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Verification of the Seismic Performance of a Rigidly Connected Modular System Depending on the Shape and Size of the Ceiling Bracket

机译:取决于天花板支架的形状和尺寸的刚性连接模块化系统的抗震性能验证

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摘要

Modular systems have been mostly researched in relatively low-rise structures but, lately, their applications to mid- to high-rise structures began to be reviewed, and research interest in new modularization subjects has increased. The application of modular systems to mid- to high-rise structures requires the structural stability of the frame and connections that consist of units, and the evaluation of the stiffness of structures that are combined in units. However, the combination of general units causes loss of the cross-section of columns or beams, resulting in low seismic performance and hindering installation works in the field. In addition, the evaluation of a frame considering such a cross-sectional loss is not easy. Therefore, it is necessary to develop a joint that is stable and easy to install. In the study, a rigidly connected modular system was proposed as a moment-resisting frame for a unit modular system, and their joints were developed and their performances were compared. The proposed system changed the ceiling beam into a bracket type to fasten bolts. It can be merged with other seismic force-resisting systems. To verify the seismic performance of the proposed system, a cyclic loading test was conducted, and the rigidly connected joint performance and integrated behavior at the joint of modular units were investigated. From the experimental results, the maximum resisting force of the proposed connection exceeded the theoretical parameters, indicating that a rigid joint structural performance could be secured.
机译:模块化系统主要是在相对较低的结构中进行研究的,但是最近,它们在中高层结构中的应用开始受到审查,并且对新的模块化主题的研究兴趣也在增加。模块化系统在中高层建筑中的应用要求框架和由单元组成的连接的结构稳定性,以及对组合为单元的结构刚度的评估。然而,通用单元的组合导致柱或梁的横截面的损失,导致抗震性能低并且阻碍了现场的安装工作。另外,考虑这样的截面损失的框架的评价不容易。因此,有必要开发一种稳定且易于安装的接头。在研究中,提出了一种刚性连接的模块化系统作为单元模块化系统的抗力矩框架,并开发了它们的接头并比较了它们的性能。拟议的系统将顶梁更改为支架类型以固定螺栓。它可以与其他抗地震力系统合并。为了验证所提出系统的抗震性能,进行了循环载荷试验,并研究了刚性连接的接头性能和模块化单元接头处的整体性能。从实验结果来看,所提出的连接的最大抵抗力超过了理论参数,表明可以确保刚性接头的结构性能。

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