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Development of upgradation schemes for gravity load designed beam-column sub-assemblage under cyclic loading

机译:循环荷载下重力荷载设计梁柱组件的升级方案开发

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In this paper, it is attempted to upgrade the poor gravity load designed ('GLD') exterior beam-column sub-assemblage for improving the seismic performance. Three different upgradation schemes have been proposed for 'GLD' sub-assemblage under seismic loading. In all three schemes, shear upgradation was carried out by using GFRP wrapping, and joint region was upgraded by using steel plate jacketing with through-through steel bolts. For flexural upgradation, CFRP fiber and laminates were respectively used in first two schemes. Third upgradation scheme was similar to that proposed in the first scheme but limited to the D-region (disturbed region) only. Before implementing the upgradation schemes, proper surface treatment on original specimens were carried out. First, the original 'GLD' and target 'ductile' sub-assemblages were experimentally investigated under reserve cyclic loading. Thereafter, the upgraded sub-assemblages were investigated under same cyclic load history as that was opted for 'GLD' one. Specimen details considered, materials used, execution procedure for upgradation adopted and experimental investigation carried out are discussed in step by step. It was observed from the investigation that the 'GLD' specimen seized to function under reserve loading and the lack in proper anchorage of beam bottom reinforcement formed a huge crack at the joint face. Under reverse cyclic loading, it was found that the upgraded specimens showed a considerable improvement in seismic performance. Further, the CFRP laminate based upgraded specimen showed better performance over the CFRP fiber based one and the plastic hinge could be successfully shifted from the joint zone to a predefined location.
机译:在本文中,试图改进设计的不良重力载荷('GLD')外部梁柱子组件,以提高抗震性能。针对地震荷载下的“ GLD”子组件,提出了三种不同的升级方案。在所有三个方案中,均使用GFRP包裹材料进行剪切增强,并通过使用带直通钢螺栓的钢板护套来提高接缝区域。对于挠性升级,在前两个方案中分别使用了CFRP纤维和层压板。第三升级方案类似于在第一方案中提出的方案,但是仅限于D区域(受扰区域)。在实施升级方案之前,对原始样品进行了适当的表面处理。首先,在储备循环载荷下,对原始的“ GLD”和目标“延性”子组件进行了实验研究。此后,在与选择“ GLD”相同的循环载荷历史下研究了升级后的子组件。分步讨论了所考虑的标本细节,使用的材料,采用的升级程序和进行的实验研究。从调查中观察到,“ GLD”试样在预紧力作用下被检出,而梁底部钢筋缺乏适当的锚固,在接合面上形成了巨大的裂缝。在反向循环载荷下,发现升级后的标本在抗震性能上有相当大的提高。此外,基于CFRP层压板的升级标本比基于CFRP纤维的标本显示出更好的性能,并且塑料铰链可以成功地从接合区域转移到预定位置。

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