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首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Shake table test of Y-shaped eccentrically braced frames fabricated with high-strength steel
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Shake table test of Y-shaped eccentrically braced frames fabricated with high-strength steel

机译:用高强度钢制造Y形偏心支撑框架的摇架测试

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摘要

To investigate the seismic performance of Y-shaped eccentrically braced frames fabricated with high -strength steel (Y-HSS-EBFs), a shake table test of a 1:2 scaled three-story Y-HSS-EBF specimen was performed. The input wave for the shake table test was generated by the ground motions of El Centro, Taft, and Lanzhou waves. The dynamic properties, acceleration, displacement, and strain responses were obtained from the test specimen and compared with previous test results. In addition, a finite element model of the test specimen was established using the SAP2000 software. Results from the numerical analysis were compared with the test specimen results. During the shake table test, the specimen exhibited sufficient overall structural stiffness and safety but suffered some localized damage. The lateral stiffness of the structure degenerated during the high seismic intensity earthquake. The maximum elastic and elastoplastic interstory drift of the test specimen for different peak ground accelerations were 1/872 and 1/71, respectively. During the high seismic intensity earthquake, the links of the test specimen entered the plastic stage to dissipate the earthquake energy, while other structural members remained in the elastic stage. The Y-HSS-EBF is a safe, dual system with reliable seismic performance. The numerical analysis results were in useful agreement with the test results. This finding indicated that the finite element model in SAP2000 provided a very accurate prediction of the Y-HSS-EBF structure's behavior during the seismic loadings.
机译:为了探讨用高强钢(Y-HSS-EBFS)制造的Y形偏心支撑框架的地震性能,进行了1:2的摇动台试验,缩放了三层余地Y-HSS-EBF样本。摇架测试的输入波是由EL Centro,Taft和Lanzhou Wave的地面运动产生的。从试样获得动态性,加速,位移和应变响应,并与先前的测试结果进行比较。此外,使用SAP2000软件建立了测试样本的有限元模型。将数值分析的结果与试样结果进行了比较。在摇动台测试期间,标本表现出足够的整体结构刚度和安全性,但遭受了一些局部损坏。高地震强度地震期间的结构横向刚度。不同峰接地加速度的试样的最大弹性和弹性塑料漂移分别为1/872和1/71。在高地震强度地震期间,试样的链接进入塑料阶段以消散地震能量,而其他结构构件仍处于弹性阶段。 Y-HSS-EBF是一种安全,双系统,具有可靠的地震性能。数值分析结果与测试结果有用。该发现表明,SAP2000中的有限元模型在地震载荷期间提供了对Y-HSS-EBF结构的行为的非常精确的预测。

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