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Fragility functions for pre-Northridge welded steel moment-resisting beam-to-column connections

机译:易碎的功能,适用于北岭预焊接的抗弯矩梁柱连接

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Fragility functions that permit the estimation of damage in pre-1994 welded flange bolted-web beam-to-column moment connections are developed. The fragility functions provide estimates of the probability of yielding and of experiencing fracture as a function of the peak interstory drift ratio imposed in the connection, hence are particularly suited for performance-based methodologies for assessing the seismic performance of existing steel moment resisting frame buildings. Fragility functions were developed based on experimental results of 51 beam-to-column subassemblies tested over the past 26 years in 10 different investigations. The fragility functions developed in this paper incorporate uncertainty arising from specimen-to-specimen variability as well as statistical uncertainty associated with the fact of being developed based on a small sample of experimental results. Results indicate that the variability in interstory drifts at which fracture was observed is significantly larger than the variability at which yielding occurs. Furthermore, for beam depths commonly used in engineering practice there is a probability between 70% and 80% of experiencing a fracture in older type of connections at an interstory drift ratio of 2% which is usually the maximum allowed in US current codes indicating that many steel moment resisting frame buildings built prior to 1994 could experience fractures in their beam-to-column connections in a design level earthquake if they are not retrofitted.
机译:开发了可以估算1994年以前焊接的法兰螺栓连接腹板梁到柱弯矩连接中的损坏的易损性函数。脆性函数根据连接中施加的峰值层间位移比来估算屈服和发生断裂的可能性,因此特别适合基于性能的方法来评估现有抗钢矩框架建筑物的抗震性能。基于过去26年中在10个不同的研究中测试的51个梁到柱子组件的实验结果,开发了脆弱性函数。本文开发的脆弱性函数包含了因样本间差异而产生的不确定性,以及与基于少量实验结果而开发出来的事实相关的统计不确定性。结果表明,观察到断裂的层间漂移的变异性明显大于发生屈服的变异性。此外,对于工程实践中常用的光束深度,在90%到80%的概率下,旧型连接处的层间漂移率为2%,这通常是美国现行法规中允许的最大值,表明许多如果不进行翻新,则1994年之前建造的抗弯矩钢结构建筑物在设计级地震中可能会遭受梁柱连接的断裂。

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