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Experimental study on the hysteretic behavior of steel plate shear wall with unequal length slits

机译:等长缝钢板剪力墙的滞回性能试验研究。

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A steel plate shear wall with slits (SPSWS) is an effective anti-seismic component element, which owns good ductility and energy dissipation capacity. The infill steel plate is divided into flexural links by slits, which changes the path of conducting force. As a result, the SPSWSs obtain higher energy dissipation capacity and better ductility compared with conventional steel plate shear walls. However, both tests and finite element method (FEM) analysis have shown that the slits lower the ultimate bearing capacity and the lateral stiffness of the steel plate shear wall. In this case, two steel plate shear walls with unequal length slits (SPSWUS), i.e. papilionaceous SPSWUS and fusiform SPSWUS, are proposed and analyzed in this paper. Four 1/3-scaled test specimens are designed for the experimental study. Two of the specimens are SPSWUSs, and the other two are traditional SPSWSs. Testing of the systems were performed under cyclic lateral loading. Results show that SPSWUS has rather high energy dissipation capacity and good ductility as well as relatively high lateral stiffness and ultimate bearing capacity when compared with the traditional SPSWS. Experimental results correlate well with those from the finite element analysis, which validates the finite element model. (C) 2018 Elsevier Ltd. All rights reserved.
机译:带缝钢板剪力墙(SPSWS)是一种有效的抗震构件,具有良好的延展性和能量消散能力。填充钢板通过狭缝分为挠性连接,从而改变了传导力的路径。结果,与传统的钢板剪力墙相比,SPSWS具有更高的能量消耗能力和更好的延展性。但是,测试和有限元方法(FEM)分析均显示,狭缝降低了钢板剪力墙的极限承载力和侧向刚度。在这种情况下,本文提出并分析了两个具有不等长的缝隙(SPSWUS)的钢板剪力墙,即乳木状SPSWUS和梭状SPSWUS。为实验研究设计了四个1/3比例的试样。标本中的两个是SPSWUS,另外两个是传统的SPSWS。系统的测试是在周期性的横向载荷下进行的。结果表明,与传统的SPSWS相比,SPSWUS具有较高的能量消散能力和良好的延展性,以及相对较高的侧向刚度和极限承载力。实验结果与有限元分析的结果很好地相关,后者验证了有限元模型。 (C)2018 Elsevier Ltd.保留所有权利。

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