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Strengthening of seismically deficient exterior beam-column connections using embedded steel bars

机译:使用嵌入式钢筋加强抗震能力强的外部梁柱连接

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Several techniques for improving performance of reinforced concrete (RC) beam-column (BC) connections have been developed in last two decades, but these techniques have been criticized for being labourintensive and susceptible to premature de-bonding. To overcome these shortcomings, a novel technique utilising embedded steel bars has been developed in this study for strengthening seismically deficient RC BC connections. This technique involves drilling holes within the joint core. After the drilled holes are cleaned, they are partially filled with epoxy. Finally, steel bars are inserted in the epoxy-filled holes. Two exterior BC connections were constructed and loaded under displacement-controlled cyclic loading. The first specimen was a control specimen designed in accordance with the pre-1970s building codes to represent BC connections requiring strengthening. The second specimen was strengthened with eight 8 mm steel bars embedded within the concrete core in the joint area and epoxied to maintain the bond between the concrete and the steel bars. The strengthened specimen had superior performance compared to that of the control specimen in terms of joint shear stress, normalised principal tensile stress demand and stiffness degradation. The results show that shear stress of the joint was enhanced by about 8% whereas the enhancement in the principal tensile stress demand was 24% compared to that of the control specimen. The results showed that the proposed technique is capable in upgrading the seismic performance of seismically deficient RC BC connections.
机译:在过去的二十年中,已经开发了几种改善钢筋混凝土(RC)梁柱(BC)连接性能的技术,但是这些技术因其劳动强度大且易于过早脱胶而受到批评。为了克服这些缺点,在这项研究中开发了一种利用嵌入式钢筋的新技术,以增强抗震RC BC连接。该技术涉及在接头芯内钻孔。清洁钻孔后,将其部分填充环氧树脂。最后,将钢筋插入环氧树脂填充的孔中。构造了两个外部BC连接并在位移控制的循环荷载下加载。第一个标本是根据1970年代以前的建筑规范设计的对照标本,代表需要加强的BC连接。第二个试样通过在接合区域的混凝土芯中嵌入8个8 mm的钢筋进行了加固,并进行了环氧处理以保持混凝土和钢筋之间的粘结。在接头剪切应力,归一化主拉伸应力需求和刚度降低方面,与对照试样相比,增强试样具有更好的性能。结果表明,与对照组相比,接头的剪切应力提高了约8%,而主要拉伸应力需求的提高为24%。结果表明,所提出的技术能够提高抗震RC BC连接的抗震性能。

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