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Experimental and numerical study on steel-concrete composite shear wall using light-weight concrete

机译:轻质混凝土混凝土组合剪力墙的试验与数值研究

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In the present study, the behaviour of concrete stiffened steel plate shear wall (CSPSW) using precast light weight-concrete panels is experimentally and numerically investigated. Three one-bay one-story CSPSW specimens were designed, fabricated, and tested. The steel materials and dimensions of all specimens were the same; however, their precast concrete panels were different. One of the specimens had a precast normal-weight concrete panel on one side of the infill steel plate; on the other hand, another specimen had a light-weight one. The third specimen had two light-weight concrete panels on both sides of the steel plate. The quasi-static cyclic test results indicate that CSPSW with a light-weight concrete panel is a reliable lateral load-resisting system for steel structures. In addition, the shear capacity of specimen with light-weight concrete was approximately similar to specimen with normal-weight one. Therefore, it can be inferred the new system is able to reduce the seismic mass and improve the behaviour of steel structures. In this study, the light-weight concrete panel was 36% lighter than normal-weight panel. Based on the test data, specimens could tolerate high inter-story drift between 5.04% and 6.24% until the shear capacity decline in 80% of the maximum shear load recoded in the test. It should be mentioned that the infill steel plate of CSPSW undergoes entirely inelastic deformation and dissipates significant seismic energy through large lateral displacement. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本研究中,对使用轻质预制混凝土预制板的混凝土加劲板剪力墙(CSPSW)的性能进行了实验和数值研究。设计,制造和测试了三个单舱一层CSPSW标本。所有试样的钢材和尺寸均相同。但是,它们的预制混凝土面板不同。其中一个样品在填充钢板的一侧具有预制的普通重量混凝土面板;另一方面,另一个标本重量较轻。第三个样品在钢板的两面都有两个轻质混凝土板。准静态循环测试结果表明,带有轻质混凝土面板的CSPSW是钢结构可靠的侧向抗荷载系统。另外,轻质混凝土试样的剪切能力与普通重量混凝土试样的剪切能力大致相似。因此,可以推断出该新系统能够减少地震质量并改善钢结构的性能。在这项研究中,轻质混凝土板比普通重量板轻36%。根据测试数据,标本可以承受5.04%至6.24%的高层间位移,直到剪切能力下降到测试中记录的最大剪切载荷的80%。应该提到的是,CSPSW的填充钢板经历了完全的非弹性变形,并通过较大的横向位移而耗散了大量的地震能量。 (C)2016 Elsevier Ltd.保留所有权利。

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