首页> 外文期刊>Journal of structural engineering >Inelastic Force-Deformation Response of Joint Shear Panels in Beam-Column Moment Connections to Concrete-Filled Tubes
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Inelastic Force-Deformation Response of Joint Shear Panels in Beam-Column Moment Connections to Concrete-Filled Tubes

机译:梁柱矩连接到混凝土灌装管中的联合剪力板的非弹性力-变形响应

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摘要

In the design of beam-to-column subassemblies in concrete-filled steel tubular column systems, a design formula established by the Architectural Institute of Japan (AIJ) is applied. However, in the current AIJ standard, the scope of the design formula is limited to ordinary material strengths; i.e. up to an unconfined compression strength of 36 MPa for concrete and tensile strength of 490 MPa for structural steel tubes. So, the effect of higher material strengths on subassembly behavior is studied in this investigation. The experimental results presented in this paper verified that the above-mentioned AIJ design formula is applicable up to an unconfined compression strength of 110 MPa for concrete and tensile strength of 809 MPa for structural steel tubes. An analytical model for the restoring force characteristics of the shear panel in the subassemblies was also proposed, and was found to reproduce the experimental results with good accuracy.
机译:在钢管混凝土柱系统的梁到柱子组合件的设计中,采用了日本建筑学会(AIJ)建立的设计公式。但是,在当前的AIJ标准中,设计公式的范围仅限于普通材料强度。即混凝土的无限制抗压强度为36 MPa,结构钢管的抗拉强度为490 MPa。因此,在这项研究中研究了更高的材料强度对组件行为的影响。本文给出的实验结果证明,上述AIJ设计公式适用于混凝土的无侧限抗压强度为110 MPa,结构钢管的抗压强度为809 MPa。还提出了用于子组件中的剪力板的恢复力特性的分析模型,并发现该模型可以很好地再现实验结果。

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