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Lessofls learned from the Northridge earthquake

机译:诺斯里奇地震的教训

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The performance of welded connections in special moment resisting frames (SMRF) during the Northridge, California earth- quake in January 1994 was influenced by many variables. The actual ground motions experienced by the buildings, the design details employed in the connections, material properties, fabri- cation workmanship and inspection practices. The evidences of workmanship-related problems were primarily the result of lack of conformance to the requirements specified in the AWS Structural Welding Code D1 1. Lack of emphasis on in--process visual inspec- tion may have permitted questionable fabrication practices to go undetected. A fundamental expectation regarding the performance of the SMRF is that of ‘ductility'. In concept, the seismic energies are to be absorbed by the formation of plastic hinges within the structure. The pre-North ridge connection detail is examined in light of quality, fracture and multi-directional stresses, and its relative performance regarding expectations of ductile behavior. Post- Northridge research specimens are examined with respect to the same factors, along with their relative level of ductile behavior. Details that enhance ductile behavior and the reasons that this behavior can be expected are presented.
机译:1994年1月在加利福尼亚州北岭地震中,特殊抗弯框架(SMRF)中的焊接连接性能受到许多变量的影响。建筑物经历的实际地面运动,在连接中使用的设计细节,材料特性,制造工艺和检查规范。与工艺有关的问题的证据主要是由于不符合AWS结构焊接规范D1中规定的要求。1.缺乏对过程中目视检查的重视,可能使可疑的制造方法无法被发现。关于SMRF性能的基本期望是“延展性”。从概念上讲,地震能量将通过结构内塑料铰链的形成来吸收。根据质量,断裂和多向应力,以及有关延性预期的相对性能,对前北脊连接细节进行了检查。就相同因素以及其相对的韧性行为水平,对Northridge后研究样本进行了检查。介绍了增强延性行为的细节以及可以预期这种行为的原因。

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