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Seismic behavior of beam-column joints strengthened with ultra-high performance fiber reinforced concrete

机译:超高性能纤维增强混凝土梁柱节点的抗震性能

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This paper presents a study on evaluation of seismic performance of shear-deficient beam column joints (BCJs) strengthened by ultra-high performance fiber reinforced concrete (UHPFRC). Normal concrete BCJs having deficiencies in resisting the seismic action were cast, strengthened with a thin layer of UHPFRC, and tested under seismic loading. Two different methods were used for strengthening the normal concrete BCJ specimens consisted of: i) sandblasting the normal concrete substrate surface of BCJs and in-situ casting of a 30 mm thick UHPFRC jacket and ii) bonding 30 mm thick prefabricated UHPFRC plates to seismically deficient BCJ using epoxy resins and special fillers. The performance of UHPFRC jacketing in strengthening the seismically deficient BCJs was experimentally evaluated under reverse cyclic loading using displacement control approach keeping column axial load constant at 150 kN. The analysis of test results showed that the first method of strengthening was highly effective in terms of shear capacity, deformation capacity, stiffness characteristics and energy dissipation capacity, as compared to the second method.
机译:本文对超高性能纤维混凝土(UHPFRC)加固的抗剪梁柱节点(BCJs)的抗震性能进行了评估。常规混凝土BCJ具有抗震作用的缺陷被浇铸,用UHPFRC薄层进行加固,并在地震荷载下进行测试。两种不同的方法用于加固普通混凝土BCJ标本,包括:i)喷砂BCJs的普通混凝土基底表面,并现场浇铸30 mm厚的UHPFRC护套,以及ii)将30 mm厚的预制UHPFRC板粘结到地震缺陷上BCJ使用环氧树脂和特殊填料。使用位移控制方法,在反向循环载荷下,通过将柱轴向载荷保持在150 kN不变,通过实验评估了UHPFRC护套在增强抗震BCJ方面的性能。对试验结果的分析表明,与第二种方法相比,第一种方法在剪切能力,变形能力,刚度特性和能量耗散能力方面非常有效。

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