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Effects of the frame geometry on the weight and inelastic behaviour of eccentrically braced chevron steel frames

机译:框架几何形状对偏心支撑人字形钢框架重量和非弹性行为的影响

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Many experimental and analytical studies about eccentrically braced frames (EBFs) have been carried out since the late 1970s. However, parametric studies about the effects of the frame geometry on the weight and global inelastic behaviour are still quite limited. Such kind of parametric studies require many number of designed EBFs for the purpose of generalization, in fact, optimization of design is also necessary for the conservatism of results. Therefore, a computer program based on an iterative optimization procedure is coded for the design of eccentrically braced chevron frames and the algorithm is given. In this research, 420 EBFs with shear yielding links, 105 EBFs with intermediate links, and 105 EBFs with flexural yielding links are designed. Inelastic dynamic analyses of each of these frames are performed under 20 SAC ground motions with DRAIN-2DX whose input files are prepared automatically by another program coded. Each earthquake record for each frame is scaled by the program by modifying the DRAIN input files in an automated manner until one of the links reaches the code-based limit rotation angle, and the resultant scale factors are utilized for comparison of the frames' inelastic behaviours. The equation for plastic link rotation of EBFs given in AISC-2005, which does not consider the vertical displacements of the column ends is modified to include these displacements and used in the inelastic analyses. Effects of the geometry selection on the frames' seismic behaviours and weights are given. Push-over analyses of some of the designed frames are also performed with DRAIN-2DX in order to compare their displacement ductilities.
机译:自1970年代后期以来,已经进行了许多有关偏心支撑框架(EBF)的实验和分析研究。但是,关于框架几何形状对重量和整体非弹性行为影响的参数研究仍然非常有限。出于泛化的目的,此类参数研究需要许多设计的EBF,实际上,设计的优化对于结果的保守性也是必要的。因此,对基于迭代优化程序的计算机程序进行了编码,以进行偏心支撑的人字形框架的设计,并给出了算法。在这项研究中,设计了420个带剪切屈服链的EBF,105个带中间屈服链的EBF和105个带挠性屈服链的EBF。使用DRAIN-2DX在20个SAC地面运动下对这些框架中的每一个进行非弹性动力分析,其输入文件由另一个编码的程序自动准备。程序通过自动修改DRAIN输入文件来缩放每帧的每个地震记录,直到其中一个链接达到基于代码的极限旋转角度为止,并且将所得比例因子用于比较帧的非弹性行为。 。 AISC-2005中给出的EBF的塑性连杆旋转方程不考虑柱端的垂直位移而被修改为包括这些位移,并用于非弹性分析中。给出了几何形状选择对框架抗震性能和权重的影响。为了比较其位移延展性,还使用DRAIN-2DX对某些设计框架进行了俯卧撑分析。

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