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首页> 外文期刊>Journal of earthquake and tsunami >Experimental Investigation of Hysteretic Performance of Self-Centering Glulam Beam-to-Column Joint with Friction Dampers
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Experimental Investigation of Hysteretic Performance of Self-Centering Glulam Beam-to-Column Joint with Friction Dampers

机译:用摩擦阻尼器自定心胶石束柱关节滞回滞隙性能的实验研究

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摘要

In this study, friction dampers (FDs) were placed at the top and bottom of a post-tensioned (PT) self-centering glulam (SCG) beam-to-column joint to dissipate earthquake energy. PT tendons were installed in two externally elongated slots at the centroid of the beam to provide the system with self-centering capacity so that the system can return to its original position after an earthquake. Theoretical and experimental analyses of the beam-to-column joint were performed to investigate the effects of various design parameters, such as the total clamping forces applied to the FDs and initial forces of the PT tendons, on the hysteretic performance of the FD-SCG joint under cyclic loading. During the tests, the backbone members (glulam beam and column) and main connecting members (PT tendons and FDs) were measured to always be within the elastic limit range. Both the theoretical and experimental results indicated that under low initial PT forces and clamping forces, the energy is dissipated primarily by FDs; in contrast, under high PT forces and clamping forces, some energy is dissipated by the glulam materials, owing to the occurrence of minor local damage in the specimen, in the direction perpendicular to the grain. Moreover, the FD-SCG joint can be suitably designed to achieve the desired stiffness, load capacity, self-centering ability, energy dissipation capability, and expected overall system response.
机译:在本研究中,摩擦阻尼器(FD)被放置在后张(PT)自定心集成材(SCG)梁柱节点的顶部和底部,以耗散地震能量。PT钢筋束安装在梁质心处的两个外部拉长槽中,为系统提供自定心能力,以便系统在地震后恢复到原始位置。对梁柱接头进行了理论和试验分析,以研究各种设计参数(例如施加在FD上的总夹紧力和PT钢筋束的初始力)对循环荷载下FD-SCG接头滞回性能的影响。在试验过程中,骨干构件(集成材梁和柱)和主要连接构件(PT钢筋束和FD)被测量始终处于弹性极限范围内。理论和实验结果均表明,在较低的初始PT力和夹紧力下,能量主要由FDs耗散;相比之下,在高PT力和夹紧力下,由于试样在垂直于晶粒的方向上发生轻微局部损伤,集材材料会消耗一些能量。此外,FD-SCG接头可适当设计,以实现所需的刚度、承载能力、自定心能力、耗能能力和预期的整体系统响应。

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