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Seismic design and damage evaluation of buildings with steel moment resisting frames.

机译:钢制抗弯框架房屋的抗震设计和破坏评估。

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摘要

Unprecedented cases of brittle and unpredictable failure of welded moment resisting connections in steel moment resisting frames were revealed during recent earthquakes, such as 1994 Northridge Earthquake in California and 1995 Hyogo-Ken Nanbu Earthquake in Japan. It raised doubts about the seismic performance of steel moment resisting frames. As a result, an investigation was performed in an attempt to answer two critical questions regarding the seismic resistant design of steel moment resisting frames: (1) How to improve the ductility of moment resisting connections to eliminate the brittle behavior during an earthquake ground motion? (2) How to assess the level of damage to buildings with steel moment resisting frames after a seismic event?; In the first phase of this research, a modified moment resisting connection with enhanced ductility was proposed. It was based on the idea that a section, weak in bending near the end of the beam, but not at the beam-to-column interface, could be created to reduce the stress developed at the beam-column interface during a cyclic loading process. Also, the influence of these modified connections on the overall seismic behavior of moment resisting frame was studied.; To evaluate the damage level of moment resisting frames, a systematic damage assessment technique was developed in the second phase of this research. The damage evaluation technique started with the local damage evaluation of each individual moment resisting connection. A low-cycle fatigue damage model for moment resisting connections was established based on the hysteretic energy dissipated in the connections. The values of the low-cycle fatigue parameters were obtained statistically through a study of available full-scale test data on connections of ordinary member sizes. Then, weight-averaging techniques were employed to combine the local damage indices to form the damage index for a story and/or the entire frame.; The analytical results indicated that the proposed modification to the beam ends could be an effective means to mitigate brittle connection damage that could occur in moment connections during seismic events without inducing any unfavorable effects on the overall seismic behavior of a moment resisting frame with these connections. This research provides a basis for in-depth experimental investigation of full-scale modified connections. The overall damage assessment approach made it possible to assess quantitatively damage to steel moment resisting frames. This damage assessment technique will provide the structural engineers with another valuable tool for the design, retrofit and post-earthquake damage evaluation of steel frame structures.
机译:在最近的地震中,例如在1994年加利福尼亚州的Northridge地震和1995年日本的兵库县南部地震中,发现了前所未有的发生在钢制抗弯框架中的抗弯矩焊接接头的脆性和不可预测的破坏案例。它对钢制抗弯框架的抗震性能提出了质疑。结果,进行了一项调查,以试图回答两个有关钢制抗弯框架的抗震设计的关键问题:(1)如何提高抗弯连接的延展性,以消除地震地震动期间的脆性? (2)地震事件发生后如何评估具有抗弯矩钢框架的建筑物的破坏程度?在这项研究的第一阶段,提出了一种改进的抵抗力矩的连接,并具有增强的延展性。它基于这样的想法:可以创建一个在梁的末端附近弯曲较弱但在梁-柱界面处不弯曲的截面,以减少在循环荷载过程中在梁-柱界面处产生的应力。 。同时,研究了这些改进的连接方式对抗弯框架整体抗震性能的影响。为了评估抗弯矩框架的损伤程度,在本研究的第二阶段开发了一种系统的损伤评估技术。损伤评估技术始于每个抗弯矩的局部损伤评估。基于耗散在连接中的磁滞能量,建立了抗弯连接的低周疲劳损伤模型。低周疲劳参数的值是通过研究有关普通构件尺寸的连接上可获得的满量程测试数据而统计获得的。然后,采用加权平均技术来组合局部损伤指数以形成故事和/或整个框架的损伤指数。分析结果表明,对梁端提出的修改方案可能是减轻在地震事件中弯矩连接中可能发生的脆性连接破坏的有效手段,而不会对具有这些连接的抗弯框架的整体地震性能产生任何不利影响。该研究为全面修改连接的深入实验研究提供了基础。整体损伤评估方法使得可以定量评估抗钢矩框架的损伤。这种损伤评估技术将为结构工程师提供另一种有价值的工具,用于钢框架结构的设计,改造和地震后损伤评估。

著录项

  • 作者

    Hong, Liu.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Engineering Civil.; Applied Mechanics.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;应用力学;
  • 关键词

  • 入库时间 2022-08-17 11:49:14

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