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Low reversed cyclic loading tests for integrated precast structure of lightweight wall with single-row reinforcement under a lightweight steel frame

机译:轻型钢框架下具有单排钢筋的轻型墙的整体预制结构的低反向循环荷载测试

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摘要

Given the development of precast structures for low-rise residential buildings, this study explores a new structure—namely, an integrated precast structure of lightweight recycled concrete wall with single-row reinforcement—under a lightweight steel frame filled with recycled concrete (integrated precast structure for short). The lightweight steel frame and lightweight wall cooperate to bear the forces. The applied concealed bracing, either a rebar bracing or a steel plate bracing, increases the shear resistance of the wall. The lightweight steel frame is designed to bear the vertical loading, whereas the seismic load in the horizontal direction is jointly borne by the frame and wall. This study presents the results of low reversed cyclic loading tests on nine specimens of integrated precast structures. An analysis is then carried out to investigate the mechanical properties of the specimens; based on these results, a formula for the force-bearing performance of the inclined section is developed. The results show satisfactory performance as an integrated piece; the proposed structure has two seismic lines of defence, with the lightweight wall restraint by the side frame being the first line and the steel frame being the second line. Because the failure of the wall can be categorized as shear failure, the restraint of the lightweight steel frame significantly reduces the potential damage of the wall. As the beams and columns of the steel frame tend to bend against failure, the wall filling helps resist sliding. Therefore, the reinforced joints of the connecting beams and columns show no visible signs of damage, indicating that the connection between the beams and columns is reliable. The narrow spacing of rebars and the setting of concealed bracing contribute to the increase in ductility and energy efficiency of the integrated structure and the evident reduction in the failure process. Furthermore, the recycled concrete increases the seismic resistance of the structure.
机译:考虑到低层住宅建筑预制结构的发展,本研究探索了一种新结构,即在装有再生混凝土的轻钢框架下的轻质再生混凝土墙与单排钢筋的集成预制结构(集成预制结构)。简称)。轻质的钢制框架和轻质的墙壁共同承受力。所施加的隐藏式支撑(钢筋支撑或钢板支撑)可增加墙体的抗剪强度。轻质钢框架设计为承受垂直载荷,而水平方向的地震载荷则由框架和墙共同承担。这项研究提出了九个整体预制结构标本的低反向循环荷载试验的结果。然后进行分析以研究样品的机械性能。基于这些结果,开发了倾斜截面的承载力公式。结果显示出令人满意的整体性能。所提出的结构具有两条地震防御线,轻质墙体被侧框架约束为第一行,而钢制框架约束为第二行。由于墙的破坏可以归类为剪切破坏,因此对轻质钢框架的约束可以显着减少墙的潜在损坏。由于钢制框架的梁和柱容易弯曲而无法破坏,因此墙填充有助于抵抗滑动。因此,连接梁和柱的加固接头没有可见的损坏迹象,表明梁和柱之间的连接是可靠的。钢筋的狭窄间距和隐藏式支撑的设置有助于提高集成结构的延展性和能效,并明显减少破坏过程。此外,再生混凝土提高了结构的抗震性。

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