首页> 外文会议>ATC SEI conference on improving the seismic performance of buildings and other structures >An Innovative Method for the Seismic Retrofitting of Existing Steel Moment Frame Structures Using Side Plate Technology
【24h】

An Innovative Method for the Seismic Retrofitting of Existing Steel Moment Frame Structures Using Side Plate Technology

机译:侧板技术现有钢力矩框架结构地震改装的创新方法

获取原文

摘要

The 1994 Northridge earthquake caused widespread damage to steel moment-resisting frames including brittle fractures of beam-to-column welded moment connections. The damage was in the form of brittle failures at the interface of the beam and column members and was detected in multi-story buildings. Improvements to these pre-Northridge existing connections are often required as part of an overall strengthening scheme, particularly when higher performance levels are desired. To improve the behavior of moment resisting connections, the SidePlate connection was designed and began to market as an alternative moment connection. The SidePlate connection technology uses a pair of parallel full-depth side plates to connect the beam to the column, thereby eliminating the traditional welded connection between the end of the beam and the face of the column flange. While the SidePlate technology has been largely used in the construction of post-Northridge buildings, its application in the retrofitting of existing buildings has been limited to date. In this paper, a new generation of SidePlate connections is proposed, which is applicable for retrofitting purposes and can improve the performance of existing steel structures. It is believed that the new technology may lead to the best way for retrofitting existing building moment frame systems instead of adding concrete shear walls and/or bracing elements. The proposed detail aims to minimize the disturbances of existing building usage situation and at the same time improves the performance of the system by increasing the rigidity of panel zone region and the stiffness of the beam segment between the column face and plastic hinge location. A case study including two multi-story steel moment frame structures was conducted to show that the proposed technology can largely upgrade the performance level of existing structures. Nonlinear analysis was performed to evaluate the vulnerability of the existing structures first, then the proposed detail was implemented to the connections, and new performance levels were obtained by means of nonlinear static analysis. The results showed that the plastic hinges are always formed in beams instead of the columns. It has also been shown that the application of the proposed details reduces the target displacement and improves the performance level of the structures. It can be concluded that depending on the performance level of existing buildings, the proposed detail might be considered as an efficient and optimized way of retrofitting those structures.
机译:1994年的北极地震引起了钢芯抵抗框架的广泛损坏,包括光束到柱焊接时刻连接的脆性骨折。损坏是横梁和列成员界面处的脆性故障的形式,并在多层建筑物中检测到。这些预诺里奇的改进通常需要作为整体增强方案的一部分,特别是当需要更高的性能水平时。为了提高抵抗连接的行为,设计并以替代时刻连接设计并开始推销。侧板连接技术使用一对平行的全深侧板将光束连接到列,从而消除了梁的端部与柱法兰的面之间的传统焊接连接。虽然侧板技术在基本上用于北线建筑物的建设中,但其在现有建筑物的改造中的应用仅限于日期。在本文中,提出了一种新一代的侧板连接,这适用于改装目的,可以改善现有钢结构的性能。据信,新技术可能导致改装现有建筑力矩框架系统的最佳方式,而不是添加混凝土剪力墙和/或支撑元件。所提出的细节旨在最大限度地减少现有建筑物使用情况的干扰,同时通过增加面板区域区域的刚度和柱面和塑料铰链位置之间的梁段的刚度的刚度来提高系统的性能。进行了包括两个多层钢力矩框架结构的案例研究,表明该技术可以在很大程度上升级现有结构的性能水平。进行非线性分析以首先评估现有结构的脆弱性,然后将所提出的细节实现为连接,通过非线性静态分析获得了新的性能水平。结果表明,塑料铰链始终形成在梁代替柱中。还表明,所提出的细节的应用降低了目标位移并提高了结构的性能水平。可以得出结论,取决于现有建筑的性能水平,所提出的细节可能被视为改造这些结构的有效和优化的方式。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号