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Study of a new type of self-centering beam-column joint in steel frame structures

机译:钢框架结构中新型自定向梁柱接头的研究

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A new type of self-centering beam-column joint with installed steel arc plates is proposed in this study. First, mechanical behavior of the self-centering joint using prestressed steel strands to provide the centering force is theoretically analyzed in detail, followed by experimental validation. New joints with different arc plate parameters are designed and tested under cyclic loading. Test results show that the hysteretic curve of the new joint exhibits typical characteristic of self-centering capacity. By parametric analysis of five design parameters of the arc plate, it is found that vector height has the greatest influence on the joint's moment-rotation skeleton curve, which is consistent with experimental findings. A simplified model of the joint is built in OpenSees to simulate its hysteretic behavior, which agrees well with the tested results. To demonstrate the effectiveness of the new joint to improve the seismic performance of the overall structure, a series of nonlinear time history analysis on a steel frame structure with the new joint under earthquakes are conducted, which show that the joint is particularly effective in reducing the residual interstory drift response.
机译:在本研究中提出了一种具有安装钢弧板的新型自定心光束柱接头。首先,通过预应力钢绞线提供自定心接头以提供定心力的机械特性进行详细分析,然后进行实验验证。具有不同电弧板参数的新关节在循环载荷下设计和测试。测试结果表明,新关节的滞后曲线展示了自定心能力的典型特征。通过对电弧板的五个设计参数的参数分析,发现矢量高度对关节的力矩旋转骨架曲线影响最大,这与实验结果一致。联合的简化模型建立在开放式中,以模拟其滞后行为,这与测试结果很好。为了证明新的关节改善整体结构的地震性能的有效性,对地震下的新关节进行了一系列关于钢框架结构的非线性时间历史分析,这表明该接头在减少时特别有效剩余壁垒漂移响应。

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