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首页> 外文期刊>International journal of steel structures >Analytical Investigation on Cyclic Response of Buckling-restrained Braces with Short Yielding Core Segments
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Analytical Investigation on Cyclic Response of Buckling-restrained Braces with Short Yielding Core Segments

机译:屈服短核心段屈曲约束支撑的循环响应分析研究

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Buckling-restrained braced frames (BRBFs) are considered to be one of the efficient lateral force-resisting systems used in buildings located in the seismically active regions. Nearly symmetric hysteretic response of buckling-restrained braces (BRBs) in tension and compression due to the yielding of steel core plates helps the BRBFs to withstand the seismic excitations without causing any extensive damage to the primary frame members. However, BRBFs may exhibit the excessive post-earthquake residual drift response due to the low axial stiffiiess of BRBs under the strong ground motions. A reduction in the yielding core segments of BRBs results in the improved elastic and post-elastic axial stiffness of BRBs which may help in controlling the excessive residual drift response. This study is focussed on the analytical evaluation of hysteretic response of BRBs of varying lengths using finite element (FE) software. The results of FE study are further used to evaluate the inter-story and residual drift response of a 3-story braced frame fitted with BRBs of short core lengths (referred as SBRBF). Nonlinear dynamic analysis results of SBRBF are compared with the conventional BRBF and concentrically braced frame (CBF). It is concluded that the optimum reduction in yielding core lengths of BRBs can improve the overall seismic response of BRBFs with a reduction in the residual drift response.
机译:屈曲约束的支撑框架(BRBF)被认为是位于地震活跃地区的建筑物中有效的横向抗力系统之一。由于钢芯板屈服而导致的屈曲约束支撑(BRB)在拉伸和压缩过程中具有几乎对称的滞后响应,有助于BRBF承受地震激励,而不会对主框架构件造成任何大的破坏。但是,由于在强烈的地面运动下BRB的轴向刚度低,因此BRBF可能表现出过大的地震后残余漂移响应。 BRB的屈服核心段的减少会导致BRB的弹性和弹性后轴向刚度得到改善,这可能有助于控制过多的残余漂移响应。这项研究的重点是使用有限元(FE)软件对各种长度的BRB的滞后响应进行分析评估。有限元研究的结果进一步用于评估装有短铁心长度的BRB(称为SBRBF)的3层支撑框架的层间和残余漂移响应。将SBRBF的非线性动力学分析结果与常规BRBF和同心支撑框架(CBF)进行了比较。结论是,最佳减小BRB的屈服核心长度可以改善BRBF的整体地震响应,同时减少残余漂移响应。

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