降,但延展性却有所提高。最后,提出了一种在梁柱界面处的承载力估算方法。所提出的方法给出了合理的预测,并且可以确保在梁的预定位置处形成塑料铰链。

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