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Experimental and analytical studies on earthquake resisting behaviour of confined concrete block masonry structures

机译:承压混凝土砌块砌体结构抗震性能试验与分析研究

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摘要

To improve the seismic performance of masonry structures, confined masonry that improves the seismic resistance of masonry structures by the confining effect of surrounding bond beams and tie columns is constructed. This study investigated the earthquake resisting behaviour of confined masonry structures that are being studied and constructed in China. The structural system consists of unreinforced block masonry walls with surrounding reinforced concrete bond beams and tie columns. The characteristics of the structure include: (1) damage to blocks is reduced and brittle failure is avoided by the comparatively lower strength of the joint mortar than that of the blocks, (2) the masonry walls and surrounding reinforced concrete bond beams and tie columns are securely jointed by the shear keys of the tie columns. In this study, wall specimens made of concrete blocks were tested under a cyclic lateral load and simulated by a rigid body spring model that models non-linear behaviour by rigid bodies and boundary springs. The results of studies outline the resisting mechanism, indicating that a rigid body spring model is considered appropriate for analysing this type of structure.
机译:为了提高砌体结构的抗震性能,构造了通过围合梁和连接柱的约束作用来提高砌体结构的抗震性的承压砌体。本研究调查了在中国正在研究和建造的承压砌体结构的抗震性能。结构系统由未加固的砌体墙和周围的钢筋混凝土粘结梁和连接柱组成。该结构的特征包括:(1)结合砂浆的强度低于砌块,从而降低了对砌块的破坏,并避免了脆性破坏;(2)砌体墙以及周围的钢筋混凝土粘结梁和系柱通过拉杆的剪切键牢固地连接在一起。在这项研究中,对混凝土砌块制成的墙样本在周期性的横向载荷下进行了测试,并通过刚体弹簧模型进行了模拟,该模型通过刚体和边界弹簧对非线性行为进行建模。研究结果概述了抵抗机理,表明刚体弹簧模型被认为适合分析这种类型的结构。

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