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Experimental investigation on reparability of an infilled rocking wall frame structure

机译:填充式摇摆墙框架结构可修复性的试验研究

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Improving seismic performance is one of the critical objectives in earthquake engineering. With the development of economy and society, reparability and fast resilience of a structure are becoming increasingly important. Reinforced concrete (RC) frame structure is prone to soft story mechanism. As a result, deformation and damage are so concentrated that reparability is severely hampered. Rocking wall provides an available approach for deformation control in RC frame by introducing a continuous component along the height. Previous researches mostly focus on seismic responses of rocking wall frame structures, while damage mode and reparability have not been investigated in detail. In this study, a novel infilled rocking wall frame (IRWF) structure is proposed. A half-scaled IRWF model was designed according to Chinese seismic design code. The model was subjected to cyclic pushover testing up to structure drift ratio of 1/50 (amplitude 1/50), and its reparability was evaluated thereafter. Retrofit was implemented by wrapping steel plates and installing friction dampers. The retrofitted model was further loaded up to amplitude 1/30. The IRWF model showed excellent reparability and satisfactory seismic performance on deformation control, damage mode, hysteresis behavior, and beam-to-column joint rotation. After retrofitting, capacity of the model was improved by 11% with limited crack distribution. The model did not degrade until amplitude 1/30, due to shear failure in frame beams. The retrofit procedure was proved effective, and reparability of the IRWF model was demonstrated. Seismic resilience tends to be achieved in the proposed system.
机译:改善地震性能是地震工程的关键目标之一。随着经济和社会的发展,结构的可修复性和快速恢复力变得越来越重要。钢筋混凝土(RC)框架结构易于产生软故事。结果,变形和损坏非常集中,严重损害了可修复性。摇墙通过沿高度引入连续分量,为RC框架中的变形控制提供了一种可行的方法。先前的研究主要集中在摇摆墙框架结构的地震响应上,而损伤模式和可修复性尚未得到详细研究。在这项研究中,提出了一种新颖的填充式摇摆墙框架(IRWF)结构。根据中国抗震设计规范设计了半比例IRWF模型。对该模型进行循环推翻测试,直到结构漂移率达到1/50(振幅1/50),然后评估其可修复性。通过包裹钢板并安装摩擦阻尼器来实现翻新。改进后的模型进一步加载到幅度1/30。 IRWF模型在变形控制,损伤模式,滞后行为以及梁到柱关节旋转方面显示出优异的可修复性和令人满意的抗震性能。改造后,模型的能力提高了11%,裂缝分布有限。由于框架梁的剪切破坏,模型直到振幅1/30才降级。改造程序被证明是有效的,并且证明了IRWF模型的可修复性。在所提出的系统中倾向于实现抗震性。

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