带S形阻尼器矩形钢管混凝土柱-钢梁易修复节点弯矩-转角关系模型研究

STUDY ON MOMENT-ROTATION RELATIONSHIP MODEL OF EASY-REPAIRING JOINTS OF RECTANGULAR CONCRETE-FILLED STEEL TUBULAR COLUMN-STEEL BEAM WITH S-SHAPED DAMPER

  • 摘要: 为预测带S形阻尼器的矩形钢管混凝土柱-钢梁易修复节点的弯矩-转角关系,提出基于初始转动刚度、抗弯承载力和形状系数的三参数幂函数模型。基于组件法推导了节点的初始转动刚度计算公式,基于塑性极限分析法推导了节点的抗弯承载力计算公式,提出了S形阻尼器塑性极限状态时的受拉4铰机制和受压3铰机制。通过对节点试验和有限元参数分析结果的回归分析,得到节点抗弯承载力修正系数和形状系数。模拟带S形阻尼器易修复节点的实际应用,对带S形阻尼器易修复节点的钢框架-钢板剪力墙结构试件进行低周反复荷载试验和有限元参数分析,有限元分析模型中的梁、柱连接采用三参数模型。与节点试件的试验、有限元参数分析结果和结构试件的试验、有限元参数分析结果进行的对比表明,三参数模型对带S形阻尼器易修复节点弯矩-转角关系的模拟精度较高。

     

    Abstract: To predict the moment-rotation relation of an easy-repairing concrete-filled steel tubular (CFST) rectangular column-steel beam frame joint with S-shaped damper, a three-parameter exponential model is proposed upon its initial rotational stiffness, flexural capacity, and shape parameter. The calculation formula for the initial rotational stiffness of the joint is derived from the component method; and the calculation formula for flexural capacity is derived from the plastic limit analysis method. The tension four-hinge mechanism and the compression three-hinge mechanism in the plastic limit state of S-shaped damper are proposed. Regression analysis of the test results and finite element parameter analysis results yield the correction factor of the flexural capacity and shape parameter of the joint. To simulate the practical application of easy-repairing joints, quasi-static cyclic tests and finite element parameter analysis are conducted on steel frame-steel plate shear wall structure specimen containing easy-repairing joints with S-shaped dampers. The connection between the beam and column in the finite element analysis model adopts the three-parameter model. Compared with results of quasi-static cycle tests, of finite element parameter analysis for joint specimens, and of structural specimen tests, the three-parameter exponential model can effectively simulate the skeleton curve of the easy-repairing joint with the S-shaped damper.

     

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