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Cyclic performance of retrofitted reinforced concrete beam-column joints using steel prop

机译:钢制支撑加固钢筋混凝土梁柱节点的循环性能

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This paper investigates the cyclic experimental behavior of damaged exterior reinforced concrete beam-column joint specimens retrofitted with the proposed technique using steel elements called steel prop and curb. The technique is usable for local and global strengthening of reinforced concrete frames. Four half-scale RC joints were tested under the cyclic loading; two control specimens with the different beam heights were loaded up to their ultimate strength and this was followed by retrofitting of these damaged specimens as new specimens and tested again under the same loading system. Experimental results showed that the 25% reduction of beam height due to construction mistake caused increasing in deflection of joint beam, decreasing of ductility and also 33% and 26% decreasing in bearing capacity and energy absorption, respectively. The ultimate load was increased up to 80% and the rigidity decreased degradation of retrofitted damaged joints was significantly in the proposed retrofitting system. And also the energy absorption was enhanced and the cracks were minimized due to a new lateral loading in the beam-column joint region in this upgrading method.
机译:本文研究了使用建议的技术(使用称为钢支柱和路缘的钢构件)改造后的受损外部钢筋混凝土梁柱节点标本的循环试验性能。该技术可用于钢筋混凝土框架的局部和整体加固。在循环载荷下测试了四个半比例钢筋混凝土接头。将两个具有不同梁高的对照样品加载到极限强度,然后将这些损坏的样品改装为新样品,并在相同的加载系统下再次进行测试。实验结果表明,由于施工错误而导致的梁高降低25%会导致关节梁的挠度增加,延展性降低,并且承载力和能量吸收分别降低33%和26%。在拟议的改装系统中,最终载荷增加到80%,而刚度降低了改装损坏的接头的退化。而且,在这种升级方法中,由于梁柱连接区域中出现了新的横向载荷,从而提高了能量吸收并最大程度地减少了裂纹。

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