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Performance Analysis of Ferrocement Retrofitted Masonry Wall Units under Cyclic Loading

机译:循环荷载作用下加筋砌体墙体的性能分析

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A huge portion of old masonry buildings in Bangladesh are vulnerable to earthquake. In most of the cases these buildings contain unreinforced masonry wall which are most likely to be subjected to earthquake damages. Due to deterioration of mortar joint and aging, shear resistance of these unreinforced masonry walls dwindle. So, retrofitting of these old buildings has become an important issue. Among many researched and experimented techniques, ferrocement retrofitting can be a low cost technique in context of the economic condition of Bangladesh. This study aims at investigating the behavior of ferrocement retrofitted unconfined URM walls under different types of cyclic loading. Four 725 mm × 725 mm masonry wall units were prepared with bricks jointed by stretcher bond with 12.5 mm mortar between two adjacent layers of bricks. To compare the effectiveness of ferrocement retrofitting a particular type wire mesh was used in this experiment which is 20 gauge woven wire mesh with 12.5 mm × 12.5 mm square opening. After retrofitting with ferrocement these wall units were tested by applying cyclic deformation along the diagonals of the specimens. Then a comparative study was performed between the retrofitted specimens and control specimens for both partially reversed cyclic load condition and cyclic compression load condition. The experiment results show that ultimate load carrying capacities of ferrocement retrofitted specimens are 35% and 27% greater than the control specimen under partially reversed cyclic loading and cyclic compression respectively. And before failure the deformations of ferrocement retrofitted specimens are 43% and 33% greater than the control specimen under reversed cyclic loading and cyclic compression respectively. Therefore, the test results show that the ultimate load carrying capacity and ductility of ferrocement retrofitted specimens have improved.
机译:孟加拉国的一大部分旧砖石建筑很容易受到地震的影响。在大多数情况下,这些建筑物都包含未加固的砌体墙,这很可能遭受地震破坏。由于砂浆连接处的劣化和老化,这些未加固的砌体墙的抗剪强度逐渐下降。因此,对这些老建筑进行改造已成为重要问题。在许多研究和实验的技术中,鉴于孟加拉国的经济状况,加铁加固可能是一种低成本的技术。这项研究旨在调查在不同类型的循环荷载作用下的钢筋混凝土改建无限制URM墙的行为。准备了四个725 mm×725 mm的砖砌墙体单元,并用两块相邻的砖之间的12.5 mm砂浆通过担架粘结将砖连接起来。为了比较钢筋网加固的有效性,本实验中使用了一种特殊类型的丝网,该丝网是20规格的编织网,其开口为12.5 mm×12.5 mm。在进行了钢筋化改造后,通过沿试样的对角线施加周期性变形来测试这些墙单元。然后,在翻新样本和对照样本之间进行了部分反向循环载荷条件和循环压缩载荷条件下的对比研究。实验结果表明,在部分反向循环荷载和循环压缩下,加筋的加筋样板的极限承载力分别比对照样板高35%和27%。在破坏之前,在反向循环荷载和循环压缩下,加筋的加筋试样的变形分别比对照试样大43%和33%。因此,测试结果表明,加装钢筋的标本的极限承载力和延性得到了改善。

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